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首页> 外文期刊>Journal of biomedical materials research, Part A >Impact of bladder-derived acellular matrix, growth factors, and extracellular matrix constituents on the survival and multipotency of marrow-derived mesenchymal stem cells.
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Impact of bladder-derived acellular matrix, growth factors, and extracellular matrix constituents on the survival and multipotency of marrow-derived mesenchymal stem cells.

机译:膀胱衍生的细胞基质,生长因子和细胞外基质成分对骨髓间充质干细胞的存活率和多因素的影响。

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摘要

We investigate the effect of bladder-derived acellular matrix (ACM) on bone marrow mesenchymal stem cells (BM-MSC) growth, survival, and differentiation, and evaluate the effect of collagen I and IV on BM-MSC differentiation potential to SMC. BM-MSCs isolated from CD1(_) mice were characterized by surface markers and differentiation into different lineages. BM-MSC SMC potential was further evaluated in stem cell medium alone or supplemented with TGF-beta1 and recombinant human platelet-derived growth factor (PDGF-BB) on plastic, collagen I and IV using western blot. Furthermore, BM-MSCs were seeded on porcine derived ACM-fortified with hyaluronic acid and cultured in Mesencult+-growth factors, bone, or fat induction media for 3 weeks. Seeded constructs were evaluated by H&E, Ki67 assay, Oil red O, and Alizarin red stain. SMC differentiation was semiquantified via immunohistochemistry. BM-MSCs differentiated into fat and bone when induced. In Mesencult, BM-MSCs differentiated into SMC, expressing alpha-SMA, calponin, and MHC. BM-MSCs cultured on collagen I and IV reduced expression of SMC and MHC compared to plastic. On ACM-HA, BM-MSCs maintained multipotent state by differentiating to bone and fat when induced. In Mesencult, BM-MSC-seeded ACM-HA expressed alpha-SMA, calponin, and MHC. TGF-beta1 and PDGF-BB enhanced SMC differentiation on collagens and ACM-HA. SMC proteins expression by BM-MSC varies depending on culture substrate. SMC markers are expressed higher on plastic and lower on collagen I, IV, and ACM-HA, suggesting these substrates preferentially maintain undifferentiated state of BM-MSC, which could be advantageous for incorporation of cell-seeded grafts to permit host modulation of tissue regeneration.
机译:我们探讨膀胱衍生的细胞基质(ACM)对骨髓间充质干细胞(BM-MSC)生长,存活率和分化的影响,评价胶原I和IV对SMC的BM-MSC分化电位的影响。从CD1(_)小鼠中分离的BM-MSCs的特征在于表面标志物和分化成不同的谱系。在单独的干细胞培养基中进一步评价BM-MSC SMC电位,或者在塑料,胶原I和IV上补充TGF-β1和重组人血小板衍生的生长因子(PDGF-BB)。此外,将BM-MSC播种在猪衍生的透明质酸型Acm-Contified的猪衍生的Acm-Contified,并在Mesencult + -Growth因子,骨骼或脂肪诱导培养基中培养3周。通过H&E,Ki67测定,油红O和茜素红染色评估种子构建体。通过免疫组织化学进行SMC差异。 BM-MSC在诱导时含有脂肪和骨。在中小型,BM-MSC分化为SMC,表达α-SMA,Calponin和MHC。与塑料相比,在胶原I和IV上培养的BM-MSCs在胶原蛋白I和IV的表达降低了SMC和MHC的表达。在ACM-HA上,BM-MSCs通过在诱导时通过区分骨骼和脂肪而保持多能状态。在中,BM-MSC种子ACM-HA表达α-SMA,Calponin和MHC。 TGF-Beta1和PDGF-BB增强SMC差异在胶原蛋白和ACM-HA上的分化。 BM-MSC的SMC蛋白表达取决于培养基。 SMC标记物在塑料上表达较高,胶原I,IV和ACM-HA较低,表明这些基材优先维持BM-MSC的未分化状态,这对于掺入细胞接种移植物以允许组织再生的宿主调节是有利的。

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