Baptista-Silva Sara, Borges Sandra, Costa-Pinto Ana Rita, Costa Raquel, Amorim Manuela, Dias Juliana R, Ramos Óscar, Alves Paulo, Granja Pedro Lopes, Soares Raquel, Pintado Manuela, Oliveira Ana Leite
Universidade Católica Portuguesa, CBQF-Centro de Biotecnologia e Química Fina-Laboratório Associado, Escola Superior de Biotecnologia, Rua Diogo Botelho 1327, 4169-005 Porto, Portugal.
Universidade do Porto, i3S-Instituto de Investigação e Inovação em Saúde, Porto 4200-135, Portugal.
ACS Biomater Sci Eng. 2021 Apr 12;7(4):1573-1586. doi: 10.1021/acsbiomaterials.0c01745. Epub 2021 Mar 17.
cross-linked hydrogels have the advantage of effectively fulfilling the wound in its shape and depth. Amongst the new generation of natural-based biopolymers being proposed for wound care and skin regeneration, silk sericin is particularly interesting due to its exceptional properties such as biocompatibility, biodegradability, and antioxidant behavior, among others. In this study, a new enzyme-mediated cross-linked hydrogel composed of silk sericin is proposed for the first time. The developed hydrogel cross-linking strategy was performed via horseradish peroxidase, under physiological conditions, and presented gelling kinetics under 3 min, as demonstrated by its rheological behavior. The hydrogels presented a high degree of transparency, mainly due to their amorphous conformation. Degradation studies revealed that the hydrogels were stable in phosphate buffer solution (PBS) (pH 7.4) for 17 days, while in the presence of protease XIV (3.5 U/mg) and under acute and chronic physiological pH values, the stability decreased to 7 and 4 days, respectively. During protease degradation, the present sericin hydrogels demonstrated antioxidant activity. studies using an L929 fibroblast cell line demonstrated that these hydrogels were noncytotoxic, promoting cell adhesion and massive cell colonization after 7 days of culture, demonstrating that cells maintained their viability and proliferation. In addition, the application of sericin-based hydrogel in an diabetic wound model validated the feasibility of the methodology and demonstrated a local anti-inflammatory effect, promoting the healing process. This study presents a simple, fast, and practical approach to produce a sericin-based hydrogel able to be applied in low exudative chronic wounds. Moreover, the study herein reported fosters the valorization of a textile industrial by-product by its integration in the biomedical field.
交联水凝胶具有能有效贴合伤口形状和深度的优势。在新一代被提议用于伤口护理和皮肤再生的天然生物聚合物中,丝胶蛋白因其生物相容性、生物降解性和抗氧化性能等特殊性质而格外引人关注。在本研究中,首次提出了一种由丝胶蛋白构成的新型酶介导交联水凝胶。所开发的水凝胶交联策略是在生理条件下通过辣根过氧化物酶进行的,其流变行为表明凝胶化动力学在3分钟以内。这些水凝胶具有高度的透明度,主要归因于它们的无定形构象。降解研究表明,这些水凝胶在磷酸盐缓冲溶液(PBS)(pH 7.4)中稳定17天,而在蛋白酶XIV(3.5 U/mg)存在以及急性和慢性生理pH值条件下,稳定性分别降至7天和4天。在蛋白酶降解过程中,当前的丝胶蛋白水凝胶表现出抗氧化活性。使用L929成纤维细胞系的研究表明,这些水凝胶无细胞毒性,在培养7天后促进细胞黏附和大量细胞定植,表明细胞保持了其活力和增殖能力。此外,基于丝胶蛋白的水凝胶在糖尿病伤口模型中的应用验证了该方法的可行性,并显示出局部抗炎作用,促进了愈合过程。本研究提出了一种简单、快速且实用的方法来制备可应用于低渗出性慢性伤口的基于丝胶蛋白的水凝胶。此外,本文报道的研究通过将一种纺织工业副产品整合到生物医学领域,促进了其价值提升。