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1.
Nat Protoc ; 18(7): 2256-2282, 2023 07.
Artículo en Inglés | MEDLINE | ID: mdl-37316563

RESUMEN

Human skeletal stem cells (hSSCs) hold tremendous therapeutic potential for developing new clinical strategies to effectively combat congenital and age-related musculoskeletal disorders. Unfortunately, refined methodologies for the proper isolation of bona fide hSSCs and the development of functional assays that accurately recapitulate their physiology within the skeleton have been lacking. Bone marrow-derived mesenchymal stromal cells (BMSCs), commonly used to describe the source of precursors for osteoblasts, chondrocytes, adipocytes and stroma, have held great promise as the basis of various approaches for cell therapy. However, the reproducibility and clinical efficacy of these attempts have been obscured by the heterogeneous nature of BMSCs due to their isolation by plastic adherence techniques. To address these limitations, our group has refined the purity of individual progenitor populations that are encompassed by BMSCs by identifying defined populations of bona fide hSSCs and their downstream progenitors that strictly give rise to skeletally restricted cell lineages. Here, we describe an advanced flow cytometric approach that utilizes an extensive panel of eight cell surface markers to define hSSCs; bone, cartilage and stromal progenitors; and more differentiated unipotent subtypes, including an osteogenic subset and three chondroprogenitors. We provide detailed instructions for the FACS-based isolation of hSSCs from various tissue sources, in vitro and in vivo skeletogenic functional assays, human xenograft mouse models and single-cell RNA sequencing analysis. This application of hSSC isolation can be performed by any researcher with basic skills in biology and flow cytometry within 1-2 days. The downstream functional assays can be performed within a range of 1-2 months.


Asunto(s)
Células Madre Mesenquimatosas , Humanos , Ratones , Animales , Linaje de la Célula , Reproducibilidad de los Resultados , Diferenciación Celular/fisiología , Huesos , Células de la Médula Ósea , Células Cultivadas
2.
Nat Commun ; 13(1): 6491, 2022 10 30.
Artículo en Inglés | MEDLINE | ID: mdl-36310174

RESUMEN

Sexually dimorphic tissues are formed by cells that are regulated by sex hormones. While a number of systemic hormones and transcription factors are known to regulate proliferation and differentiation of osteoblasts and osteoclasts, the mechanisms that determine sexually dimorphic differences in bone regeneration are unclear. To explore how sex hormones regulate bone regeneration, we compared bone fracture repair between adult male and female mice. We found that skeletal stem cell (SSC) mediated regeneration in female mice is dependent on estrogen signaling but SSCs from male mice do not exhibit similar estrogen responsiveness. Mechanistically, we found that estrogen acts directly on the SSC lineage in mice and humans by up-regulating multiple skeletogenic pathways and is necessary for the stem cell's ability to self- renew and differentiate. Our results also suggest a clinically applicable strategy to accelerate bone healing using localized estrogen hormone therapy.


Asunto(s)
Osteoblastos , Células Madre , Humanos , Masculino , Femenino , Ratones , Animales , Osteoblastos/metabolismo , Diferenciación Celular , Osteoclastos , Estrógenos/farmacología , Estrógenos/metabolismo
3.
Artículo en Inglés | MEDLINE | ID: mdl-36037035

RESUMEN

The skeletal system is generated and maintained by its progenitors, skeletal stem cells (SSCs), across the duration of life. Gradual changes associated with aging result in significant differences in functionality of SSCs. Declines in bone and cartilage production, increase of bone marrow adipose tissue, compositional changes of cellular microenvironments, and subsequent deterioration of external and internal structures culminate in the aged and weakened skeleton. The features and mechanisms of skeletal aging, and of its stem and progenitor cells in particular, are topics of recent investigation. The discovery of functionally homogeneous SSC populations with a defined cell surface phenotype has allowed for closer inspection of aging in terms of its effects on transcriptional regulation, cell function, and identity. Here, we review the aspects of SSC aging on both micro- and macroscopic levels. Up-to-date knowledge of SSC biology and aging is presented, and directions for future research and potential therapies are discussed. The realm of SSC-mediated bone aging remains an important component of global health and a necessary facet in our understanding of human aging.

