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1.
Anesth Analg ; 133(1): 151-159, 2021 07 01.
Artigo em Inglês | MEDLINE | ID: mdl-33835077

RESUMO

BACKGROUND: While flexible epidural catheters reduce the risk of paresthesia and intravascular cannulation, they may be more challenging to advance beyond the tip of a Tuohy needle. This may increase placement time, number of attempts, and possibly complications when establishing labor analgesia. This study investigated the ability to advance flexible epidural catheters through different epidural needles from 2 commonly used, commercially available, epidural kits. METHODS: We hypothesized that the multiorifice wire-reinforced polyamide nylon blend epidural catheters will have a higher rate of successful first attempt insertion than the single-end hole wire-reinforced polyurethane catheters for the establishment of labor analgesia. The primary outcome was a difference in proportions of failure to advance the epidural catheter between the 2 epidural kits and was tested by a χ2 test. Two-hundred forty epidural kits were collected (n = 120/group) for 240 laboring patients requesting epidural analgesia in this open-label clinical trial from November 2018 to September 2019. Two-week time intervals were randomized for the exclusive use of 1 of the 2 kits in this study, where all patients received labor analgesia through either the flexible epidural catheter "A" or the flexible epidural catheter "B." Engineering properties of the equipment used were then determined. RESULTS: Flexible epidural catheter "A," the single-end hole wire-reinforced polyurethane catheter, did not advance at the first attempt in 15% (n = 18 of 120) of the parturients compared to 0.8% (n = 1 of 120) of the catheter "B," the multiorifice wire-reinforced polyamide nylon blend epidural catheter (P < .0001). Twenty-five additional epidural needle manipulations were recorded in the laboring patients who received catheter "A," while 1 epidural needle manipulation was recorded in the parturients who received catheter "B" (P < .0001). Bending stiffness of the epidural catheters used from kit "B" was twice the bending stiffness of the catheters used from kit "A" (bending stiffness catheters "A" 0.64 ± 0.04 N·mm2 versus bending stiffness catheters "B" 1.28 ± 0.20 N·mm2, P = .0038), and the angle formed by the needle and the epidural catheter from kit "A" was less acute than the angle formed from kit "B" (kit "A" 14.17 ± 1.72° versus kit "B" 21.83 ± 1.33°, P = .0036), with a mean difference of 7.66° between the 2 kits' angles. CONCLUSIONS: The incidence of an inability to advance single-end hole wire-reinforced polyurethane catheter was higher compared to the use of multiorifice wire-reinforced polyamide nylon blend epidural catheter. Variation of morphological features of epidural needles and catheters may play a critical role in determining the successful establishment of labor epidural analgesia.


Assuntos
Analgesia Epidural/instrumentação , Analgésicos/administração & dosagem , Catéteres , Desenho de Equipamento/instrumentação , Trabalho de Parto/efeitos dos fármacos , Maleabilidade , Adulto , Analgesia Epidural/métodos , Desenho de Equipamento/métodos , Feminino , Humanos , Trabalho de Parto/fisiologia , Gravidez , Estudos Prospectivos
2.
Am J Physiol Cell Physiol ; 319(1): C129-C135, 2020 07 01.
Artigo em Inglês | MEDLINE | ID: mdl-32374677

RESUMO

The purpose of this study was to evaluate a new pharmacological strategy using a first-generation succinate prodrug, NV118, in peripheral blood mononuclear cells (PBMCs) obtained from subjects with carbon monoxide (CO) poisoning and healthy controls. We obtained human blood cells from subjects with CO poisoning and healthy control subjects. Intact PBMCs from subjects in the CO and Control group were analyzed with high-resolution respirometry measured in pmol O2 per second per 10-6 PBMCs. In addition to obtaining baseline respiration, NV118 (100 µM) was injected, and the same parameters of respiration were obtained for comparison in PBMCs. We measured mitochondrial dynamics with microscopy with the same conditions. We enrolled 37 patients (17 in the CO group and 20 in the Control group for comparison) in the study. PMBCs obtained from subjects in the CO group had overall significantly lower respiration compared with the Control group (P < 0.0001). There was a significant increase in respiration with NV118, specifically with an increase in maximum respiration and respiration from complex II and complex IV (P < 0.0001). The mitochondria in PBMCs demonstrated an overall increase in net movement compared with the Control group. Our results of this study suggest that the therapeutic compound, NV118, increases respiration at complex II and IV as well as restoration of mitochondrial movement in PBMCs obtained from subjects with CO poisoning. Mitochondrial-directed therapy offers a potential future strategy with further exploration in vivo.


