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Development of a Composite Hydrogel Containing Statistically Optimized PDGF-Loaded Polymeric Nanospheres for Skin Regeneration: In Vitro Evaluation and Stem Cell Differentiation Studies

机译:开发含有统计优化的 PDGF 负载聚合物纳米球的复合水凝胶用于皮肤再生:体外评估和干细胞分化研究

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摘要

Platelet-derived growth factor-BB (PDGF-BB) is a polypeptide growth factor generated by platelet granules faced to cytokines. It plays a role in forming and remodeling various tissue types, including epithelial tissue, through interaction with cell-surface receptors on most mesenchymal origin cells. However, it breaks down quickly in biological fluids, emphasizing the importance of preserving them from biodegradation. To address this challenge, we formulated and evaluated PDGF-encapsulated nanospheres (PD@PCEC) using polycaprolactone-polyethylene glycol-polycaprolactone. PD@PCECs were fabricated through the triple emulsion methodology and optimized by using the Box–Behnken design. The encapsulation efficiency (EE) of nanoencapsulated PDGF-BB was investigated concerning four variables: stirring rate (X1), stirring duration (X2), poly(vinyl alcohol) concentration (X3), and PDGF-BB concentration (X4). The selected optimized nanospheres were integrated into a gelatin-collagen scaffold (PD@PCEC@GC) and assessed for morphology, biocompatibility, in vitro release, and differentiation-inducing activity in human adipose-derived stem cells (hADSCs). The optimized PD@PCEC nanospheres exhibited a particle size of 177.9 ± 91 nm, a zeta potential of 5.2 mV, and an EE of 87.7 ± 0.44%. The release profile demonstrated approximately 85% of loaded PDGF-BB released during the first 360 h, with a sustained release over the entire 504 h period, maintaining bioactivity of 87.3%. The study also included an evaluation of the physicochemical properties of the scaffolds and an assessment of hADSC adhesion to the scaffold’s surface. Additionally, hADSCs cultivated within the scaffold effectively differentiated into keratinocyte-like cells (KLCs) over 21 days, evidenced by morphological changes and upregulation of keratinocyte-specific genes, including cytokeratin 18, cytokeratin 19, and involucrin, at both transcriptional and protein levels.
机译:血小板衍生生长因子-BB (PDGF-BB) 是由血小板颗粒面对细胞因子产生的多肽生长因子。它通过与大多数间充质起源细胞上的细胞表面受体相互作用,在形成和重塑各种组织类型(包括上皮组织)中发挥作用。然而,它在生物液体中会迅速分解,这强调了保护它们免受生物降解的重要性。为了应对这一挑战,我们使用聚己内酯-聚乙二醇-聚己内酯配制并评估了 PDGF 封装的纳米球 (PD@PCEC)。PD@PCECs 通过三重乳液法制造,并使用 Box-Behnken 设计进行优化。从四个变量的角度研究了纳米封装 PDGF-BB 的包埋效率 (EE):搅拌速率 (X1)、搅拌持续时间 (X2)、聚乙烯醇浓度 (X3) 和 PDGF-BB 浓度 (X4)。将选定的优化纳米球整合到明胶-胶原支架 (PD@PCEC@GC) 中,并评估人脂肪来源干细胞 (hADSC) 的形态、生物相容性、体外释放和分化诱导活性。优化的 PD@PCEC 纳米球的粒径为 177.9 ± 91 nm,zeta 电位为 5.2 mV,EE 为 87.7 ± 0.44%。释放曲线显示,在前 360 小时内释放了大约 85% 的负载 PDGF-BB,并在整个 504 小时内持续释放,保持 87.3% 的生物活性。该研究还包括对支架物理化学性质的评估和 hADSC 对支架表面粘附的评估。此外,在支架内培养的 hADSC 在 21 天内有效分化为角质形成细胞样细胞 (KLC),这可以通过角质形成细胞特异性基因的形态变化和上调来证明,包括细胞角蛋白 18、细胞角蛋白 19 和内卷曲蛋白,在转录和蛋白质水平上。

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