4.
J Clin Microbiol ; 60(8): e0053322, 2022 08 17.
Artículo en Inglés | MEDLINE | ID: mdl-35862760

RESUMEN

Whole-genome sequencing (WGS) is rapidly replacing traditional typing methods for the investigation of infectious disease outbreaks. Additionally, WGS data are being used to predict phenotypic antimicrobial susceptibility. Acinetobacter baumannii, which is often multidrug-resistant, is a significant culprit in outbreaks in health care settings. A well-characterized collection of A. baumannii was studied using core genome multilocus sequence typing (cgMLST). Seventy-two isolates previously typed by PCR-electrospray ionization mass spectrometry (PCR/ESI-MS) provided by the Antimicrobial Resistance Leadership Group (ARLG) were analyzed using a clinical microbiology laboratory developed workflow for cgMLST with genomic susceptibility prediction performed using the ARESdb platform. Previously performed PCR/ESI-MS correlated with cgMLST using relatedness thresholds of allelic differences of ≤9 and ≤200 allelic differences in 78 and 94% of isolates, respectively. Categorical agreement between genotypic and phenotypic antimicrobial susceptibility across a panel of 11 commonly used drugs was 89%, with minor, major, and very major error rates of 8%, 11%, and 1%, respectively.


Asunto(s)
Acinetobacter baumannii , Antiinfecciosos , Acinetobacter baumannii/genética , Genoma Bacteriano/genética , Genómica , Humanos , Tipificación de Secuencias Multilocus/métodos
5.
Am J Emerg Med ; 55: 228.e5-228.e7, 2022 05.
Artículo en Inglés | MEDLINE | ID: mdl-35101293

RESUMEN

Obstructive shock describes any disease process that causes physical obstruction to blood flow into or out of the heart which results in impaired systemic oxygen or nutrient delivery. Common etiologies include cardiac tamponade, tension pneumothorax, and pulmonary embolus. However, several other causes exist and should prompt consideration in the correct clinical circumstances. In this report, we describe a 72-year-old female patient with history of hepatic cysts presenting with respiratory distress, mottled extremities, and abnormal vital signs. Contrast enhanced computed tomography scans showed a massive hepatic cyst which was compressing her vena cava and heart, causing hemodynamic instability. The patient was admitted to the ICU and the hepatic cyst was drained percutaneously, but ultimately, she succumbed to her illness post-operatively. This report highlights the importance of keeping a broad differential when considering etiologies of undifferentiated shock as well as the need for additional research regarding management of rare causes of obstructive shock.


Asunto(s)
Taponamiento Cardíaco , Quistes , Embolia Pulmonar , Choque , Anciano , Taponamiento Cardíaco/complicaciones , Quistes/complicaciones , Servicio de Urgencia en Hospital , Femenino , Humanos , Hepatopatías , Embolia Pulmonar/complicaciones
6.
Nature ; 597(7875): 256-262, 2021 09.
Artículo en Inglés | MEDLINE | ID: mdl-34381212

RESUMEN

Loss of skeletal integrity during ageing and disease is associated with an imbalance in the opposing actions of osteoblasts and osteoclasts1. Here we show that intrinsic ageing of skeletal stem cells (SSCs)2 in mice alters signalling in the bone marrow niche and skews the differentiation of bone and blood lineages, leading to fragile bones that regenerate poorly. Functionally, aged SSCs have a decreased bone- and cartilage-forming potential but produce more stromal lineages that express high levels of pro-inflammatory and pro-resorptive cytokines. Single-cell RNA-sequencing studies link the functional loss to a diminished transcriptomic diversity of SSCs in aged mice, which thereby contributes to the transformation of the bone marrow niche. Exposure to a youthful circulation through heterochronic parabiosis or systemic reconstitution with young haematopoietic stem cells did not reverse the diminished osteochondrogenic activity of aged SSCs, or improve bone mass or skeletal healing parameters in aged mice. Conversely, the aged SSC lineage promoted osteoclastic activity and myeloid skewing by haematopoietic stem and progenitor cells, suggesting that the ageing of SSCs is a driver of haematopoietic ageing. Deficient bone regeneration in aged mice could only be returned to youthful levels by applying a combinatorial treatment of BMP2 and a CSF1 antagonist locally to fractures, which reactivated aged SSCs and simultaneously ablated the inflammatory, pro-osteoclastic milieu. Our findings provide mechanistic insights into the complex, multifactorial mechanisms that underlie skeletal ageing and offer prospects for rejuvenating the aged skeletal system.