Assuntos
Intoxicação por Monóxido de Carbono/metabolismo , Permeabilidade da Membrana Celular/fisiologia , Leucócitos Mononucleares/metabolismo , Mitocôndrias/metabolismo , Pró-Fármacos/metabolismo , Ácido Succínico/metabolismo , Permeabilidade da Membrana Celular/efeitos dos fármacos , Respiração Celular/efeitos dos fármacos , Respiração Celular/fisiologia , Humanos , Leucócitos Mononucleares/efeitos dos fármacos , Mitocôndrias/efeitos dos fármacos , Pró-Fármacos/administração & dosagem , Ácido Succínico/administração & dosagem
3.
J Heat Transfer ; 141(5): 0524011-524016, 2019 May.
Artigo em Inglês | MEDLINE | ID: mdl-31186582

RESUMO

Describing the hydrodynamics of nanoparticles in fluid media poses interesting challenges due to the coupling between the Brownian and hydrodynamic forces at the nanoscale. We focus on multiscale formulations of Brownian motion and hydrodynamic interactions (HI) of a single flexible polymeric nanoparticle in confining flows using the Brownian Dynamics method. The nanoparticle is modeled as a self-avoiding freely jointed polymer chain that is subject to Brownian forces, hydrodynamics forces, and repulsive interactions with the confining wall. To accommodate the effect of the wall, the hydrodynamic lift due to the wall is included in the mobility of a bead of the polymer chain which depends on its proximity to the wall. Using the example of a flexible polymeric nanoparticle, we illustrate temporal dynamics pertaining to the colloidal scale as well as the nanoscale.

4.
Am J Physiol Cell Physiol ; 315(5): C699-C705, 2018 11 01.
Artigo em Inglês | MEDLINE | ID: mdl-30110561

RESUMO

While barotrauma, decompression sickness, and drowning-related injuries are common morbidities associated with diving and decompression from depth, it remains unclear what impact rapid decompression has on mitochondrial function. In vitro diving simulation was performed with human dermal fibroblast cells subjected to control, air, nitrogen, and oxygen dive conditions. With the exception of the gas mixture, all other related variables, including absolute pressure exposure, dive and decompression rates, and temperature, were held constant. High-resolution respirometry was used to examine key respiratory states. Mitochondrial dynamic function, including net movement, number, and rates of fusion/fission events, was obtained from fluorescence microscopy imaging. Effects of the dive conditions on cell cytoskeleton were assessed by imaging both actin and microtubules. Maximum respiration was lower in fibroblasts in the air group than in the control and nitrogen groups. The oxygen group had overall lower respiration when compared with all other groups. All groups demonstrated lower mitochondrial motility when compared with the control group. Rates of fusion and fission events were the same between all groups. There were visible differences in cell morphology consistent with the actin staining; however, there were no appreciable changes to the microtubules. This is the first study to directly assess mitochondrial respiration and dynamics in a cell model of decompression. Both hyperbaric oxygen and air dive conditions produce deleterious effects on overall mitochondrial health in fibroblasts.


Assuntos
Doença da Descompressão/fisiopatologia , Mitocôndrias/fisiologia , Oxigênio/metabolismo , Respiração/genética , Doença da Descompressão/metabolismo , Mergulho/efeitos adversos , Mergulho/fisiologia , Fibroblastos/metabolismo , Fibroblastos/patologia , Humanos , Mitocôndrias/genética , Mitocôndrias/metabolismo , Dinâmica Mitocondrial/fisiologia , Cultura Primária de Células , Temperatura
5.
Phys Biol ; 15(2): 026002, 2018 01 11.
Artigo em Inglês | MEDLINE | ID: mdl-29116056

