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1.
Lasers Med Sci ; 39(1): 158, 2024 Jun 18.
Artículo en Inglés | MEDLINE | ID: mdl-38888695

RESUMEN

Orthopedic surgeons face a significant challenge in treating critical-size femoral defects (CSFD) caused by osteoporosis (OP), trauma, infection, or bone tumor resections. In this study for the first time, the application of photobiomodulation (PBM) and bone marrow mesenchymal stem cell-conditioned medium (BM-MSC-CM) to improve the osteogenic characteristics of mineralized bone scaffold (MBS) in ovariectomy-induced osteoporotic (OVX) rats with a CSFD was tested. Five groups of OVX rats with CSFD were created: (1) Control (C); (2) MBS; (3) MBS + CM; (4) MBS + PBM; (5) MBS + CM + PBM. Computed tomography scans (CT scans), compression indentation tests, and histological and stereological analyses were carried out after euthanasia at 12 weeks following implantation surgery. The CT scan results showed that CSFD in the MBS + CM, MBS + PBM, and MBS + CM + PBM groups was significantly smaller compared to the control group (p = 0.01, p = 0.04, and p = 0.000, respectively). Moreover, the CSFD size was substantially smaller in the MBS + CM + PBM treatment group than in the MBS, MBS + CM, and MBS + PBM treatment groups (p = 0.004, p = 0.04, and p = 0.01, respectively). The MBS + PBM and MBS + CM + PBM treatments had significantly increased maximum force relative to the control group (p = 0.01 and p = 0.03, respectively). Bending stiffness significantly increased in MBS (p = 0.006), MBS + CM, MBS + PBM, and MBS + CM + PBM treatments (all p = 0.004) relative to the control group. All treatment groups had considerably higher new trabecular bone volume (NTBV) than the control group (all, p = 0.004). Combined therapies with MBS + PBM and MBS + CM + PBM substantially increased the NTBV relative to the MBS group (all, p = 0.004). The MBS + CM + PBM treatment had a markedly higher NTBV than the MBS + PBM (p = 0.006) and MBS + CM (p = 0.004) treatments. MBS + CM + PBM, MBS + PBM, and MBS + CM treatments significantly accelerated bone regeneration of CSFD in OVX rats. PBM + CM enhanced the osteogenesis of the MBS compared to other treatment groups.


Asunto(s)
Terapia por Luz de Baja Intensidad , Células Madre Mesenquimatosas , Animales , Ratas , Terapia por Luz de Baja Intensidad/métodos , Medios de Cultivo Condicionados , Femenino , Ratas Sprague-Dawley , Fémur/efectos de la radiación , Fémur/diagnóstico por imagen , Tomografía Computarizada por Rayos X , Osteoporosis/radioterapia , Osteoporosis/terapia , Ovariectomía , Andamios del Tejido , Osteogénesis/efectos de la radiación , Regeneración Ósea/efectos de la radiación
2.
Clin Orthop Relat Res ; 480(2): 407-418, 2022 02 01.
Artículo en Inglés | MEDLINE | ID: mdl-34491235

RESUMEN

BACKGROUND: Gamma irradiation, which minimizes the risk of infectious disease transmission when human bone allograft is used, has been found to negatively affect its biomechanical properties. However, in those studies, the deep-freezing temperature during irradiation was not necessarily maintained during transportation and sterilization, which may have affected the findings. Prior reports have also suggested that controlled deep freezing may mitigate the detrimental effects of irradiation on the mechanical properties of bone allograft. QUESTION/PURPOSE: Does a controlled deep-freezing temperature during irradiation help preserve the compressive mechanical properties of human femoral cortical bone allografts? METHODS: Cortical bone cube samples, each measuring 64 mm3, were cut from the mid-diaphyseal midshaft of five fresh-frozen cadaver femurs (four male donors, mean [range] age at procurement 42 years [42 to 43]) and were allocated via block randomization into one of three experimental groups (with equal numbers of samples from each donor allocated into each group). Each experimental group consisted of 20 bone cube samples. Samples irradiated in dry ice were subjected to irradiation doses ranging from 26.7 kGy to 27.1 kGy (mean 26.9 kGy) at a deep-freezing temperature below -40°C (the recommended long-term storage temperature for allografts). Samples irradiated in gel ice underwent irradiation doses ranging from 26.2 kGy and 26.4 kGy (mean 26.3 kGy) in a freezing temperature range between -40°C and 0°C. Acting as controls, samples in a third group were not subjected to gamma irradiation. The mechanical properties (0.2% offset yield stress, ultimate compression stress, toughness, and the Young modulus) of samples from each group were subsequently evaluated via axial compression loading to failure along the long axis of the bone. The investigators were blinded to sample group during compression testing. RESULTS: The mean ultimate compression stress (84 ± 27 MPa versus 119 ± 31 MPa, mean difference 35 [95% CI 9 to 60]; p = 0.005) and toughness (3622 ± 1720 kJ/m3 versus 5854 ± 2900 kJ/m3, mean difference 2232 [95% CI 70 to 4394]; p = 0.009) of samples irradiated at a higher temperature range (-40°C to 0°C) were lower than in those irradiated at deep-freezing temperatures (below -40°C). The mean 0.2% offset yield stress (73 ± 28 MPa versus 109 ± 38 MPa, mean difference 36 [95% CI 11 to 60]; p = 0.002) and ultimate compression stress (84 ± 27 MPa versus 128 ± 40 MPa, mean difference 44 [95% CI 17 to 69]; p < 0.001) of samples irradiated at a higher temperature range (-40°C to 0°C) were lower than the nonirradiated control group samples. The mean 0.2% offset yield stress (73 ± 28 MPa versus 101 ± 28 MPa, mean difference 28 [95% CI 3 to 52]; p = 0.02; effect size = 1.0 [95% CI 0.8 to 1.2]) of samples irradiated at higher temperature range (-40°C to 0°C) were no different with the numbers available to those irradiated at deep-freezing temperature. The mean toughness (3622 ± 1720 kJ/m3 versus 6231 ± 3410 kJ/m3, mean difference 2609 [95% CI 447 to 4771]; p = 0.02; effect size = 1.0 [95% CI 0.8 to 1.2]) of samples irradiated at higher temperature range (-40°C to 0°C) were no different with the numbers available to the non-irradiated control group samples. The mean 0.2% offset yield stress, ultimate compression stress, and toughness of samples irradiated in deep-freezing temperatures (below -40°C) were not different with the numbers available to the non-irradiated control group samples. The Young modulus was not different with the numbers available among the three groups. CONCLUSION: In this study, maintenance of a deep-freezing temperature below -40°C, using dry ice as a cooling agent, consistently mitigated the adverse effects of irradiation on the monotonic-compression mechanical properties of human cortical bone tissue. Preserving the mechanical properties of a cortical allograft, when irradiated in a deep-freezing temperature, may have resulted from attenuation of the deleterious, indirect effects of gamma radiation on its collagen architecture in a frozen state. Immobilization of water molecules in this state prevents radiolysis and the subsequent generation of free radicals. This hypothesis was supported by an apparent loss of the protective effect when a range of higher freezing temperatures was used during irradiation. CLINICAL RELEVANCE: Deep-freezing temperatures below -40°C during gamma irradiation may be a promising approach to better retain the native mechanical properties of cortical bone allografts. A further study of the effect of deep-freezing during gamma radiation sterilization on sterility and other important biomechanical properties of cortical bone (such as, tensile strength, fracture toughness, and fatigue) is needed to confirm these findings.


