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1.
Cartilage ; 13(2_suppl): 1602S-1607S, 2021 12.
Artículo en Inglés | MEDLINE | ID: mdl-31609141

RESUMEN

OBJECTIVES: The utilization of viral vectors to deliver genes of interest directly to meniscus cells and promote long-term modulation of gene expression may prove useful to enhance meniscus repair and regeneration. The objective of this study was to optimize and compare the potential of lentivirus (LV) and adeno-associated virus (AAV) to deliver transgenes to meniscus cells in both intact meniscus tissue and isolated primary cells in monolayer. DESIGN: Porcine meniscus tissue explants and primary meniscus cells in monolayer were transduced with LV or self-complementary AAV2 (scAAV2) encoding green fluorescent protein (GFP). Following transduction, explants were enzymatically digested to isolate meniscus cells, and monolayer cells were trypsinized. Isolated cells were analyzed by flow cytometry to determine percent transduction. RESULTS: LV and scAAV2 showed a high transduction efficiency in monolayer meniscus cells. scAAV2 was most effective at transducing cells within intact meniscus tissue but the efficiency was less than 20%. Outer zone meniscus cells were more readily transduced by both LV and scAAV2 than the inner zone cells. Higher virus titers and higher cell density resulted in improved transduction efficiency. Polybrene was necessary for the highest transduction efficiency with LV, but it reduced scAAV2 transduction. CONCLUSIONS: Both LV and scAAV2 efficiently transduce primary meniscus cells but only scAAV2 can modestly transduce cells embedded in meniscus tissue. This work lays the foundation for viral gene transfer to be utilized to deliver bioactive transgenes or gene editing machinery, which can induce long-term and tunable expression of therapeutic proteins from tissue-engineered constructs for meniscus repair and regeneration.


Asunto(s)
Dependovirus , Menisco , Dependovirus/genética , Dependovirus/metabolismo , Edición Génica , Lentivirus/genética , Ingeniería de Tejidos
2.
Sci Rep ; 9(1): 8719, 2019 06 18.
Artículo en Inglés | MEDLINE | ID: mdl-31213610

RESUMEN

Meniscal tears have a poor healing capacity, and damage to the meniscus is associated with significant pain, disability, and progressive degenerative changes in the knee joint that lead to osteoarthritis. Therefore, strategies to promote meniscus repair and improve meniscus function are needed. The objective of this study was to generate porcine meniscus-derived matrix (MDM) scaffolds and test their effectiveness in promoting meniscus repair via migration of endogenous meniscus cells from the surrounding meniscus or exogenously seeded human bone marrow-derived mesenchymal stem cells (MSCs). Both endogenous meniscal cells and MSCs infiltrated the MDM scaffolds. In the absence of exogenous cells, the 8% MDM scaffolds promoted the integrative repair of an in vitro meniscal defect. Dehydrothermal crosslinking and concentration of the MDM influenced the biochemical content and shear strength of repair, demonstrating that the MDM can be tailored to promote tissue repair. These findings indicate that native meniscus cells can enhance meniscus healing if a scaffold is provided that promotes cellular infiltration and tissue growth. The high affinity of cells for the MDM and the ability to remodel the scaffold reveals the potential of MDM to integrate with native meniscal tissue to promote long-term repair without necessarily requiring exogenous cells.


Asunto(s)
Matriz Extracelular/metabolismo , Menisco/metabolismo , Ingeniería de Tejidos/métodos , Andamios del Tejido , Animales , Enfermedades de los Cartílagos/fisiopatología , Enfermedades de los Cartílagos/terapia , Células Cultivadas , Matriz Extracelular/ultraestructura , Femenino , Humanos , Traumatismos de la Rodilla/fisiopatología , Traumatismos de la Rodilla/terapia , Menisco/citología , Menisco/ultraestructura , Células Madre Mesenquimatosas/citología , Microscopía Electrónica de Rastreo , Porcinos , Cicatrización de Heridas
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