RESUMO

Thermal fluctuations in cell membranes manifest as an excess area ([Formula: see text]) which governs a multitude of physical process at the sub-micron scale. We present a theoretical framework, based on an in silico tether pulling method, which may be used to reliably estimate [Formula: see text] in live cells. We perform our simulations in two different thermodynamic ensembles: (i) the constant projected area and (ii) the constant frame tension ensembles and show the equivalence of our results in the two. The tether forces estimated from our simulations compare well with our experimental measurements for tethers extracted from ruptured GUVs and HeLa cells. We demonstrate the significance and validity of our method by showing that all our calculations performed in the initial tether formation regime (i.e. when the length of the tether is comparable to its radius) along with experiments of tether extraction in 15 different cell types collapse onto two unified scaling relationships mapping tether force, tether radius, bending stiffness κ, and membrane tension σ. We show that [Formula: see text] is an important determinant of the radius of the extracted tether, which is equal to the characteristic length [Formula: see text] for [Formula: see text], and is equal to [Formula: see text] for [Formula: see text]. We also find that the estimated excess area follows a linear scaling behavior that only depends on the true value of [Formula: see text] for the membrane, based on which we propose a self-consistent technique to estimate the range of excess membrane areas in a cell.


Assuntos
Membrana Celular/fisiologia , Simulação por Computador , Modelos Biológicos , Termodinâmica
6.
Brain ; 140(3): 568-581, 2017 03 01.
Artigo em Inglês | MEDLINE | ID: mdl-28364549

RESUMO

Cellular distribution and dynamics of mitochondria are regulated by several motor proteins and a microtubule network. In neurons, mitochondrial trafficking is crucial because of high energy needs and calcium ion buffering along axons to synapses during neurotransmission. The trafficking kinesin proteins (TRAKs) are well characterized for their role in lysosomal and mitochondrial trafficking in cells, especially neurons. Using whole exome sequencing, we identified homozygous truncating variants in TRAK1 (NM_001042646:c.287-2A > C), in six lethal encephalopathic patients from three unrelated families. The pathogenic variant results in aberrant splicing and significantly reduced gene expression at the RNA and protein levels. In comparison with normal cells, TRAK1-deficient fibroblasts showed irregular mitochondrial distribution, altered mitochondrial motility, reduced mitochondrial membrane potential, and diminished mitochondrial respiration. This study confirms the role of TRAK1 in mitochondrial dynamics and constitutes the first report of this gene in association with a severe neurodevelopmental disorder.


Assuntos
Proteínas Adaptadoras de Transporte Vesicular/genética , Proteínas Adaptadoras de Transporte Vesicular/metabolismo , Encefalopatias/genética , Encefalopatias/patologia , Mitocôndrias/metabolismo , Dinâmica Mitocondrial/genética , Encefalopatias/diagnóstico por imagem , Encefalopatias/mortalidade , Células Cultivadas , Pré-Escolar , Consanguinidade , Saúde da Família , Feminino , Fibroblastos/patologia , Fibroblastos/ultraestrutura , Estudos de Associação Genética , Proteínas de Fluorescência Verde/genética , Proteínas de Fluorescência Verde/metabolismo , Humanos , Lactente , Imageamento por Ressonância Magnética , Masculino , Consumo de Oxigênio/genética , Transporte Proteico/genética , Transfecção
7.
Langmuir ; 33(42): 11332-11344, 2017 10 24.
Artigo em Inglês | MEDLINE | ID: mdl-28810736

RESUMO

We have studied the microstructure of a flow-driven hardsphere suspension inside a cylinder using dynamical density functional theory and Monte Carlo simulations. In order to be representative of various physical conditions that may prevail in experiments, we investigate the problem using both the grand canonical (µVT) ensemble and the canonical (NVT) ensemble. In both ensembles, the hydrodynamic effect on the suspension mediated by the presence of the confining wall is implemented in a mean-field fashion by incorporating the thermodynamic work done by the inertial lift force on the particle given the average flow field. The predicted particle distribution in the µVT ensemble displays strong structural ordering at increasing flow rates due to the correspondingly higher particle concentrations inside the cylinder. In the NVT ensemble, for dilute suspensions we observe a peak in the distribution of density at a location similar to that of the Segré-Silberberg annulus, while for dense suspensions the competing effects of the inertial lift and the hardsphere interaction lead to the formation of several annuli.