Asunto(s)
Aloinjertos , Fuerza Compresiva/efectos de la radiación , Hueso Cortical/efectos de la radiación , Fémur/efectos de la radiación , Congelación , Rayos gamma , Esterilización/métodos , Adulto , Cadáver , Humanos , Masculino , Estrés Mecánico
3.
Biochem Biophys Res Commun ; 531(2): 105-111, 2020 10 15.
Artículo en Inglés | MEDLINE | ID: mdl-32778332

RESUMEN

We assessed the combined impacts of human demineralized bone matrix (hDBM) scaffold, adipose-derived stem cells (hADS), and photobiomodulation (PBM) on bone repair of a critical size femoral defect (CSFD) in 72 rats. The rats were divided into six groups: control (group 1); ADS (group 2 - ADS transplanted into hDBM); PBM (group 3 - PBM-treated CSFDs); ADS + PBM in vivo (group 4 - ADS transplanted into hDBM and the CSFDs were treated with PBM in vivo); ADS + PBM in vitro (group 5 - ADS were treated with PBM in vitro, then seeded into hDBM); and ADS + PBM in vitro+in vivo (group 6 - PBM-treated ADS were seeded into hDBM, and the CSFDs were treated with PBM in vivo. At the anabolic phase (2 weeks after surgery), bone strength parameters of the groups 5, 6, and 4 were statistically greater than the control, ADS, and PBM in vivo groups (all, p = 0.000). Computed tomography (CT) scans during the catabolic phase (6 weeks after surgery) of bone healing revealed that the Hounsfield unit (HU) of CSFD in the groups 2 (p = 0.000) and 5 (p = 0.019) groups were statistically greater than the control group. The groups 5, 4, and 6 had significantly increased bone strength parameters compared with the PBM in vivo, control, and ADS groups (all, p = 0.000). The group 5 was statistically better than the groups 4, and 6 (both, p = 0.000). In vitro preconditioned of hADS with PBM significantly increased bone repair in a rat model of CSFD in vivo.


Asunto(s)
Tejido Adiposo/citología , Fémur/patología , Fémur/efectos de la radiación , Terapia por Luz de Baja Intensidad , Células Madre/citología , Células Madre/efectos de la radiación , Cicatrización de Heridas/efectos de la radiación , Animales , Biomarcadores/metabolismo , Fenómenos Biomecánicos , Matriz Ósea/efectos de la radiación , Matriz Ósea/ultraestructura , Supervivencia Celular/efectos de la radiación , Módulo de Elasticidad , Humanos , Masculino , Ratas Wistar
4.
Calcif Tissue Int ; 106(2): 180-193, 2020 02.
Artículo en Inglés | MEDLINE | ID: mdl-31583426

RESUMEN

Radiation therapy and estrogen deficiency can damage healthy bone and lead to an increased fracture risk. The goal of this study is to develop a mouse model for radiation therapy using a fractionated biologically equivalent dose for cervical cancer treatment in both pre- and postmenopausal women. Thirty-two female C57BL/6 mice 13 weeks of age were divided into four groups: Sham + non-irradiated (SHAM + NR), Sham + irradiated (SHAM + IRR), ovariectomy + non-irradiated (OVX + NR) and ovariectomy + irradiated (OVX + IRR). The irradiated mice received a 6 Gy dose of X-rays to the hindlimbs at Day 2, Day 4 and Day 7 (18 Gy total). Tissues were collected at Day 35. DEXA, microCT analysis and FEA were used to quantify structural and functional changes at the proximal tibia, midshaft femur, proximal femur and L1 vertebra. There was a significant (p < 0.05) decline in proximal tibia trabecular BV/TV from (1) IRR compared to NR mice within Sham (- 46%) and OVX (- 41%); (2) OVX versus Sham within NR mice (- 36%) and IRR mice (- 30%). With homogenous material properties applied to the proximal tibia mesh using FEA, there was (1) an increase in whole bone (trabecular + cortical) structural stiffness from IRR compared to NR mice within Sham (+ 10%) and OVX (+ 15%); (2) a decrease in stiffness from OVX versus Sham within NR mice (- 18%) and IRR mice (- 14%). Fractionated irradiation and ovariectomy both had a negative effect on skeletal microarchitecture. Ovariectomy had a systemic effect, while skeletal radiation damage was largely specific to trabecular bone within the X-ray field.


