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首页> 外文期刊>Fibers and Polymers >Design of Novel 3D-Scaffold as a Potential Material to Induct Epidermal-Dermal Keratinocytes of Human-Adipose-Derived Stem Cells and Promote Fibroblast Cells Proliferation for Skin Regeneration
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Design of Novel 3D-Scaffold as a Potential Material to Induct Epidermal-Dermal Keratinocytes of Human-Adipose-Derived Stem Cells and Promote Fibroblast Cells Proliferation for Skin Regeneration

机译:设计新型3D支架作为潜在材料,以引起人脂肪衍生的干细胞的表皮 - 皮肤角蛋白细胞,促进皮肤再生的成纤维细胞增殖

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Dermal lesions and chronic wounds associated with burns or some diseases like diabetes are the more important public health concerns which can affect the quality of life. Currently, tissue engineering is considered as the most effective therapeutic method although the design of polymeric substrates for epidermal-dermal differentiation and wound healing (scar-free) is the main challenge. For this purpose, we designed a hybrid three-dimensional scaffold (CPCP) based on collagen/chitosan modified by PEG/PCL composite that can imitate differentiation pattern of both epidermis/dermis cells, via mimicking the structure and function of human skin. The physicochemical, mechanical and biological properties of designed scaffolds were evaluated to study their function for skin tissue engineering applications. Comparison of FTIR analysis showed a chemical similarity between CPCP and decellularized dermal matrix (DDM). Our results showed that combination of two natural/two synthetic polymers led to the formation of stronger 3D-network together with higher modulus (-18), water absorption (4-fold), porosity (-92) and consequently lower pores size (-54 um), compared to natural, synthetic and natural/ synthetic copolymer-based scaffolds. The observation of human skin fibroblast cells proliferation and morphology showed that CPCP was more beneficial to cell adhesion, proliferation, and extension than that of other designed scaffolds due to its hydrophilicity and higher wettability (WCA=60°). According to the results of RT-PCR, the more expression of epidermal-dermal keratinocytes induced by human-adipose-derived stem cells was observed on the CPCP along with a pattern similar to skin. The results demonstrate CPCP can act as a super-absorbent substrate/dressing for continuous absorption of wound exudates. Furthermore, it can potentially be effective for re-epithelialization of skin together with its derivative (hair follicles, sebaceous/sweat glands). This study indicates new insights into the design of skin- engineered scaffolds.
机译:与烧伤或糖尿病等疾病相关的皮肤病变和慢性伤口是可能影响生活质量的重要公共卫生问题。目前,组织工程被认为是最有效的治疗方法,尽管用于表皮 - 皮肤分化和伤口愈合(无疤痕)的聚合物基材的设计是主要挑战。为此目的,我们设计了一种基于通过PEG / PCL复合材料改性的胶原/壳聚糖的混合三维支架(CPCP),其可以通过模拟人体皮肤的结构和功能来模仿表皮/真皮细胞的分化模式。评价设计支架的物理化学,机械和生物学特性,研究其对皮肤组织工程应用的功能。 FTIR分析的比较显示CPCP和脱细胞皮肤基质(DDM)之间的化学相似性。我们的研究结果表明,两种天然/两个合成聚合物的组合导致更强的3D网络形成,较高的模量(-18),吸水率(4倍),孔隙率(-92),因此降低孔径( - 54 um),与天然,合成和天然/合成共聚物的支架相比。观察人皮肤成纤维细胞增殖和形态表明,CPCP由于其亲水性和更高的润湿性(WCA = 60°)而言,CPCP对细胞粘附,增殖和延伸比其他设计的支架更有益。根据RT-PCR的结果,在CPCP上观察到通过人脂肪衍生的干细胞诱导的表皮 - 皮肤角质形成细胞的表达越多,与皮肤类似的图案。结果表明CPCP可以充当超吸收基板/敷料,用于连续吸收伤口渗出物。此外,它可能有效地与其衍生物(毛囊,皮脂腺/汗腺)一起重新上皮上皮加工。本研究表明了新的见解,进入皮肤设计脚手架的设计。

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