Assuntos
Método de Monte Carlo , Hidrodinâmica , Suspensões , Termodinâmica
8.
Soft Matter ; 13(9): 1873-1880, 2017 Mar 01.
Artigo em Inglês | MEDLINE | ID: mdl-28177340

RESUMO

The cell interior is a crowded chemical space, which limits the diffusion of molecules and organelles within the cytoplasm, affecting the rates of chemical reactions. We provide insight into the relationship between non-specific intracellular diffusion and cytoskeletal integrity. Quantum dots entered the cell through microinjection and their spatial coordinates were captured by tracking their fluorescence signature as they diffused within the cell cytoplasm. Particle tracking revealed significant enhancement in the mobility of biocompatible quantum dots within fibrosarcoma cells versus their healthy counterparts, fibroblasts, as well as in actin destabilized fibroblasts versus untreated fibroblasts. Analyzing the displacement distributions provided insight into how the heterogeneity of the cell cytoskeleton influences intracellular particle diffusion. We demonstrate that intracellular diffusion of non-specific nanoparticles is enhanced by disrupting the actin network, which has implications for drug delivery efficacy and trafficking.

9.
J Intensive Care Med ; 32(1): 86-94, 2017 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-27443317

RESUMO

Metabolic biomarkers have potentially wider use in disease diagnosis and prognosis as well as in monitoring disease response to treatment. While biomarkers such as interleukins, microRNA, and lactate have been proposed for disease surveillance, there are still conflicting results regarding their clinical utility. Treatment of commonly encountered disease of acute care such as sepsis, trauma, and poisoning often relies on clinical diagnosis and therapy guided by use of surrogate markers of illness severity. The measurement of mitochondrial function, including respiration and motility, may offer superior alternatives to such markers. Assessing mitochondrial function in a clinical context has the potential to impact the area of acute care in terms of diagnosis, prognosis, and treatment. The study of mitochondrial bioenergetics has become critical in understanding the pathophysiology and treatment of complex diseases such as diabetes and cardiovascular disorders.


Assuntos
Respiração Celular , Cuidados Críticos , Estado Terminal/terapia , Mitocôndrias/metabolismo , Intoxicação/metabolismo , Sepse/metabolismo , Ferimentos e Lesões/metabolismo , Biomarcadores/metabolismo , Humanos , Monitorização Fisiológica , Intoxicação/fisiopatologia , Intoxicação/terapia , Espécies Reativas de Oxigênio/metabolismo , Sepse/fisiopatologia , Sepse/terapia , Ferimentos e Lesões/fisiopatologia , Ferimentos e Lesões/terapia
10.
J Heat Transfer ; 139(3): 0330011-330019, 2017 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-28035168

RESUMO

Traditionally, the numerical computation of particle motion in a fluid is resolved through computational fluid dynamics (CFD). However, resolving the motion of nanoparticles poses additional challenges due to the coupling between the Brownian and hydrodynamic forces. Here, we focus on the Brownian motion of a nanoparticle coupled to adhesive interactions and confining-wall-mediated hydrodynamic interactions. We discuss several techniques that are founded on the basis of combining CFD methods with the theory of nonequilibrium statistical mechanics in order to simultaneously conserve thermal equipartition and to show correct hydrodynamic correlations. These include the fluctuating hydrodynamics (FHD) method, the generalized Langevin method, the hybrid method, and the deterministic method. Through the examples discussed, we also show a top-down multiscale progression of temporal dynamics from the colloidal scales to the molecular scales, and the associated fluctuations, hydrodynamic correlations. While the motivation and the examples discussed here pertain to nanoscale fluid dynamics and mass transport, the methodologies presented are rather general and can be easily adopted to applications in convective heat transfer.

11.
Biotechnol Bioeng ; 112(7): 1395-405, 2015 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-25678368

RESUMO

Current methodologies used for mitochondrial motility analysis tend to either overlook individual mitochondrial tracks or analyze only peripheral mitochondria instead of mitochondria in all regions of the cell. Furthermore, motility analysis of an individual mitochondrion is usually quantified by establishing an arbitrary threshold for "directed" motion. In this work, we created a custom, publicly available computational algorithm based on a previously published approach (Giedt et al., 2012. Ann Biomed Eng 40:1903-1916) in order to characterize the distribution of mitochondrial movements at the whole-cell level, while still preserving information about single mitochondria. Our technique is easy to use, robust, and computationally inexpensive. Images are first pre-processed for increased resolution, and then individual mitochondria are tracked based on object connectivity in space and time. When our method is applied to microscopy fields encompassing entire cells, we reveal that the mitochondrial net distances in fibroblasts follow a lognormal distribution within a given cell or group of cells. The ability to model whole-cell mitochondrial motility as a lognormal distribution provides a new quantitative paradigm for comparing mitochondrial motility in naïve and treated cells. We further demonstrate that microtubule and microfilament depolymerization shift the lognormal distribution in directions which indicate decreased and increased mitochondrial movement, respectively. These findings advance earlier work on neuronal axons (Morris and Hollenbeck, 1993. J Cell Sci 104:917-927) by relating them to a different cell type, applying them on a global scale, and automating measurement of mitochondrial motility in general.


