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首页> 外文期刊>Cytotechnology >A combination of biomolecules enhances expression of E-cadherin and peroxisome proliferator-activated receptor gene leading to increased cell proliferation in primary human meniscal cells: an in vitro study
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A combination of biomolecules enhances expression of E-cadherin and peroxisome proliferator-activated receptor gene leading to increased cell proliferation in primary human meniscal cells: an in vitro study

机译:生物分子的组合增强E-钙黏着蛋白和过氧化物酶体增殖物激活受体基因的表达,从而导致人类半月板细胞的细胞增殖增加:一项体外研究

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The present study investigates the impact of biomolecules (biotin, glucose, chondroitin sulphate, proline) as supplement, (individual and in combination) on primary human meniscus cell proliferation. Primary human meniscus cells isolated from patients undergoing meniscectomy were maintained in Dulbecco’s Modified Eagle’s Medium (DMEM). The isolated cells were treated with above mentioned biomolecules as individual (0–100?μg/ml) and in combinations, as a supplement to DMEM. Based on the individual biomolecule study, a unique combination of biomolecules (UCM) was finalized using one way ANOVA analysis. With the addition of UCM as supplement to DMEM, meniscal cells reached 100?% confluency within 4?days in 60?mm culture plate; whereas the cells in medium devoid of UCM, required 36?days for reaching confluency. The impact of UCM on cell viability, doubling time, histology, gene expression, biomarkers expression, extra cellular matrix synthesis, meniscus cell proliferation with respect to passages and donor’s age were investigated. The gene expression studies for E-cadherin and peroxisome proliferator-activated receptor (PPAR?) using RT-qPCR and immunohistochemical analysis for Ki67, CD34 and Vimentin confirmed that UCM has significant impact on cell proliferation. The extracellular collagen and glycosaminoglycan secretion in cells supplemented with UCM were found to increase by 31 and 37 fold respectively, when compared to control on the 4th day. The cell doubling time was reduced significantly when supplemented with UCM. The addition of UCM showed positive influence on different passages and age groups. Hence, this optimized UCM can be used as an effective supplement for meniscal tissue engineering.
机译:本研究调查了生物分子(生物素,葡萄糖,硫酸软骨素,脯氨酸)作为补充剂(单独和组合使用)对人类半月板细胞增殖的影响。从半月板切除术患者中分离出的原代人类半月板细胞保存在Dulbecco的改良Eagle培养基(DMEM)中。分离的细胞分别以上述生物分子(0-100μg/ ml)和组合形式作为DMEM的补充物进行处理。基于单个生物分子的研究,使用一种方法ANOVA分析确定了独特的生物分子组合(UCM)。通过添加UCM作为DMEM的补充,半月板细胞在60?mm培养板上的4?天内达到了100?%的融合度。而没有UCM的培养基中的细胞需要36天才能达到融合。研究了UCM对细胞存活率,倍增时间,组织学,基因表达,生物标志物表达,细胞外基质合成,半月板细胞增殖的传代和供体年龄的影响。使用RT-qPCR对E-钙粘蛋白和过氧化物酶体增殖物激活的受体(PPARα)进行基因表达研究,并对Ki67,CD34和波形蛋白进行免疫组化分析,证实UCM对细胞增殖具有重要影响。与第4天的对照相比,补充UCM的细胞中的细胞外胶原和糖胺聚糖的分泌分别增加了31和37倍。补充UCM后,细胞倍增时间显着减少。添加UCM对不同的传代和年龄组显示出积极的影响。因此,这种优化的UCM可以用作半月板组织工程的有效补充。

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