Asunto(s)
Envejecimiento/patología , Huesos/patología , Senescencia Celular , Inflamación/patología , Nicho de Células Madre , Células Madre/patología , Animales , Proteína Morfogenética Ósea 2/metabolismo , Regeneración Ósea , Linaje de la Célula , Femenino , Curación de Fractura , Hematopoyesis , Factor Estimulante de Colonias de Macrófagos/metabolismo , Masculino , Ratones , Células Mieloides/citología , Osteoclastos/citología , Rejuvenecimiento
7.
Elife ; 102021 07 19.
Artículo en Inglés | MEDLINE | ID: mdl-34280086

RESUMEN

Skeletal stem and progenitor cell populations are crucial for bone physiology. Characterization of these cell types remains restricted to heterogenous bulk populations with limited information on whether they are unique or overlap with previously characterized cell types. Here we show, through comprehensive functional and single-cell transcriptomic analyses, that postnatal long bones of mice contain at least two types of bone progenitors with bona fide skeletal stem cell (SSC) characteristics. An early osteochondral SSC (ocSSC) facilitates long bone growth and repair, while a second type, a perivascular SSC (pvSSC), co-emerges with long bone marrow and contributes to shape the hematopoietic stem cell niche and regenerative demand. We establish that pvSSCs, but not ocSSCs, are the origin of bone marrow adipose tissue. Lastly, we also provide insight into residual SSC heterogeneity as well as potential crosstalk between the two spatially distinct cell populations. These findings comprehensively address previously unappreciated shortcomings of SSC research.


Asunto(s)
Desarrollo Óseo , Huesos/metabolismo , Células del Estroma/metabolismo , Tejido Adiposo , Animales , Médula Ósea , Células de la Médula Ósea , Regulación del Desarrollo de la Expresión Génica , Células Madre Hematopoyéticas/metabolismo , Masculino , Ratones , Ratones Endogámicos C57BL , Pericitos , Nicho de Células Madre , Transcriptoma
8.
Nat Med ; 26(10): 1583-1592, 2020 10.
Artículo en Inglés | MEDLINE | ID: mdl-32807933

RESUMEN

Osteoarthritis (OA) is a degenerative disease resulting in irreversible, progressive destruction of articular cartilage1. The etiology of OA is complex and involves a variety of factors, including genetic predisposition, acute injury and chronic inflammation2-4. Here we investigate the ability of resident skeletal stem-cell (SSC) populations to regenerate cartilage in relation to age, a possible contributor to the development of osteoarthritis5-7. We demonstrate that aging is associated with progressive loss of SSCs and diminished chondrogenesis in the joints of both mice and humans. However, a local expansion of SSCs could still be triggered in the chondral surface of adult limb joints in mice by stimulating a regenerative response using microfracture (MF) surgery. Although MF-activated SSCs tended to form fibrous tissues, localized co-delivery of BMP2 and soluble VEGFR1 (sVEGFR1), a VEGF receptor antagonist, in a hydrogel skewed differentiation of MF-activated SSCs toward articular cartilage. These data indicate that following MF, a resident stem-cell population can be induced to generate cartilage for treatment of localized chondral disease in OA.


Asunto(s)
Cartílago Articular/fisiología , Regeneración/fisiología , Células Madre/fisiología , Adulto , Animales , Cartílago Articular/citología , Diferenciación Celular , Células Cultivadas , Condrocitos/citología , Condrocitos/fisiología , Condrogénesis/fisiología , Trasplante de Tejido Fetal , Feto/citología , Xenoinjertos , Humanos , Masculino , Células Madre Mesenquimatosas/fisiología , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Células Madre/citología , Ingeniería de Tejidos/métodos
9.
Diagn Microbiol Infect Dis ; 97(1): 114996, 2020 May.
Artículo en Inglés | MEDLINE | ID: mdl-32098688

RESUMEN

Whole genome sequencing (WGS) is replacing traditional microbiological typing methods for investigation of outbreaks in clinical settings. Here, we used a clinical microbiology laboratory core genome multilocus sequence typing (cgMLST) workflow to analyze 40 isolates of K. pneumoniae which are part of the Antimicrobial Resistance Leadership Group (ARLG) isolate collection, alongside 10 Mayo Clinic K. pneumoniae isolates, comparing results to those of pulsed-field gel electrophoresis (PFGE). Additionally, we used the WGS data to predict phenotypic antimicrobial susceptibility (AST). Thirty-one of 40 ARLG K. pneumoniae isolates belonged to the same PFGE type, all of which, alongside 3 isolates of different PFGE types, formed a large cluster by cgMLST. PFGE and cgMLST were completely concordant for the 10 Mayo Clinic K. pneumoniae isolates. For AST prediction, the overall agreement between phenotypic AST and genotypic prediction was 95.6%.


