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用于上皮再生的、用玻璃体液和牙髓干细胞分泌组功能化的聚合物膜的制备。

Production of Polymeric Membranes Functionalized with Vitreous Humor and Secretome from Dental Pulp Stem Cells for Use in Epithelial Regeneration.

作者信息

Barroso Wallady da Silva, Luz Erika Patrícia Chagas Gomes, Marques Lidyane Souto Maciel, da Silva Cavalcante Paulo Eduardo, Souza Francisco Fábio Pereira de, Mattos Adriano Lincoln Albuquerque, Andrade Fabia Karine, Coelho da Silva André Luís, Cationi Hirata Mariáh, Bosco Isadora, Navarro da Rocha Daniel, Bombaldi de Souza Renata Francielle, Bombaldi de Souza Fernanda Carla, Muniz Ferreira José Ricardo, Silveira Vieira Rodrigo

机构信息

Federal University of Ceará (UFC), Department of Biochemistry and Molecular Biology, Bloco 907, Fortaleza, Ceará CE 60455-760, Brazil.

Federal University of Ceará (UFC), Department of Chemical Engineering, Fortaleza, Ceará CE 60455-760, Brazil.

出版信息

ACS Appl Bio Mater. 2025 Aug 18;8(8):7011-7022. doi: 10.1021/acsabm.5c00743. Epub 2025 Jul 15.

Abstract

This study investigated the development of porous membranes based on a matrix of bacterial cellulose (BC) and sodium alginate (ALG) incorporated with proteins extracted from the tuna vitreous humor and complete conditioned medium (CCM) obtained from the culture of dental pulp stem cells. These bioactive components were integrated into BC-ALG membranes, which were then evaluated for morphology, physicochemical properties, cytotoxicity, and regenerative potential . The membranes exhibited high porosity (72% to 89%), and remarkable swelling capacity reaching up to 3376 ± 0.78% in 72 min, indicating excellent moisture retention essential for wound healing . Cytotoxicity assay showed that none of the formulations were cytotoxic to the tested mammalian cells, confirming their cytocompatibility. Membranes containing CCM showed enhanced cell viability at lower concentrations (500 μg/mL and 250 μg/mL). scratch assays demonstrated that membranes with vitreous humor (VH) and CCM reduced scratch closure time from 18 to 12 h, suggesting their potential for accelerating skin regeneration. This work underscores the promise of using sustainable, waste-derived materials for creating bioactive membranes with applications in tissue engineering and regenerative medicine.

摘要

本研究调查了基于细菌纤维素(BC)和海藻酸钠(ALG)基质的多孔膜的开发,该基质中掺入了从金枪鱼玻璃体液中提取的蛋白质以及从牙髓干细胞培养物中获得的完全条件培养基(CCM)。这些生物活性成分被整合到BC-ALG膜中,然后对其形态、物理化学性质、细胞毒性和再生潜力进行评估。这些膜具有高孔隙率(72%至89%),在72分钟内具有高达3376±0.78%的显著溶胀能力,表明其具有伤口愈合所需的优异保湿性。细胞毒性试验表明,所有配方对测试的哺乳动物细胞均无细胞毒性,证实了它们的细胞相容性。含有CCM的膜在较低浓度(500μg/mL和250μg/mL)下显示出增强的细胞活力。划痕试验表明,含有玻璃体液(VH)和CCM的膜将划痕闭合时间从18小时缩短至12小时,表明它们具有加速皮肤再生的潜力。这项工作强调了使用可持续的、源自废物的材料制造具有组织工程和再生医学应用的生物活性膜的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f8b/12365879/76038b81ae2d/mt5c00743_0001.jpg

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