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研究载有 和 提取物的 PCL-Col 和 PCL-SBMA 双层纳米纤维支架在模拟皮肤结构治疗糖尿病创面方面的潜力。

Exploring the potential of an and honey extract loaded bi-layered nanofibrous scaffold of PCL-Col and PCL-SBMA mimicking the skin architecture for the treatment of diabetic wounds.

机构信息

Centre for Nanotechnology, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand 247667, India.

Biomaterials and Multiscale Mechanics Laboratory, Department of Metallurgical and Materials Engineering, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand 247667, India.

出版信息

J Mater Chem B. 2024 Oct 17;12(40):10383-10408. doi: 10.1039/d4tb01469c.

DOI:10.1039/d4tb01469c
PMID:39290135
Abstract

Diabetic wounds are often chronic in nature, and issues like elevated blood sugar, bacterial infections, oxidative stress and persistent inflammation impede the healing process. To ensure the appropriate healing of wounds, scaffolds should promote complete tissue regeneration in wounds, both functionally and structurally. However, the available scaffolds lack the explicit architecture and functionality that could match those of native skin, thus failing to carry out the scar-free skin regeneration in diabetic wounds. This study deals with the synthesis of a bi-layered nanofibrous scaffold mimicking the native skin architecture in terms of porosity and hydrophobic-hydrophilic gradients. In addition, herbal extracts of and litchi honey were added in consecutive layers to manage the high blood glucose level, inflammation, and increased ROS level associated with diabetic wounds. studies confirmed that the prepared scaffold with herbal extracts showed enhanced proliferation of skin cells with good mechanical strength, degradability, anti-bacterial and anti-diabetic properties. The scaffold also demonstrated superior wound healing with quicker scar-free wound recovery and appropriate skin regeneration, compared to conventional treatment. Altogether, the synthesized herbal extract loaded bi-layered nanofibrous scaffold can be used as a regenerative template for hard-to-heal diabetic wounds, offering a new strategy for the management of chronic wounds.

摘要

糖尿病伤口通常具有慢性特征,诸如高血糖、细菌感染、氧化应激和持续炎症等问题会阻碍愈合过程。为确保伤口的适当愈合,支架应在功能和结构上促进伤口的完全组织再生。然而,现有的支架缺乏可以与天然皮肤相匹配的明确结构和功能,因此无法在糖尿病伤口中实现无疤痕的皮肤再生。本研究涉及合成一种双层纳米纤维支架,在孔隙率和疏水性-亲水性梯度方面模拟天然皮肤结构。此外,还在连续层中添加了 和荔枝蜜的草药提取物,以控制与糖尿病伤口相关的高血糖水平、炎症和增加的 ROS 水平。 研究证实,具有草药提取物的制备支架显示出皮肤细胞增殖增强,具有良好的机械强度、可降解性、抗菌和抗糖尿病特性。与传统治疗相比,该支架还表现出优越的伤口愈合 ,能够更快地实现无疤痕的伤口恢复和适当的皮肤再生。总的来说,负载草药提取物的合成双层纳米纤维支架可用作难以愈合的糖尿病伤口的再生模板,为慢性伤口的管理提供了一种新策略。

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