Assuntos
Citoesqueleto de Actina/metabolismo , Fenômenos Fisiológicos Celulares , Biologia Computacional/métodos , Técnicas Citológicas/métodos , Mitocôndrias/fisiologia , Movimento , Algoritmos , Células Cultivadas , Fibroblastos/fisiologia , Humanos
12.
Biomacromolecules ; 16(2): 650-9, 2015 Feb 09.
Artigo em Inglês | MEDLINE | ID: mdl-25585173

RESUMO

A stimuli-responsive, controlled release bilayer for the prevention of bacterial infection on biomaterials is presented. Drug release is locally controlled by the pH-responsiveness of the bilayer, comprised of an inner poly(acrylic acid) (PAA) monolayer grafted to a biomaterial and cross-linked with an outer chitosan (CH) brush. Tobramycin (TOB) is loaded in the inner PAA in part to minimize bacteria resistance. Because biofilm formation causes a decrease in local pH, TOB is released from PAA and permeates through the CH, which is in contact with the biofilm. Antibiotic capacity is controlled by the PAA thickness, which depends on PAA brush length and the extent of cross-linking between CH and PAA at the bilayer interface. This TOB-loaded, pH-responsive bilayer exhibits significantly enhanced antibacterial activity relative to controls.


Assuntos
Antibacterianos/química , Antibacterianos/metabolismo , Sistemas de Liberação de Medicamentos/métodos , Staphylococcus aureus/metabolismo , Tobramicina/química , Tobramicina/metabolismo , Antibacterianos/administração & dosagem , Concentração de Íons de Hidrogênio , Staphylococcus aureus/efeitos dos fármacos , Tobramicina/administração & dosagem
13.
Soft Matter ; 11(29): 5955-69, 2015 Aug 07.
Artigo em Inglês | MEDLINE | ID: mdl-26126781

RESUMO

We report theoretical as well as numerical investigations of deformable nanocarriers (NCs) under physiologically relevant flow conditions. Specifically, to model the deformable lysozyme-core/dextran-shell crosslinked polymer based NC with internal nanostructure and subject it to external hydrodynamic shear, we have introduced a coarse-grained model for the NC and have adopted a Brownian dynamics framework, which incorporates hydrodynamic interactions, in order to describe the static and dynamic properties of the NC. In order to represent the fluidity of the polymer network in the dextran brush-like corona, we coarse-grain the structure of the NC based on the hypothesis that Brownian motion, polymer melt reptations, and crosslinking density dominate their structure and dynamics. In our model, we specify a crosslinking density and employ the simulated annealing protocol to mimic the experimental synthesis steps in order to obtain the appropriate internal structure of the core-shell polymer. We then compute the equilibrium as well as steady shear rheological properties as functions of the Péclet number and the crosslinking density, in the presence of hydrodynamic interactions. We find that with increasing crosslinking, the stiffness of the nanocarrier increases, the radius of gyration decreases, and as a consequence the self-diffusivity increases. The nanocarrier under shear deforms and orients along the direction of the applied shear and we find that the orientation and deformation under shear are dependent on the shear rate and the crosslinking density. We compare various dynamic properties of the NC as a function of the shear force, such as orientation, deformation, intrinsic stresses etc., with previously reported computational and experimental results of other model systems. The computational approach described here serves as a powerful tool for the rational design of NCs by taking both the physiological as well as the hydrodynamic environments into consideration. Development of such models is essential in order to gain useful insights that may be translated into the optimal design of NCs for diagnostic as well as targeted drug delivery applications.


