Natural ECM-Bacterial Cellulose Wound Healing—Dubai Study

Safwat Mohd. El-Hoseny, P. Basmaji, G. Olyveira, L. Costa, Abdulwahid Alwahedi, José C Oliveira, Gino Bruno Francozo
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引用次数: 20

Abstract

Bacterial cellulose (BC) can be used in wide area of applied scientific, especially for tissue regeneration and regenerative medicine, lately, bacterial cellulose mats are used in the treatment of skin conditions such as burns and ulcers, because of the morphology of fibrous biopolymers serving as a support for cell proliferation, its pores allow gas exchange between the organism and the environment. Moreover, the nanostructure and morphological similarities with collagen make BC attractive for cell immobilization, cell support and Natural Extracellular Matrix (ECM) Scaffolds. In this scope, Natural ECM is the ideal biological scaffold since it contains all the components of the tissue. The development of mimicking biomaterials and hybrid biomaterial can further advance directed cellular differentiation without specific induction. The extracellular matrix (ECM) contains several signals that are received by cell surface receptors and contribute to cell adhesion and cell fate which control cellular activities such as proliferation, migration and differentiation. As such, regenerative medicine studies often rely on mimicking the natural ECM to promote the formation of new tissue by host cells, and characterization of natural ECM components is vital for the development of new biomimetic approaches. In this work, the bacterial cellulose fermentation process is modified by the addition of vegetal stem cell to the culture medium and natural materials before the bacteria are inoculated. In vivo behavior using natural ECM for regenerative medicine is presented.
天然ecm -细菌纤维素伤口愈合-迪拜研究
细菌纤维素(BC)具有广泛的应用科学领域,特别是在组织再生和再生医学方面,近年来,细菌纤维素垫被用于治疗皮肤疾病,如烧伤和溃疡,因为纤维生物聚合物的形态支持细胞增殖,其孔隙允许生物和环境之间的气体交换。此外,与胶原的纳米结构和形态相似性使BC具有用于细胞固定、细胞支持和天然细胞外基质(ECM)支架的吸引力。在这个范围内,天然ECM是理想的生物支架,因为它包含了组织的所有成分。仿生生物材料和杂交生物材料的发展可以进一步推进细胞定向分化,而无需特异性诱导。细胞外基质(extracellular matrix, ECM)包含多种信号,这些信号被细胞表面受体接收,并参与细胞粘附和细胞命运,控制细胞的增殖、迁移和分化等活动。因此,再生医学研究通常依赖于模仿天然ECM来促进宿主细胞形成新组织,而天然ECM成分的表征对于开发新的仿生方法至关重要。在这项工作中,通过在细菌接种前在培养基和天然材料中添加植物干细胞来修改细菌纤维素发酵过程。介绍了天然ECM用于再生医学的体内行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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