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Fibrin microbeads (FMB) as a 3D platform for kidney gene and cell therapy

机译:纤维蛋白微珠(FMB)作为肾脏基因和细胞疗法的3D平台

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Cell and gene therapy may alter the outcome of renal diseases, such as hereditary nephropathies, acute and chronic glomerulonephritis and allograft nephropathy. However, owing to blockade of many viral and cellular vehicles by the complex glomerular architecture, the exact nature of gene and cell delivery into specific renal compartments remains currently unknown. To study the interaction of viral vectors with a variety of renal cells and mesenchymal stem cells (MSCs), we employed a novel biological three-dimensional (3D) matrix comprised of fibrin microbeads (FMB) in comparison to monolayer cell culture. Our studies showed that renal cells of both established and primary lines can grow efficiently on FMB and differentiate into epithelial structures, as shown by electron microscopy. Gene delivery into renal cells in 3D was observed for several viral vectors and growth in 3D on FMB conferred resistance to renal cancer cells in the context of oncolytic adenoviruses. Finally, MSCs from various rodent species attached to FMB, grew robustly, survived for several weeks and could efficiently be transduced on FMB. Thus, on the basis of growth, differentiation and transduction of renal cells in 3D, FMB emerge as a novel 3D cellular microenvironment that differs substantially from monolayer cell cultures.
机译:细胞和基因疗法可能会改变肾脏疾病的结果,例如遗传性肾病,急慢性肾小球肾炎和同种异体肾病。然而,由于复杂的肾小球结构对许多病毒和细胞载体的阻滞,目前尚不清楚基因和细胞向特定肾区室中递送的确切性质。为了研究病毒载体与各种肾细胞和间充质干细胞(MSC)的相互作用,与单层细胞培养相比,我们采用了由纤维蛋白微珠(FMB)组成的新型生物三维(3D)基质。我们的研究表明,既定系和原代系的肾细胞都可以在FMB上高效生长并分化为上皮结构,如电子显微镜所示。在溶瘤腺病毒的情况下,观察到几种病毒载体以3D方式将基因递送至肾细胞,并且FMB上3D的生长赋予了对肾癌细胞的抗性。最后,来自附着在FMB上的各种啮齿动物物种的MSCs生长强劲,可以存活数周,并且可以在FMB上高效转导。因此,基于肾细胞在3D中的生长,分化和转导,FMB成为一种新颖的3D细胞微环境,与单层细胞培养物大不相同。

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