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Hybrid Collagen Hydrogel/Chondroitin-4-Sulphate Fortified with Dermal Fibroblast Conditioned Medium for Skin Therapeutic Application

机译:杂交胶原水凝胶/软骨素-4-硫酸盐强化皮肤成纤维细胞调节培养基用于皮肤治疗应用

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摘要

The current strategy for rapid wound healing treatment involves combining a biomaterial and cell-secreted proteins or biomolecules. This study was aimed at characterizing 3-dimensional (3D) collagen hydrogels fortified with dermal fibroblast-conditioned medium (DFCM) as a readily available acellular skin substitute. Confluent fibroblasts were cultured with serum-free keratinocyte-specific medium (KM1 and KM2) and fibroblast-specific medium (FM) to obtain DFCM. Subsequently, the DFCM was mixed with collagen (Col) hydrogel and chondroitin-4-sulphate (C4S) to fabricate 3D constructs termed Col/C4S/DFCM-KM1, Col/C4S/DFCM-KM2, and Col/C4S/DFCM-FM. The constructs successfully formed soft, semi-solid and translucent hydrogels within 1 h of incubation at 37 °C with strength of <2.5 Newton (N). The Col/C4S/DFCM demonstrated significantly lower turbidity compared to the control groups. The Col/C4S/DFCM also showed a lower percentage of porosity (KM1: 35.15 ± 9.76%; KM2: 6.85 ± 1.60%; FM: 14.14 ± 7.65%) compared to the Col (105.14 ± 11.87%) and Col/C4S (143.44 ± 27.72%) constructs. There were no changes in both swelling and degradation among all constructs. Fourier transform infrared spectrometry showed that all groups consisted of oxygen–hydrogen bonds (O-H) and amide I, II, and III. In conclusion, the Col/C4S/DFCM constructs maintain the characteristics of native collagen and can synergistically deliver essential biomolecules for future use in skin therapeutic applications.
机译:目前的快速伤口愈合治疗策略涉及组合生物材料和细胞分泌的蛋白质或生物分子。该研究旨在表征用皮肤成纤维细胞调节培养基(DFCM)强化的三维(3D)胶原水凝胶,作为易于使用的无细胞皮肤替代品。汇合成纤维细胞用无血清角质形成细胞特异性培养基(KM1和KM2)和成纤维细胞特异性培养基(FM)培养以获得DFCM。随后,将DFCM与胶原(COL)水凝胶和软骨蛋白-4-硫酸盐(C4s)混合以制造称为COL / C4s / DFCM-KM1,COL / C4s / DFCM-KM2和COL / C4S / DFCM-FM的3D构建体。在37℃的孵育中成功形成软,半固体和半透明水凝胶,其强度为<2.5牛顿(n)。 COL / C4s / DFCM与对照组相比明显较低的浊度。 COL / C4s / DFCM还显示孔隙率的较小百分比(KM1:35.15±9.76%; KM2:6.85±1.60%; FM:14.14±7.65%)与COL(105.14±11.87%)和Col / C4s( 143.44±27.72%)构建体。所有构建体之间的肿胀和退化都没有变化。傅里叶变换红外光谱测定表明,所有基团由氧 - 氢键(O-H)和酰胺I,II和III组成。总之,COL / C4S / DFCM构建体保持天然胶原蛋白的特点,可以协同提供必要的生物分子以供将来用于皮肤治疗应用。

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