Asunto(s)
Antibacterianos/farmacología , Genoma Bacteriano , Infecciones por Klebsiella/diagnóstico , Klebsiella pneumoniae/clasificación , Klebsiella pneumoniae/efectos de los fármacos , Tipificación de Secuencias Multilocus , Técnicas de Tipificación Bacteriana , Electroforesis en Gel de Campo Pulsado , Genotipo , Humanos , Infecciones por Klebsiella/microbiología , Klebsiella pneumoniae/enzimología , Pruebas de Sensibilidad Microbiana , Fenotipo , Secuenciación Completa del Genoma , Flujo de Trabajo , beta-Lactamasas
11.
Ann Surg ; 272(1): 183-193, 2020 07.
Artículo en Inglés | MEDLINE | ID: mdl-30585822

RESUMEN

OBJECTIVE: To investigate the effects of local doxycycline administration on skin scarring. BACKGROUND: Skin scarring represents a major source of morbidity for surgical patients. Doxycycline, a tetracycline antibiotic with off-target effects on the extracellular matrix, has demonstrated antifibrotic effects in multiple organs. However, doxycycline's potential effects on skin scarring have not been explored in vivo. METHODS: Female C57BL/6J mice underwent dorsal wounding following an established splinted excisional skin wounding model. Doxycycline was administered by local injection into the wound base following injury. Wounds were harvested upon complete wound closure (postoperative day 15) for histological examination and biomechanical testing of scar tissue. RESULTS: A one-time dose of 3.90 mM doxycycline (2 mg/mL) within 12 hours of injury was found to significantly reduce scar thickness by 24.8% (P < 0.0001) without compromising tensile strength. The same effect could not be achieved by oral dosing. In doxycycline-treated scar matrices, collagen I content was significantly reduced (P = 0.0317) and fibers were favorably arranged with significantly increased fiber randomness (P = 0.0115). Common culprits of altered wound healing mechanics, including angiogenesis and inflammation, were not impacted by doxycycline treatment. However, engrailed1 profibrotic fibroblasts, responsible for scar extracellular matrix deposition, were significantly reduced with doxycycline treatment (P = 0.0005). CONCLUSIONS: Due to the substantial improvement in skin scarring and well-established clinical safety profile, locally administered doxycycline represents a promising vulnerary agent. As such, we favor rapid translation to human patients as an antiscarring therapy.


Asunto(s)
Cicatriz/prevención & control , Colágeno/efectos de los fármacos , Doxiciclina/farmacología , Cicatrización de Heridas/efectos de los fármacos , Animales , Modelos Animales de Enfermedad , Doxiciclina/administración & dosificación , Femenino , Inyecciones Intralesiones , Ratones , Ratones Endogámicos C57BL , Resistencia a la Tracción
13.
Surg Endosc ; 34(4): 1868-1875, 2020 04.
Artículo en Inglés | MEDLINE | ID: mdl-31768726

RESUMEN

BACKGROUND: Laparoscopic cholecystectomy is the standard of care for symptomatic gallstone disease but when laparoscopic removal proves impossible the standard advice is to convert to open surgery. This jettisons the advantages of laparoscopy for a procedure which surgeons no longer perform routinely, so it may no longer be the safest practice. We hypothesised that gallbladder aspiration would be a safer alternative when laparoscopic removal is impossible. METHODS: A retrospective analysis was performed of all laparoscopic cholecystectomies attempted under one surgeon's care over 19 years, and the outcomes of gallbladder aspiration were compared with the standard conversion-to-open procedure within the same institution. RESULTS: Of 757 laparoscopic cholecystectomies attempted, 714 (94.3%) were successful, while 40 (5.3%) were impossible laparoscopically and underwent gallbladder aspiration. Interval cholecystectomy was later performed in 34/40 (85%). Only 3/757 (0.4%) were converted to open. No aspiration-related complications occurred and excessive bile leakage from the gallbladder was not observed. During this time 1209 laparoscopic cholecystectomies were attempted by other surgeons in the institution of which 55 (4.55%) were converted to open and 22 (40%) had procedure-associated complications. There was a significant difference in the mean (± SEM) post-operative hospital stay between laparoscopic gallbladder aspiration [3.12 (± 0.558) days] and institutional conversion-to-open cholecystectomy [9.38 (± 1.04) days] (p < 0.001), with attendant cost savings. CONCLUSION: Laparoscopic gallbladder aspiration is a safe alternative to conversion when inflammation makes cholecystectomy impossible laparoscopically, especially in the sickest patients and for surgeons with limited open surgery experience. This approach minimises morbidity and permits laparoscopic cholecystectomy in the majority after a suitable interval or referral of predicted difficult cases to specialist hepatobiliary centres.