Asunto(s)
Huesos/fisiología , Estradiol/deficiencia , Traumatismos Experimentales por Radiación , Animales , Densidad Ósea/efectos de los fármacos , Densidad Ósea/efectos de la radiación , Huesos/diagnóstico por imagen , Huesos/efectos de los fármacos , Huesos/efectos de la radiación , Modelos Animales de Enfermedad , Estradiol/sangre , Estradiol/farmacología , Femenino , Fémur/efectos de los fármacos , Fémur/efectos de la radiación , Ratones , Ratones Endogámicos C57BL , Ovariectomía , Traumatismos Experimentales por Radiación/complicaciones , Traumatismos Experimentales por Radiación/metabolismo , Traumatismos Experimentales por Radiación/fisiopatología , Radiografía , Radioterapia/efectos adversos , Dosificación Radioterapéutica , Tibia/efectos de los fármacos , Tibia/efectos de la radiación , Microtomografía por Rayos X
5.
Rapid Commun Mass Spectrom ; 34(2): e8568, 2020 Jan 30.
Artículo en Inglés | MEDLINE | ID: mdl-31472480

RESUMEN

RATIONALE: Whole-bone proteomic analyses rely on lengthy sample preparation including demineralization and digestion to break bone down into peptides to recover using mass spectrometry. However, microwave-assisted acid hydrolysis, a technique used in proteomic analyses of other soft tissues and cells, will combine both demineralization and digestion and only take minutes. METHODS: To test microwave-assisted hydrolysis on whole moose bone, we microwaved five concentrations of acetic and formic acids (15%, 12.5%, 10%, 7.5% and 5%) for three times (10, 20 and 30 min) at 140°C using an ETHOS UP high performance microwave digestion system. Peptides were injected and separated using Thermo BioBasic C18 columns and detected with an LTQ Orbitrap Velos mass spectrometer. We searched the raw data on PEAKS 8.5 against the white-tailed deer database. RESULTS: Formic acid hydrolysis led to the most complete digestion, and therefore the highest number of peptide spectrum matches, more protein groups and better sequence coverage for collagenous proteins. However, for the formic acid samples there is a tradeoff with digestion completeness and a higher incidence of in vitro modifications (i.e. formylation) that are not induced using acetic acid. Acetic acid has greater cleavage specificity and higher sequence coverage for non-collagenous proteins. CONCLUSIONS: Depending on the goals of analysis, there are benefits and drawbacks to using both acetic acid and formic acid. Overall, microwave-assisted acid hydrolysis was successful in demineralizing and digesting bone fragments to considerably speed up the preparation for bottom-up proteomics analysis.


Asunto(s)
Ácido Acético/química , Fémur/química , Formiatos/química , Proteómica/métodos , Animales , Ciervos , Fémur/efectos de la radiación , Hidrólisis , Espectrometría de Masas , Microondas , Paleontología , Péptidos/química
6.
Radiat Environ Biophys ; 59(3): 571-581, 2020 08.
Artículo en Inglés | MEDLINE | ID: mdl-32444954

RESUMEN

Gamma radiation sterilization is the method used by the majority of tissue banks to reduce disease transmission from infected donors to recipients through bone allografts. However, many studies have reported that gamma radiation impairs the structural and mechanical properties of bone via formation of free radicals, the effect of which could be reduced using free radical scavengers. The aim of this study is to examine the radioprotective role of hydroxytyrosol (HT) and alpha lipoic acid (ALA) on the mechanical properties of gamma-sterilized cortical bone of bovine femur, using three-point bending and microhardness tests. Specimens of bovine femurs were soaked in ALA and HT for 3 and 7 days, respectively, before being exposed to 35-kGy gamma radiation. In unirradiated samples, both HT and ALA pre-treatment improved the cortical bone bending plastic properties (maximum bending stress, maximum bending strain, and toughness) without affecting microhardness. Irradiation resulted in a drastic reduction of the plastic properties and an increased microhardness. ALA treatment before irradiation alleviated the aforementioned reductions in maximum bending stress, maximum bending strain, and toughness. In addition, under ALA treatment, the microhardness was not increased after irradiation. For HT treatment, similar effects were found. In conclusion, the results indicate that HT and ALA can be used before irradiation to enhance the mechanical properties of gamma-sterilized bone allografts.


Asunto(s)
Antioxidantes/farmacología , Fémur/efectos de los fármacos , Fémur/efectos de la radiación , Rayos gamma , Alcohol Feniletílico/análogos & derivados , Protectores contra Radiación/farmacología , Ácido Tióctico/farmacología , Animales , Fenómenos Biomecánicos , Trasplante Óseo , Bovinos , Dureza , Alcohol Feniletílico/farmacología , Esterilización/métodos , Estrés Mecánico
7.
Electromagn Biol Med ; 39(3): 206-217, 2020 Jul 02.
Artículo en Inglés | MEDLINE | ID: mdl-32419512

RESUMEN

Osteoporosis is a systemic skeletal disease characterized by an increase in bone fragility and fracture risk due to low bone mass and deterioration of bone tissue. Application of pulsed electromagnetic fields (PEMF), a non-invasive method with a low complication risk, is known to stimulate bone formation. The present study examines the histomorphometric and biochemical effects of PEMF application on the healing of bone defects in rats with heparin-induced secondary osteoporosis. Briefly, 12-month-old male Sprague-Dawley rats were examined in a prospective, randomized, single-blind study. Osteoporosis was induced by administering a daily dose of 2 IU/g heparin for 33 days. Bone defects were created on the right femur on Day 35. PEMF of an average intensity of 0.8 ± 0.2 mT and a frequency of 7.3 Hz, was applied for 1 h/day, for 28 days following surgery. Bone healing was evaluated by histomorphometric and biochemical analyses. The heparin + PEMF group displayed the largest amount of new bone area (P = .002) and the lowest mean CTx on Day 63 (P = .05). This study demonstrates that heparin administration leads to bone loss and osteoporosis, whereas the application of PEMF decreases this effect.


Asunto(s)
Campos Electromagnéticos , Fémur/fisiopatología , Fémur/efectos de la radiación , Heparina/farmacología , Osteoporosis/inducido químicamente , Osteoporosis/fisiopatología , Animales , Fémur/metabolismo , Fémur/patología , Masculino , Osteoporosis/metabolismo , Osteoporosis/patología , Ratas , Ratas Sprague-Dawley
8.
Bull Exp Biol Med ; 168(4): 517-520, 2020 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-32147768

RESUMEN

Erythroid precursors from the femoral bone marrow of Wistar rats were characterized after 30-day hindlimb suspension, fractionated γ-radiation, and their combination. After hindlimb suspension, the total content of myeloid CFU decreased; activity of erythroid differon also considerably suppressed, which manifested in a decrease in the number of erythroid burst-forming units and area of colonies formed by erythrocyte precursors. After irradiation and combined exposure to these two factors, no significant differences from the control were revealed; optical density of formed colonies slightly increased in all experimental groups. Thus, suppression of the erythroid lineage was most pronounced during hindlimb unloading. The combined effect of radiation and hindlimb suspension produced no appreciable negative effect on erythropoiesis in rat bone marrow.