Assuntos
Nanoestruturas/química , Polímeros/química , Humanos , Hidrodinâmica , Resistência ao Cisalhamento
14.
Langmuir ; 30(7): 1906-14, 2014 Feb 25.
Artigo em Inglês | MEDLINE | ID: mdl-24483622

RESUMO

A novel, solution-based method is presented to prepare bifunctional gold nanorods (B-NRs), assemble B-NRs end-to-end in various solvents, and disperse linked B-NRs in a polymer matrix. The B-NRs have poly(ethylene glycol) grafted along its long axis and cysteine adsorbed to its ends. By controlling cysteine coverage, bifunctional ligands or polymer can be end-grafted to the AuNRs. Here, two dithiol ligands (C6DT and C9DT) are used to link the B-NRs in organic solvents. With increasing incubation time, the nanorod chain length increases linearly as the longitudinal surface plasmon resonance shifts toward lower adsorption wavelengths (i.e., red shift). Analogous to step-growth polymerization, the polydispersity in chain length also increases. Upon adding poly(ethylene glycol) or poly(methyl methacrylate) to chloroform solution with linked B-NR, the nanorod chains are shown to retain end-to-end linking upon spin-casting into PEO or PMMA films. Using quartz crystal microbalance with dissipation (QCM-D), the mechanism of nanorod linking is investigated on planar gold surfaces. At submonolayer coverage of cysteine, C6DT molecules can insert between cysteines and reach an areal density of 3.4 molecules per nm(2). To mimic the linking of Au NRs, this planar surface is exposed to cysteine-coated Au nanoparticles, which graft at 7 NPs per µm(2). This solution-based method to prepare, assemble, and disperse Au nanorods is applicable to other nanorod systems (e.g., CdSe) and presents a new strategy to assemble anisotropic particles in organic solvents and polymer coatings.


Assuntos
Clorofórmio/química , Ouro/química , Nanocompostos/química , Nanotubos/química , Polietilenoglicóis/química , Polimetil Metacrilato/química , Tamanho da Partícula , Soluções/química , Propriedades de Superfície , Tolueno/análogos & derivados , Tolueno/química
15.
Heat Mass Transf ; 50(3): 315-321, 2014 Mar 01.
Artigo em Inglês | MEDLINE | ID: mdl-25013307

RESUMO

We have developed a numerical model based on Metropolis Monte Carlo (MC) and the weighted histogram analysis method (WHAM) that enables the calculation of the absolute binding free energy between functionalized nanocarriers (NC) and endothelial cell (EC) surfaces. The binding affinities are calculated according to the free energy landscapes. The model predictions quantitatively agree with the analogous measurements of specific antibody coated NCs (100∼nm in diameter) to intracellular adhesion molecule-1 (ICAM-1) expressing EC surface in in vitro cell culture experiments. The model also enables an investigation of the effects of a broad range of parameters that include antibody surface coverage of NC, glycocalyx in both in vivo and in vitro conditions, shear flow and NC size. Using our model we explore the effects of shear flow and reproduce the shear-enhanced binding observed in equilibrium measurements in collagen-coated tube. Furthermore, our results indicate that the bond stiffness, representing the specific antibody-antigen interaction, significantly impacts the binding affinities. The predictive success of our computational protocol represents a sound quantitative approach for model driven design and optimization of functionalized nanocarriers in targeted vascular drug delivery.

16.
J Clin Invest ; 134(3)2024 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-38015641

RESUMO

Pulmonary arterial hypertension (PAH) is a devastating and progressive disease with limited treatment options. Endothelial dysfunction plays a central role in the development and progression of PAH, yet the underlying mechanisms are incompletely understood. The endosome-lysosome system is important to maintain cellular health, and the small GTPase RAB7 regulates many functions of this system. Here, we explored the role of RAB7 in endothelial cell (EC) function and lung vascular homeostasis. We found reduced expression of RAB7 in ECs from patients with PAH. Endothelial haploinsufficiency of RAB7 caused spontaneous pulmonary hypertension (PH) in mice. Silencing of RAB7 in ECs induced broad changes in gene expression revealed via RNA-Seq, and RAB7-silenced ECs showed impaired angiogenesis and expansion of a senescent cell fraction, combined with impaired endolysosomal trafficking and degradation, suggesting inhibition of autophagy at the predegradation level. Furthermore, mitochondrial membrane potential and oxidative phosphorylation were decreased, and glycolysis was enhanced. Treatment with the RAB7 activator ML-098 reduced established PH in rats with chronic hypoxia/SU5416. In conclusion, we demonstrate for the first time to our knowledge the fundamental impairment of EC function by loss of RAB7, causing PH, and show RAB7 activation to be a potential therapeutic strategy in a preclinical model of PH.


