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1.
ACS Biomater Sci Eng ; 10(4): 1910-1920, 2024 04 08.
Artículo en Inglés | MEDLINE | ID: mdl-38452343

RESUMEN

The medical device industry is undergoing substantial transformations, looking to face the increasing pressures on healthcare systems and fundamental shifts in healthcare delivery. There is an ever-growing emphasis on identifying underserved clinical requirements and enhancing industry-academia partnerships to accelerate innovative solutions. In this context, an analysis of the requirements for translation, highlighting support and funding for innovation to transform an idea for a biomaterial device into a commercially available product, is discussed.


Asunto(s)
Materiales Biocompatibles , Atención a la Salud , Materiales Biocompatibles/uso terapéutico
2.
Eur J Vasc Endovasc Surg ; 57(6): 859-867, 2019 06.
Artículo en Inglés | MEDLINE | ID: mdl-29804748

RESUMEN

OBJECTIVE: Despite recent advances in pharmacological research and microsurgery, lymphoedema remains an incurable disease that deeply affects quality of life. There is an urgent need for innovative approaches to restore continuous lymph flow in affected tissues. To this end, the efficacy of a subcutaneously implanted draining device in reducing lymphoedema volume in a rat hindlimb lymphoedema model was tested. METHODS: A rat model of chronic lymphoedema was developed by surgical removal of popliteal and inguinal lymph nodes, followed by irradiation. The model was characterised by monitoring limb volume via tape measure, skin water content via dielectric constant measurement, and lymphatic drainage via lymphofluoroscopy. After lymphoedema establishment in 16 Wistar rats, a device made of fenestrated tubing equipped with a miniaturised pumping system, was implanted subcutaneously in the affected limb to restore continuous recirculation of interstitial fluid. RESULTS: Lymphofluoroscopy imaging showed impaired lymphatic drainage following lymphadenectomy and irradiation. Affected limb volume and skin water content increased significantly compared with the untreated limb, with a median (interquartile range) of 3.85 (0.38) cm3 versus 3.03 (0.43) cm3 for volume (n = 16, p = .001) and 26.6 (9.1) versus 16.6 (3.7) cm3 for skin dielectric constant (n = 16, p = .001). Treatment of lymphoedema with the implanted drainage device showed that 5 weeks post-implant excess volume was significantly reduced by 51 ± 18% compared with the pre-implant situation (n = 9 sham group, n = 7 pump group). CONCLUSION: Lymphoedema volume in the rat model was significantly reduced by restoring continuous drainage of excess fluid using a novel subcutaneously implanted device, opening the way to the development of an artificial lymphatic vessel.


Asunto(s)
Drenaje/instrumentación , Bombas de Infusión Implantables , Sistema Linfático/fisiopatología , Linfedema/terapia , Animales , Modelos Animales de Enfermedad , Diseño de Equipo , Estudios de Factibilidad , Femenino , Miembro Posterior , Escisión del Ganglio Linfático , Sistema Linfático/diagnóstico por imagen , Linfedema/diagnóstico por imagen , Linfedema/etiología , Linfedema/fisiopatología , Linfografía , Miniaturización , Ratas Wistar , Recuperación de la Función , Factores de Tiempo , Rayos X
3.
Circ Res ; 120(9): 1440-1452, 2017 Apr 28.
Artículo en Inglés | MEDLINE | ID: mdl-28130294

RESUMEN

RATIONALE: The transport of interstitial fluid and solutes into lymphatic vessels is important for maintaining interstitial homeostasis and delivering antigens and soluble factors to the lymph node for immune surveillance. Transendothelial transport across lymphatic endothelial cells (LECs) is commonly considered to occur paracellularly, or between cell-cell junctions, and driven by local pressure and concentration gradients. However, emerging evidence suggests that LECs also play active roles in regulating interstitial solute balance and can scavenge and store antigens, raising the possibility that vesicular or transcellular pathways may be important in lymphatic solute transport. OBJECTIVE: The aim of this study was to determine the relative importance of transcellular (vesicular) versus paracellular transport pathways by LECs and how mechanical stress (ie, fluid flow conditioning) alters either pathway. METHODS AND RESULTS: We demonstrate that transcellular transport mechanisms substantially contribute to lymphatic solute transport and that solute uptake occurs in both caveolae- and clathrin-coated vesicles. In vivo, intracelluar uptake of fluorescently labeled albumin after intradermal injection by LECs was similar to that of dermal dendritic cells. In vitro, we developed a method to differentially quantify intracellular solute uptake versus transendothelial transport by LECs. LECs preconditioned to 1 µm/s transmural flow demonstrated increased uptake and basal-to-apical solute transport, which could be substantially reversed by blocking dynamin-dependent vesicle formation. CONCLUSIONS: These findings reveal the importance of intracellular transport in steady-state lymph formation and suggest that LECs use transcellular mechanisms in parallel to the well-described paracellular route to modulate solute transport from the interstitium according to biomechanical cues.


Asunto(s)
Células Endoteliales/metabolismo , Endotelio Linfático/metabolismo , Líquido Extracelular/metabolismo , Transferencias de Fluidos Corporales , Albúmina Sérica Bovina/metabolismo , Albúmina Sérica/metabolismo , Piel/metabolismo , Transcitosis , Animales , Caveolas/metabolismo , Vesículas Cubiertas por Clatrina/metabolismo , Células Endoteliales/ultraestructura , Endotelio Linfático/ultraestructura , Femenino , Humanos , Inyecciones Intradérmicas , Masculino , Ratones Endogámicos BALB C , Permeabilidad , Albúmina Sérica/administración & dosificación , Albúmina Sérica Bovina/administración & dosificación , Albúmina Sérica Humana , Piel/ultraestructura , Estrés Mecánico , Factores de Tiempo
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