Asunto(s)
Células de la Médula Ósea/efectos de la radiación , Médula Ósea/efectos de la radiación , Células Precursoras Eritroides/efectos de la radiación , Rayos gamma , Hematopoyesis/efectos de la radiación , Suspensión Trasera , Animales , Células de la Médula Ósea/citología , Linaje de la Célula/fisiología , Linaje de la Célula/efectos de la radiación , Células Precursoras Eritroides/citología , Fémur/citología , Fémur/efectos de la radiación , Hematopoyesis/fisiología , Masculino , Ratas , Ratas Wistar , Irradiación Corporal Total
9.
J Cell Physiol ; 234(3): 2807-2821, 2019 03.
Artículo en Inglés | MEDLINE | ID: mdl-30067871

RESUMEN

The application of pulsed electromagnetic fields (PEMFs) in the prevention and treatment of osteoporosis has long been an area of interest. However, the clinical application of PEMFs remains limited because of the poor understanding of the PEMF action mechanism. Here, we report that PEMFs promote bone formation by activating soluble adenylyl cyclase (sAC), cyclic adenosine monophosphate (cAMP), protein kinase A (PKA), and cAMP response element-binding protein (CREB) signaling pathways. First, it was found that 50 Hz 0.6 millitesla (mT) PEMFs promoted osteogenic differentiation of rat calvarial osteoblasts (ROBs), and that PEMFs activated cAMP-PKA-CREB signaling by increasing intracellular cAMP levels, facilitating phosphorylation of PKA and CREB, and inducing nuclear translocation of phosphorylated (p)-CREB. Blocking the signaling by adenylate cyclase (AC) and PKA inhibitors both abolished the osteogenic effect of PEMFs. Second, expression of sAC isoform was found to be increased significantly by PEMF treatment. Blocking sAC using sAC-specific inhibitor KH7 dramatically inhibited the osteogenic differentiation of ROBs. Finally, the peak bone mass of growing rats was significantly increased after 2 months of PEMF treatment with 90 min/day. The serum cAMP content, p-PKA, and p-CREB as well as the sAC protein expression levels were all increased significantly in femurs of treated rats. The current study indicated that PEMFs promote bone formation in vitro and in vivo by activating sAC-cAMP-PKA-CREB signaling pathway of osteoblasts directly or indirectly.


Asunto(s)
Inhibidores Enzimáticos/farmacología , Magnetoterapia , Osteogénesis/efectos de la radiación , Osteoporosis/terapia , Inhibidores de Adenilato Ciclasa/farmacología , Adenilil Ciclasas/genética , Adenilil Ciclasas/farmacología , Animales , Densidad Ósea/efectos de la radiación , Diferenciación Celular/efectos de la radiación , AMP Cíclico/antagonistas & inhibidores , AMP Cíclico/genética , Proteína de Unión a Elemento de Respuesta al AMP Cíclico/genética , Proteínas Quinasas Dependientes de AMP Cíclico/antagonistas & inhibidores , Proteínas Quinasas Dependientes de AMP Cíclico/genética , Modelos Animales de Enfermedad , Fémur/crecimiento & desarrollo , Fémur/patología , Fémur/efectos de la radiación , Regulación de la Expresión Génica/efectos de los fármacos , Regulación de la Expresión Génica/efectos de la radiación , Humanos , Osteoblastos/efectos de la radiación , Osteoporosis/genética , Osteoporosis/patología , Ratas , Transducción de Señal/efectos de la radiación
10.
Lasers Med Sci ; 34(7): 1401-1412, 2019 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-30762197

RESUMEN

The aim of this study was to evaluate the effects of low-level laser therapy using the gallium arsenide laser (λ = 830 nm) on the articular cartilage (AC) organization from knee joint in an experimental model of microcrystalline arthritis in adult male Wistar rats. Seventy-two animals were divided into three groups: A (control), B (induced arthritis), and C (induced arthritis + laser therapy). The arthritis was induced in the right knee using 2 mg of Na4P2O7 in 0.5 mL of saline solution. The treatments were daily applied in the patellar region of the right knee after 48 h of induction. On the 7th, 14th, and 21st days of treatment, the animals were euthanized and their right knees were removed and processed for structural and biochemical analysis of the AC. The chondrocytes positively labeled for the TUNEL reaction were lower in C than in B on the 14th and 21st days. The content of glycosaminoglycans and hydroxyproline in A and C was higher than B on the 21st day. The amount of tibial TNF-α in B and C was lower than in A. The amount of tibial BMP-7 in B and C was higher than in A. The femoral MMP-13 was lower in B and C than for A. The tibial TGF-ß for C was higher than the others. The femoral ADAMT-S4 content of A and C presented similar and inferior data to B on the 21st day. The AsGa-830 nm therapy preserved the content of glycosaminoglycans, reduced the cellular changes and the inflammatory process compared to the untreated group.