Assuntos
Hipertensão Pulmonar , Animais , Humanos , Camundongos , Ratos , Hipertensão Pulmonar Primária Familiar/metabolismo , Hipertensão Pulmonar/etiologia , Hipóxia/metabolismo , Pulmão/metabolismo , Artéria Pulmonar/metabolismo
17.
Toxicol Appl Pharmacol ; 272(3): 703-12, 2013 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-23933530

RESUMO

In previous work, we developed novel antibacterial hybrid coatings based on dextran containing dispersed Ag NPs (~5 nm, DEX-Ag) aimed to offer dual protection against two of the most common complications associated with implant surgery, infections and rejection of the implant. However, their blood-material interactions are unknown. In this study, we assess the hemocompatibility and biocompatibility of DEX-Ag using fresh blood and two cell lines of the immune system, monocytes (THP-1 cells) and macrophages (PMA-stimulated THP-1 cells). Glass, polyurethane (PU) and bare dextran (DEX) were used as reference surfaces. PU, DEX and DEX-Ag exhibited non-hemolytic properties. Relative to glass (100%), platelet attachment on PU, DEX and DEX-Ag was 15%, 10% and 34%, respectively. Further, we assessed cell morphology and viability, pro-inflammatory cytokines expression (TNF-α and IL-1ß), pro-inflammatory eicosanoid expression (Prostaglandin E2, PGE2) and release of reactive oxygen species (ROS, superoxide and H2O2) following incubation of the cells with the surfaces. The morphology and cell viability of THP-1 cells were not affected by DEX-Ag whereas DEX-Ag minimized spreading of PMA-stimulated THP-1 cells and caused a reduction in cell viability (16% relative to other surfaces). Although DEX-Ag slightly enhanced release of ROS, the expression of pro-inflammatory cytokines remained minimal with similar levels of PGE2, as compared to the other surfaces studied. These results highlight low toxicity of DEX-Ag and hold promise for future applications in vivo.


Assuntos
Antibacterianos/farmacologia , Materiais Biocompatíveis/farmacologia , Materiais Biomiméticos/farmacologia , Adesividade Plaquetária/efeitos dos fármacos , Antibacterianos/química , Materiais Biocompatíveis/química , Materiais Biomiméticos/química , Sobrevivência Celular/efeitos dos fármacos , Células Cultivadas , Dextranos/química , Dextranos/farmacologia , Humanos , Monócitos/química , Monócitos/efeitos dos fármacos , Espécies Reativas de Oxigênio/química , Propriedades de Superfície
18.
Soft Matter ; 8(8): 2423-2431, 2013 Feb 28.
Artigo em Inglês | MEDLINE | ID: mdl-23807896

RESUMO

In this work, we present a novel method to prepare a hybrid coating based on dextran grafted to a substrate and embedded with silver nanoparticles (Ag NPs). First, the Ag NPs are synthesized in situ in the presence of oxidized dextran in solution. Second, the oxidized dextran is exposed to an amine functionalized surface resulting in the simultaneous grafting of dextran and the trapping of Ag NPs within the layer. The NP loading is controlled by the concentration of silver nitrate, which is 2 mM (DEX-Ag2) and 5 mM (DEX-Ag5). The dried film thickness increases with silver nitrate concentration from 2 nm for dextran to 7 nm and 12 nm for DEX-Ag2 and DEX-Ag5, respectively. The grafted dextran film displays features with a diameter and height of ~ 50 nm and 2 nm, respectively. For the DEX-Ag2 and DEX-Ag5, the dextran features as well as individual Ag NPs (~ 5 nm) and aggregates of Ag NPs are observed. Larger and more irregular aggregates are observed for DEX-Ag5. Overall, the Ag NPs are embedded in the dextran film as suggested by AFM and UVO studies. In terms of its antimicrobial activity, DEX-Ag2 resists bacterial adhesion to a greater extent than DEX-Ag5, which in turn is better than dextran and silicon. Because these antibacterial hybrid coatings can be grafted to a variety of surfaces, many biomedical applications can be envisioned, ranging from coating implants to catheters.