Asunto(s)
Colecistectomía Laparoscópica/métodos , Colelitiasis/cirugía , Vesícula Biliar/cirugía , Adolescente , Adulto , Anciano , Anciano de 80 o más Años , Femenino , Humanos , Masculino , Persona de Mediana Edad , Estudios Retrospectivos , Adulto Joven
14.
Nat Commun ; 9(1): 4411, 2018 10 19.
Artículo en Inglés | MEDLINE | ID: mdl-30341306

RESUMEN

In the original version of this Article, the authors inadvertently omitted Elizabeth A. Brett, who contributed to the generation of the histology figures, from the author list.This has now been corrected in both the PDF and HTML versions of the Article.

15.
Nature ; 563(7732): 514-521, 2018 11.
Artículo en Inglés | MEDLINE | ID: mdl-30356216

RESUMEN

During both embryonic development and adult tissue regeneration, changes in chromatin structure driven by master transcription factors lead to stimulus-responsive transcriptional programs. A thorough understanding of how stem cells in the skeleton interpret mechanical stimuli and enact regeneration would shed light on how forces are transduced to the nucleus in regenerative processes. Here we develop a genetically dissectible mouse model of mandibular distraction osteogenesis-which is a process that is used in humans to correct an undersized lower jaw that involves surgically separating the jaw bone, which elicits new bone growth in the gap. We use this model to show that regions of newly formed bone are clonally derived from stem cells that reside in the skeleton. Using chromatin and transcriptional profiling, we show that these stem-cell populations gain activity within the focal adhesion kinase (FAK) signalling pathway, and that inhibiting FAK abolishes new bone formation. Mechanotransduction via FAK in skeletal stem cells during distraction activates a gene-regulatory program and retrotransposons that are normally active in primitive neural crest cells, from which skeletal stem cells arise during development. This reversion to a developmental state underlies the robust tissue growth that facilitates stem-cell-based regeneration of adult skeletal tissue.


Asunto(s)
Regeneración Ósea , Mandíbula/citología , Mandíbula/fisiología , Cresta Neural/citología , Osteogénesis por Distracción , Células Madre/citología , Animales , Cromatina/genética , Cromatina/metabolismo , Modelos Animales de Enfermedad , Proteína-Tirosina Quinasas de Adhesión Focal/antagonistas & inhibidores , Proteína-Tirosina Quinasas de Adhesión Focal/metabolismo , Regulación de la Expresión Génica , Masculino , Mandíbula/cirugía , Ratones , Ratones Endogámicos C57BL , Retroelementos/genética , Transducción de Señal , Células Madre/metabolismo , Transcripción Genética
16.
Nat Commun ; 9(1): 2971, 2018 07 30.
Artículo en Inglés | MEDLINE | ID: mdl-30061668

RESUMEN

Targeted genetic dissection of tissues to identify precise cell populations has vast biological and therapeutic applications. Here we develop an approach, through the packaging and delivery of 4-hydroxytamoxifen liposomes (LiTMX), that enables localized induction of CreERT2 recombinase in mice. Our method permits precise, in vivo, tissue-specific clonal analysis with both spatial and temporal control. This technology is effective using mice with both specific and ubiquitous Cre drivers in a variety of tissue types, under conditions of homeostasis and post-injury repair, and is highly efficient for lineage tracing and genetic analysis. This methodology is directly and immediately applicable to the developmental biology, stem cell biology and regenerative medicine, and cancer biology fields.


Asunto(s)
Linaje de la Célula , Liposomas/química , Tamoxifeno/análogos & derivados , Tejido Adiposo/metabolismo , Animales , Cartílago Articular/metabolismo , Células Cultivadas , Condrocitos/metabolismo , Modelos Animales de Enfermedad , Homeostasis , Inyecciones Intraperitoneales , Integrasas/metabolismo , Ratones , Ratones Transgénicos , Recombinasas , Medicina Regenerativa , Piel/metabolismo , Células Madre/citología , Células Madre/metabolismo , Tamoxifeno/química , Cicatrización de Heridas
17.
Nat Protoc ; 13(6): 1294-1309, 2018 06.
Artículo en Inglés | MEDLINE | ID: mdl-29748647