Asunto(s)
Artritis Experimental/radioterapia , Cartílago Articular/patología , Cartílago Articular/efectos de la radiación , Terapia por Luz de Baja Intensidad , Proteína ADAMTS4/metabolismo , Animales , Apoptosis/efectos de la radiación , Artritis Experimental/patología , Proteína Morfogenética Ósea 7/metabolismo , Cartílago Articular/ultraestructura , Condrocitos/patología , Condrocitos/efectos de la radiación , Modelos Animales de Enfermedad , Fémur/patología , Fémur/efectos de la radiación , Masculino , Metaloproteinasa 13 de la Matriz/metabolismo , Ratas Wistar , Tibia/patología , Tibia/efectos de la radiación , Tibia/ultraestructura , Factor de Crecimiento Transformador beta/metabolismo
11.
Cell Tissue Bank ; 20(2): 287-295, 2019 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-31020508

RESUMEN

Structural bone allografts are often sterilized with γ-irradiation to decrease infection risk, which unfortunately degrades the bone collagen connectivity, making the bone weak and brittle. In previous studies, we successfully protected the quasi-static mechanical properties of human cortical bone by pre-treating with ribose, prior to irradiation. This study focused on the quasi-static and fatigue tensile properties of ribose treated irradiated sterilized bone allografts. Seventy-five samples were cut from the mid-shaft diaphysis of human femurs into standardized dog-bone shape geometries for quasi-static and fatigue tensile testing. Specimens were prepared in sets of three adjacent specimens. Each set was made of a normal (N), irradiated (I) and ribose pre-treated + irradiation (R) group. The R group was incubated in a 1.2 M ribose solution before γ-irradiation. The quasi-static tensile and decalcified tests were conducted to failure under displacement control. The fatigue samples were tested under cyclic loading (10 Hz, peak stress of 45MP, minimum-to-maximum stress ratio of 0.1) until failure or reaching 10 million cycles. Ribose pre-treatment significantly improved significantly the mechanical properties of irradiation sterilized human bone in the quasi-static tensile and decalcified tests. The fatigue life of the irradiated group was impaired by 99% in comparison to the normal control. Surprisingly, the R-group has significantly superior properties over the I-group and N-group (p < 0.01, p < 0.05) (> 100%). This study shows that incubating human cortical bone in a ribose solution prior to irradiation can indeed improve the fatigue life of irradiation-sterilized cortical bone allografts.


Asunto(s)
Fémur/efectos de los fármacos , Fémur/efectos de la radiación , Rayos gamma/efectos adversos , Ribosa/farmacología , Resistencia a la Tracción/efectos de los fármacos , Resistencia a la Tracción/efectos de la radiación , Adolescente , Adulto , Anciano , Aloinjertos/efectos de la radiación , Diáfisis/efectos de los fármacos , Diáfisis/efectos de la radiación , Femenino , Fémur/trasplante , Humanos , Masculino , Persona de Mediana Edad , Estrés Mecánico , Adulto Joven
12.
Bioelectromagnetics ; 39(8): 569-584, 2018 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-30350869

RESUMEN

Microgravity is one of the main threats to the health of astronauts. Pulsed electromagnetic fields (PEMFs) have been considered as one of the potential countermeasures for bone loss induced by space flight. However, the optimal therapeutic parameters of PEMFs have not been obtained and the action mechanism is still largely unknown. In this study, a set of optimal therapeutic parameters for PEMFs (50 Hz, 0.6 mT 50% duty cycle and 90 min/day) selected based on high-throughput screening with cultured osteoblasts was used to prevent bone loss in rats induced by hindlimb suspension, a commonly accepted animal model to simulate the space environment. It was found that hindlimb suspension for 4 weeks led to significant decreases in femoral and vertebral bone mineral density (BMD) and their maximal loads, severe deterioration in bone micro-structure, and decreases in levels of bone formation markers and increases in bone resorption markers. PEMF treatment prevented about 50% of the decreased BMD and maximal loads, preserved the microstructure of cancellous bone and thickness of cortical bone, and inhibited decreases in bone formation markers. Histological analyses revealed that PEMFs significantly alleviated the reduction in osteoblast number and inhibited the increase in adipocyte number in the bone marrow. PEMFs also blocked decreases in serum levels of parathyroid hormone and its downstream signal molecule cAMP, and maintained the phosphorylation levels of protein kinase A (PKA) and cAMP response element-binding protein (CREB). The expression level of soluble adenylyl cyclases (sAC) was also maintained. It therefore can be concluded that PEMFs partially prevented the bone loss induced by weightless environment by maintaining bone formation through signaling of the sAC/cAMP/PKA/CREB pathway. Bioelectromagnetics. 39:569-584, 2018. © 2018 Wiley Periodicals, Inc.


Asunto(s)
Adenilil Ciclasas/metabolismo , Proteína de Unión a Elemento de Respuesta al AMP Cíclico/metabolismo , Proteínas Quinasas Dependientes de AMP Cíclico/metabolismo , AMP Cíclico/metabolismo , Campos Electromagnéticos , Miembro Posterior/fisiología , Osteogénesis/efectos de la radiación , Adipocitos/citología , Adipocitos/efectos de la radiación , Animales , Fenómenos Biomecánicos/efectos de la radiación , Peso Corporal/efectos de la radiación , Densidad Ósea/efectos de la radiación , Resorción Ósea/metabolismo , Resorción Ósea/prevención & control , Femenino , Fémur/citología , Fémur/diagnóstico por imagen , Fémur/fisiología , Fémur/efectos de la radiación , Miembro Posterior/efectos de la radiación , Osteoblastos/citología , Osteoblastos/efectos de la radiación , Ratas , Ratas Wistar , Transducción de Señal/efectos de la radiación , Columna Vertebral/citología , Columna Vertebral/diagnóstico por imagen , Columna Vertebral/fisiología , Columna Vertebral/efectos de la radiación , Suspensiones , Microtomografía por Rayos X
13.
Clin Orthop Relat Res ; 476(10): 2076-2090, 2018 10.
Artículo en Inglés | MEDLINE | ID: mdl-30024459