19.
Proc Natl Acad Sci U S A ; 107(38): 16530-5, 2010 Sep 21.
Artigo em Inglês | MEDLINE | ID: mdl-20823256

RESUMO

A computational methodology based on Metropolis Monte Carlo (MC) and the weighted histogram analysis method (WHAM) has been developed to calculate the absolute binding free energy between functionalized nanocarriers (NC) and endothelial cell (EC) surfaces. The calculated NC binding free energy landscapes yield binding affinities that agree quantitatively when directly compared against analogous measurements of specific antibody-coated NCs (100 nm in diameter) to intracellular adhesion molecule-1 (ICAM-1) expressing EC surface in in vitro cell-culture experiments. The effect of antibody surface coverage (σ(s)) of NC on binding simulations reveals a threshold σ(s) value below which the NC binding affinities reduce drastically and drop lower than that of single anti-ICAM-1 molecule to ICAM-1. The model suggests that the dominant effect of changing σ(s) around the threshold is through a change in multivalent interactions; however, the loss in translational and rotational entropies are also important. Consideration of shear flow and glycocalyx does not alter the computed threshold of antibody surface coverage. The computed trend describing the effect of σ(s) on NC binding agrees remarkably well with experimental results of in vivo targeting of the anti-ICAM-1 coated NCs to pulmonary endothelium in mice. Model results are further validated through close agreement between computed NC rupture-force distribution and measured values in atomic force microscopy (AFM) experiments. The three-way quantitative agreement with AFM, in vitro (cell-culture), and in vivo experiments establishes the mechanical, thermodynamic, and physiological consistency of our model. Hence, our computational protocol represents a quantitative and predictive approach for model-driven design and optimization of functionalized nanocarriers in targeted vascular drug delivery.


Assuntos
Portadores de Fármacos/metabolismo , Células Endoteliais/metabolismo , Nanosferas , Animais , Anticorpos/administração & dosagem , Anticorpos/metabolismo , Fenômenos Biofísicos , Sistemas de Liberação de Medicamentos , Feminino , Glicocálix/metabolismo , Técnicas In Vitro , Molécula 1 de Adesão Intercelular/imunologia , Molécula 1 de Adesão Intercelular/metabolismo , Pulmão/irrigação sanguínea , Pulmão/metabolismo , Camundongos , Camundongos Endogâmicos C57BL , Microscopia de Força Atômica , Modelos Biológicos , Método de Monte Carlo , Termodinâmica
20.
Life Sci ; 328: 121880, 2023 Sep 01.
Artigo em Inglês | MEDLINE | ID: mdl-37356749

RESUMO

AIMS: Pulmonary oxygen toxicity is caused by exposure to a high fraction of inspired oxygen, which damages multiple cell types within the lung. The cellular basis for pulmonary oxygen toxicity includes mitochondrial dysfunction. The aim of this study was to identify the effects of hyperoxic exposure on mitochondrial bioenergetic and dynamic functions in pulmonary cells. MAIN METHODS: Mitochondrial respiration, inner membrane potential, dynamics (including motility), and distribution of mitochondrial bioenergetic capacity in two intracellular regions were quantified using cultured human lung microvascular endothelial cells, human pulmonary artery endothelial cells and A549 cells. Hyperoxic (95 % O2) exposures lasted 24, 48 and 72 h, durations relevant to mechanical ventilation in intensive care settings. KEY FINDINGS: Mitochondrial motility was altered following all hyperoxic exposures utilized in experiments. Inhomogeneities in inner membrane potential and respiration parameters were present in each cell type following hyperoxia. The partitioning of ATP-linked respiration was also hyperoxia-duration and cell type dependent. Hyperoxic exposure lasting 48 h or longer provoked the largest alterations in mitochondrial motility and the greatest decreases in ATP-linked respiration, with a suggestion of decreases in respiration complex protein levels. SIGNIFICANCE: Hyperoxic exposures of different durations produce intracellular inhomogeneities in mitochondrial dynamics and bioenergetics in pulmonary cells. Oxygen therapy is utilized commonly in clinical care and can induce undesirable decrements in bioenergy function needed to maintain pulmonary cell function and viability. There may be adjunctive or prophylactic measures that can be employed during hyperoxic exposures to prevent the mitochondrial dysfunction that signals the presence of oxygen toxcity.


Assuntos
Hiperóxia , Humanos , Hiperóxia/metabolismo , Células Endoteliais/metabolismo , Pulmão/metabolismo , Oxigênio/metabolismo , Metabolismo Energético , Trifosfato de Adenosina/metabolismo
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