RESUMEN

There are limited methods available to study skeletal stem, progenitor, and progeny cell activity in normal and diseased contexts. Most protocols for skeletal stem cell isolation are based on the extent to which cells adhere to plastic or whether they express a limited repertoire of surface markers. Here, we describe a flow cytometry-based approach that does not require in vitro selection and that uses eight surface markers to distinguish and isolate mouse skeletal stem cells (mSSCs); bone, cartilage, and stromal progenitors (mBCSPs); and five downstream differentiated subtypes, including chondroprogenitors, two types of osteoprogenitors, and two types of hematopoiesis-supportive stroma. We provide instructions for the optimal mechanical and chemical digestion of bone and bone marrow, as well as the subsequent flow-cytometry-activated cell sorting (FACS) gating schemes required to maximally yield viable skeletal-lineage cells. We also describe a methodology for renal subcapsular transplantation and in vitro colony-formation assays on the isolated mSSCs. The isolation of mSSCs can be completed in 9 h, with at least 1 h more required for transplantation. Experience with flow cytometry and mouse surgical procedures is recommended before attempting the protocol. Our system has wide applications and has already been used to study skeletal response to fracture, diabetes, and osteoarthritis, as well as hematopoietic stem cell-niche interactions in the bone marrow.


Asunto(s)
Citometría de Flujo/métodos , Esqueleto/citología , Células Madre/fisiología , Animales , Ensayo de Unidades Formadoras de Colonias/métodos , Ratones , Trasplante de Células Madre/métodos
19.
Artículo en Inglés | MEDLINE | ID: mdl-29316315

RESUMEN

Since the discovery of scarless fetal skin wound healing, research in the field has expanded significantly with the hopes of advancing the finding to adult human patients. There are several differences between fetal and adult skin that have been exploited to facilitate scarless healing in adults including growth factors, cytokines, and extracellular matrix substitutes. However, no one therapy, pathway, or cell subtype is sufficient to support scarless wound healing in adult skin. More recently, products that contain or mimic fetal and adult uninjured dermis were introduced to the wound healing market with promising clinical outcomes. Through our review of the major experimental targets of fetal wound healing, we hope to encourage research in areas that may have a significant clinical impact. Additionally, we will investigate therapies currently in clinical use and evaluate whether they represent a legitimate advance in regenerative medicine or a vulnerary agent. WIREs Dev Biol 2018, 7:e309. doi: 10.1002/wdev.309 This article is categorized under: Adult Stem Cells, Tissue Renewal, and Regeneration > Regeneration Plant Development > Cell Growth and Differentiation Adult Stem Cells, Tissue Renewal, and Regeneration > Environmental Control of Stem Cells.


Asunto(s)
Cicatriz/metabolismo , Piel/citología , Trasplante de Células Madre/métodos , Animales , Cicatriz/patología , Cicatriz/terapia , Humanos , Piel/embriología , Piel/metabolismo , Células Madre/citología , Células Madre/metabolismo
20.
Plast Reconstr Surg Glob Open ; 5(9): e1486, 2017 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-29062653

RESUMEN

BACKGROUND: The first carpometacarpal joint (CMCJ) in the hand is a commonly affected joint by osteoarthritis. It causes significant thumb base pain, limiting functional capacity. Microfracturing and application of autologous stem cells has been performed on large joints such as the knee but has never been evaluated for use in the smaller joints in the hand. Our aim was to determine the potential benefit of microfracturing and autologous bone marrow stem cells for treatment of osteoarthritis of the first CMCJ in the hand. METHODS: All inclusion criteria were satisfied. Preoperative assessment by the surgeon, physiotherapist, and occupational therapist was performed. The first CMCJ was microfractured and the Bone Marrow Stem Cells were applied directly. Postoperatively, the patients were followed up for 1 year. RESULTS: Fifteen patients met inclusion criteria; however, 2 patients were excluded due to postoperative cellulitis and diagnosis of De Quervain's tenosynovitis. The mean scores of the 13-patient preoperative and 1 year follow-up assessments are visual analog score at rest of 3.23-1.69 (P = 0.0292), visual analog score on activity of 7.92-4.23 (P = 0.0019), range of motion 45.77o-55.15o (P = 0.0195), thumb opposition score 7.62-9.23 (P = 0.0154), Disability of the Arm, Shoulder and Hand score of 51.67-23.08 (P = 0.0065). Strength improved insignificantly from 4.7 kg preoperatively to 5.53 kg at 12 months (P = 0.1257). All patients had a positive Grind test preoperatively and a negative test after 12 months. CONCLUSIONS: This innovative pilot study is a new approach to osteoarthritis of the thumb.

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