RESUMEN

BACKGROUND: External beam irradiation is an accepted treatment for skeletal malignancies. Radiation acts on both cancerous and normal cells and, depending on the balance of these effects, may promote or impair bone healing after pathologic fracture. Previous studies suggest an adverse effect of radiation on endochondral ossification, but the existence of differential effects of radiation on the two distinct bone healing pathways is unknown. QUESTIONS/PURPOSES: The purpose of this study was to investigate the differential effects of external beam irradiation on endochondral compared with intramembranous ossification with intramedullary nail and plate fixation of fractures inducing the two respective osseous healing pathways through assessment of (1) bone biology by histomorphometric analysis of cartilage area and micro-CT volumetric assessment of the calcified callus; and (2) mechanical properties of the healing fracture by four-point bending failure analysis of bending stiffness and strength. METHODS: Thirty-six male Sprague-Dawley rats underwent bilateral iatrogenic femur fracture: one side was repaired with an intramedullary nail and the other with compression plating. Three days postoperatively, half (n = 18) received 8-Gray external beam irradiation to each fracture. Rodents were euthanized at 1, 2, and 4 weeks postoperatively (n = 3/group) for quantitative histomorphometry of cartilage area and micro-CT assessment of callus volume. The remaining rodents were euthanized at 3 months (n = 9/group) and subjected to four-point bending tests to assess stiffness and maximum strength. RESULTS: Nailed femurs that were irradiated exhibited a reduction in cartilage area at both 2 weeks (1.08 ± 1.13 mm versus 37.32 ± 19.88 mm; 95% confidence interval [CI] of the difference, 4.32-68.16 mm; p = 0.034) and 4 weeks (4.60 ± 3.97 mm versus 39.10 ± 16.28 mm; 95% CI of the difference, 7.64-61.36 mm; p = 0.023) compared with nonirradiated fractures. There was also a decrease in the volume ratio of calcified callus at 4 weeks (0.35 ± 0.08 versus 0.51 ± 0.05; 95% CI of the difference, 0.01-0.31; p = 0.042) compared with nonirradiated fractures. By contrast, there was no difference in cartilage area or calcified callus between irradiated and nonirradiated plated femurs. The stiffness (128.84 ± 76.60 N/mm versus 26.99 ± 26.07 N/mm; 95% CI of the difference, 44.67-159.03 N/mm; p = 0.012) and maximum strength (41.44 ± 22.06 N versus 23.75 ± 11.00 N; 95% CI of the difference, 0.27-35.11 N; p = 0.047) of irradiated plated femurs was greater than the irradiated nailed femurs. However, for nonirradiated femurs, the maximum strength of nailed fractures (36.05 ± 17.34 N versus 15.63 ± 5.19 N; 95% CI of the difference, 3.96-36.88 N; p = 0.022) was greater than plated fractures, and there was no difference in stiffness between the nailed and plated fractures. CONCLUSIONS: In this model, external beam irradiation was found to preferentially inhibit endochondral over intramembranous ossification with the greatest impairment in healing of radiated fractures repaired with intramedullary nails compared with those fixed with plates. Future work with larger sample sizes might focus on further elucidating the observed differences in mechanical properties. CLINICAL RELEVANCE: This work suggests that there may be a rationale for compression plating rather than intramedullary nailing of long bone fractures in select circumstances where bony union is desirable, adjunctive radiation treatment is required, and bone stock is sufficient for plate and screw fixation.


Asunto(s)
Fracturas del Fémur/terapia , Fémur/efectos de la radiación , Fémur/cirugía , Curación de Fractura/efectos de la radiación , Osteogénesis/efectos de la radiación , Dosis de Radiación , Animales , Clavos Ortopédicos , Placas Óseas , Terapia Combinada , Modelos Animales de Enfermedad , Fracturas del Fémur/diagnóstico por imagen , Fracturas del Fémur/fisiopatología , Fémur/diagnóstico por imagen , Fémur/fisiopatología , Fijación Intramedular de Fracturas/instrumentación , Masculino , Ratas Sprague-Dawley , Factores de Tiempo , Microtomografía por Rayos X
14.
Strahlenther Onkol ; 193(4): 260-268, 2017 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-27837208

RESUMEN

PURPOSE: Low-dose external beam radiotherapy (ED-EBRT) is frequently used in the therapy of refractory greater trochanteric pain syndrome (GTPS). As studies reporting treatment results are scarce, we retrospectively analyzed our own patient collectives. PATIENTS AND METHODS: In all, 60 patients (74 hips) received LD-EBRT (6 × 0.5 Gy in 29 hips, 6 × 1 Gy in 45). The endpoint was the patient's reported subjective response to treatment. The influence of different patient and treatment characteristics on treatment outcome was investigated. RESULTS: At the end of LD-EBRT, 69% reported partial remission, 4% complete remission, no change 28%. A total of 3 months later (n = 52 hips), the results were 37, 33, and 30% and 18 months after LD-EBRT (n = 47) 21, 51, and 28%. In univariate analysis "inclusion of the total femoral head into the PTV" and "night pain before LD-EBRT" were correlated with symptom remission at the end of LD-EBRT, while "initial increase in pain during LD-EBRT" was significantly associated with treatment failure. In multivariable modeling "initial increase in pain" was identified as a risk factor for treatment failure (p = 0.007; odds ratio [OR] 0.209; 95% confidence interval [CI] 0.048-0.957), while "night pain" was an independent factor for remission (p = 0.038; OR 3.484; 95% CI 1.004-12.6). Three months after LD-EBRT "night pain" and "inclusion of the complete femoral neck circumference into the PTV" were predictive for remission. CONCLUSION: LD-EBRT represents a useful treatment option for patients suffering from GTPS. Three months after therapy two-thirds of the patients reported a partial or complete symptom remission. Especially patients who suffered from nocturnal pain seemed to benefit. Treatment appeared to be more effective when the entire circumference of the femoral neck was encompassed.


Asunto(s)
Artralgia/diagnóstico , Artralgia/radioterapia , Articulación de la Cadera/efectos de la radiación , Dimensión del Dolor/efectos de la radiación , Exposición a la Radiación/análisis , Dosificación Radioterapéutica , Adulto , Anciano , Anciano de 80 o más Años , Femenino , Fémur/efectos de la radiación , Humanos , Masculino , Persona de Mediana Edad , Síndrome , Resultado del Tratamiento
15.
Int J Med Sci ; 14(3): 213-223, 2017.
Artículo en Inglés | MEDLINE | ID: mdl-28367081

RESUMEN

We assessed the pathological changes of articular cartilage and subchondral bone on different locations of the knee after extracorporeal shockwave therapy (ESWT) in early osteoarthritis (OA). Rat knees under OA model by anterior cruciate ligament transaction (ACLT) and medial meniscectomy (MM) to induce OA changes. Among ESWT groups, ESWT were applied to medial (M) femur (F) and tibia (T) condyles was better than medial tibia condyle, medial femur condyle as well as medial and lateral (L) tibia condyles in gross osteoarthritic areas (p<0.05), osteophyte formation and subchondral sclerotic bone (p<0.05). Using sectional cartilage area, modified Mankin scoring system as well as thickness of calcified and un-calcified cartilage analysis, the results showed that articular cartilage damage was ameliorated and T+F(M) group had the most protection as compared with other locations (p<0.05). Detectable cartilage surface damage and proteoglycan loss were measured and T+F(M) group showed the smallest lesion score among other groups (p<0.05). Micro-CT revealed significantly improved in subchondral bone repair in all ESWT groups compared to OA group (p<0.05). There were no significantly differences in bone remodeling after ESWT groups except F(M) group. In the immunohistochemical analysis, T+F(M) group significant reduced TUNEL activity, promoted cartilage proliferation by observation of PCNA marker and reduced vascular invasion through observation of CD31 marker for angiogenesis compared to OA group (P<0.001). Overall the data suggested that the order of the effective site of ESWT was T+F(M) ≧ T(M) > T(M+L) > F(M) in OA rat knees.


Asunto(s)
Cartílago Articular/fisiología , Rodilla/efectos de la radiación , Litotricia , Osteoartritis de la Rodilla/radioterapia , Animales , Remodelación Ósea/efectos de la radiación , Cartílago Articular/fisiopatología , Cartílago Articular/efectos de la radiación , Modelos Animales de Enfermedad , Fémur/fisiopatología , Fémur/efectos de la radiación , Humanos , Rodilla/fisiopatología , Articulación de la Rodilla/fisiopatología , Articulación de la Rodilla/efectos de la radiación , Osteoartritis de la Rodilla/fisiopatología , Ratas , Ratas Sprague-Dawley , Tibia/fisiopatología , Tibia/efectos de la radiación
16.
Bioelectromagnetics ; 38(6): 456-465, 2017 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-28510268

RESUMEN

The aim of this study is to explore the effect of timing of initiation of pulsed electromagnetic field (PEMF) therapy on bone mass, microarchitecture, and biomechanical properties, and to investigate receptor activator of NF-kB (RANK) expression in ovariectomized (OVX) rats. Sixty female Sprague-Dawley rats were randomly divided into two equal batches of three groups each (10 rats in each group). The first batch comprised of sham-operated (Sham-0 group), ovariectomized (OVX-0 group), and ovariectomized plus treated with PEMF starting from the day of OVX (Early PEMF group). The second batch comprised of sham-operated (Sham-12 group), ovariectomized (OVX-12 group), and ovariectomized plus treated with PEMF starting 12 weeks after OVX (Late PEMF group). Rats (whole body) in the early and late PEMF groups were exposed to PEMF (3.8 mT peak, 8 Hz pulse burst repetition rate). After 12 weeks of PEMF therapy, Early PEMF prevented OVX-induced deterioration in bone mineral density (BMD) and mechanical properties in lumbar vertebral body and femur, and deterioration in bone microarchitecture in lumbar vertebral body and proximal tibia. Late PEMF intervention only inhibited deterioration of BMD, bone microarchitecture, and mechanical properties in lumbar vertebral body. Both early and late PEMF therapy suppressed RANK protein expression in OVX rats without a concomitant effect on RANK mRNA expression. These results demonstrate that timing of initiation of PEMF therapy plays an important role in achieving optimal beneficial effects. The specific PEMF parameters may exert these favorable biological responses, at least partially, via inhibition of protein expression of RANK. Bioelectromagnetics. 38:456-465, 2017. © 2017 Wiley Periodicals, Inc.


Asunto(s)
Magnetoterapia/métodos , Osteoporosis/etiología , Osteoporosis/terapia , Ovariectomía/efectos adversos , Animales , Fenómenos Biomecánicos/efectos de la radiación , Densidad Ósea/efectos de la radiación , Femenino , Fémur/metabolismo , Fémur/fisiopatología , Fémur/efectos de la radiación , Osteoporosis/genética , Osteoporosis/fisiopatología , ARN Mensajero/genética , ARN Mensajero/metabolismo , Ratas , Ratas Sprague-Dawley , Receptor Activador del Factor Nuclear kappa-B/genética , Receptor Activador del Factor Nuclear kappa-B/metabolismo , Columna Vertebral/metabolismo , Columna Vertebral/fisiopatología , Columna Vertebral/efectos de la radiación , Factores de Tiempo , Microtomografía por Rayos X
17.
Bioelectromagnetics ; 38(1): 31-40, 2017 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-27711964

RESUMEN

Ibandronate (IBN) and pulsed electromagnetic field (PEMF) have each shown positive effects for treating osteoporosis, but no study has evaluated the relative effects of these treatments combined. This study investigated the effects of IBN + PEMF on bone turnover, mineral density, microarchitecture, and biomechanical properties in an ovariectomized (OVX) rat model of osteoporosis. Fifty 3-month-old rats were randomly apportioned to receive a sham-operation (n = 10), or ovariectomy (n = 40). The latter group was equally divided as the model (OVX control) or to receive IBN, PEMF, or IBN + PEMF. Beginning the day after surgery, the IBN and IBN + PEMF groups received weekly subcutaneous IBN; the PEMF and IBN + PEMF groups were given daily PEMF during the same 12 weeks. After 12 weeks of treatments, biochemical parameters, bone mineral density (BMD), microarchitecture parameters, biomechanical properties, and some metabolic modulators that are involved in bone resorption were compared. The L5 lumbar vertebral body BMDs of the IBN, PEMF, and IBN + PEMF groups were 121.6%, 119.5%, and 139.6%; maximum loads were 111.4%, 112.7%, and 121.9%; and energy to failure was 130.8%, 129.2%, and 154.9% of the OVX model, respectively. The IBN + PEMF group had significantly lower levels of serum tartrate-resistant acid phosphatase 5b, and greater improvement in BMD, bone microarchitecture, and strength of the lumbar spine compared with monotherapy groups. Results showed that IBN + PEMF had a more favorable effect on the lumbar spine in this osteoporosis model than did either monotherapy. Bioelectromagnetics. 38:31-40, 2017. © 2016 Wiley Periodicals, Inc.


Asunto(s)
Difosfonatos/farmacología , Campos Electromagnéticos , Magnetoterapia , Osteoporosis/etiología , Osteoporosis/terapia , Ovariectomía/efectos adversos , Animales , Fenómenos Biomecánicos , Densidad Ósea/efectos de los fármacos , Densidad Ósea/efectos de la radiación , Terapia Combinada , Difosfonatos/uso terapéutico , Femenino , Fémur/efectos de los fármacos , Fémur/fisiopatología , Fémur/efectos de la radiación , Regulación de la Expresión Génica/efectos de los fármacos , Regulación de la Expresión Génica/efectos de la radiación , Ácido Ibandrónico , Osteoporosis/metabolismo , Osteoporosis/fisiopatología , Osteoprotegerina/genética , Ligando RANK/genética , ARN Mensajero/genética , ARN Mensajero/metabolismo , Ratas , Columna Vertebral/efectos de los fármacos , Columna Vertebral/fisiopatología , Columna Vertebral/efectos de la radiación , Fosfatasa Ácida Tartratorresistente/sangre , Microtomografía por Rayos X
18.
Skeletal Radiol ; 46(11): 1579-1584, 2017 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-28755281

RESUMEN

Management of soft tissue sarcomas is often complicated, requiring radiation before and in some cases after limb-sparing surgery. Radiation necrosis is a severe complication after radiation treatment and is typically dose related and involves medullary bone. We report on two cases of hitherto unreported focal circumscribed intra-cortical lytic lesions within the radiation portal, which appeared 19 months and 31 months, respectively, after the conclusion of radiation treatment. Both patients had a history of soft tissue sarcoma treated with radiation (66 Gy) and surgical resection. Biopsy of these lesions showed necrotic bone attributed to radiation.


Asunto(s)
Fémur/efectos de la radiación , Liposarcoma/diagnóstico por imagen , Liposarcoma/radioterapia , Traumatismos por Radiación/diagnóstico por imagen , Sarcoma/diagnóstico por imagen , Sarcoma/radioterapia , Adulto , Anciano , Biopsia , Terapia Combinada , Diagnóstico Diferencial , Femenino , Fémur/diagnóstico por imagen , Humanos , Liposarcoma/cirugía , Imagen por Resonancia Magnética , Necrosis , Sarcoma/cirugía , Tomografía Computarizada por Rayos X
19.
Lasers Med Sci ; 32(5): 1041-1049, 2017 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-28429193

RESUMEN

Phototherapy using coherent light (lasers) and non-coherent light (light-emitting diodes (LEDs)) has been investigated for the purpose of biomodulation in biological tissues. Several effects can be expected, including pain moderation, biostimulation of cellular tropism, anti-inflammatory effects, regular circulatory stimulation, and tissue repair. The aim of this study was to evaluate the effect of LED (λ945 ± 20 nm, 48 mW) therapy on the regeneration process in femoral lesions of rats (Wistar). Seven irradiation sessions were held, with a 48-h interval between sessions. The animals were euthanised 14, 21, and 28 days after surgery. Bone samples were analysed by histomorphometry, micro X-ray fluorescence spectroscopy, scanning electron microscopy, and optical densitometry. The results demonstrated the effective positive influence of low-intensity LED therapy using the near-infrared region on the tissue repair process in diabetic animals, especially in the early stages of repair (14 and 21 days after surgery). It can be concluded that LED therapy positively influences bone formation in the early stages of the bone repair process in non-diabetic and diabetic animals, without causing changes in the optical density and volume of tissue in the final stages. No influence of LED therapy was observed on the percentage of calcium, percentage of phosphorus, Ca/P ratio, or optical mineral density in non-diabetic animals. However, increased mineral concentration was evident in the diabetic animals treated with the LED during the repair process.


Asunto(s)
Diabetes Mellitus Experimental/patología , Fémur/patología , Fémur/efectos de la radiación , Rayos Infrarrojos , Fototerapia , Espectrometría por Rayos X , Cicatrización de Heridas/efectos de la radiación , Animales , Densitometría , Fémur/ultraestructura , Masculino , Ratas Wistar
20.
Cell Tissue Bank ; 18(3): 323-334, 2017 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-28560495

RESUMEN

Reconstruction of large skeletal defects is a significant and challenging issue. Bone allografts are often used for such reconstructions. However, sterilizing bone allografts by using γ-irradiation, damages collagen and causes the bone to become weak, brittle and less fatigue resistant. In a previous study, we successfully protected the mechanical properties of human cortical bone by conducting a pre-treatment with ribose, a natural and biocompatible agent. This study focuses on examining possible mechanisms by which ribose might protect the bone. We examined the mechanical properties, crosslinking, connectivity and free radical scavenging potentials of the ribose treatment. Human cortical bone beams were treated with varying concentration of ribose (0.06-1.2 M) and γ-irradiation before testing them in 3-point bending. The connectivity and amounts of crosslinking were determined with Hydrothermal-Isometric-Tension testing and High-Performance-Liquid-Chromatography, respectively. The free radical content was measured using Electron Paramagnetic Resonance. Ribose pre-treatment improved the mechanical properties of irradiation sterilized human bone in a pre-treatment concentration-dependent manner. The 1.2 M pre-treatment provided >100% of ultimate strength of normal controls and protected 76% of the work-to-fracture (toughness) lost in the irradiated controls. Similarly, the ribose pre-treatment improved the thermo-mechanical properties of irradiation-sterilized human bone collagen in a concentration-dependent manner. Greater free radical content and pentosidine content were modified in the ribose treated bone. This study shows that the mechanical properties of irradiation-sterilized cortical bone allografts can be protected by incubating the bone in a ribose solution prior to irradiation.


Asunto(s)
Aloinjertos/efectos de la radiación , Fémur/efectos de la radiación , Esterilización/métodos , Anciano , Aloinjertos/química , Fenómenos Biomecánicos , Trasplante Óseo , Colágeno/análisis , Fémur/química , Radicales Libres/análisis , Rayos gamma , Humanos , Masculino , Persona de Mediana Edad , Ribosa/química , Estrés Mecánico
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