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抗菌主体客体插层水滑石修饰的聚氨酯用于加速皮肤创伤愈合。

Antibacterial Host-Guest Intercalated LDH-Adorned Polyurethane for Accelerated Dermal Wound Healing.

机构信息

Department of Chemistry, University of Isfahan, Isfahan81746-73441, Iran.

Department of Biomaterials, Tissue Engineering and Nanotechnology, School of Advanced Technologies in Medicine, Isfahan University of Medical Sciences, Isfahan81745-33871, Iran.

出版信息

ACS Appl Bio Mater. 2022 Dec 19;5(12):5800-5815. doi: 10.1021/acsabm.2c00805. Epub 2022 Nov 16.

Abstract

Curcumin has a limited clinical application because of its extremely poor accessibility. In the present study, improved curcumin bioavailability within a castor oil polyurethane/layered double hydroxide (LDH) wound cover was achieved by preparing a curcumin -sulfonic acid calix[4]arene (SC4A) inclusion complex. Then, it was utilized to intercalate MgAl-layered double hydroxide (MgAl-LDH) nanosheets. The incorporation of the nanostructure into a PU/Cur-SC4A-LDH film provided bacteria-killing performance against both Gram-positive and Gram-negative bacteria. This finding is due to an increase in curcumin bioavailability in the PU matrix. Furthermore, all PU nanocomposites exhibited appropriate cytocompatibility based on an MTT assay. Mainly, the proliferation of L929 fibroblast cells in contact with the PU/Cur-SC4A-LDH sample was significantly further enhanced than that for other nanocomposites within 7 days. This observation can be related to the better availability of curcumin on the film's surface, which causes an improvement in the proliferation rate of cells. Regarding the histological results, the hematoxylin and eosin (H&E) images showed faster epidermal layer formation and a larger quantity of matured hair follicles for PU/Cur-SC4A-LDH-healed wounds in comparison with those for the negative control over a period of 28 days. Thus, this practical healing ability of the PU/Cur-SC4A-LDH nanocomposite makes it a promising candidate as a wound dressing film.

摘要

姜黄素由于其极差的生物利用度,临床应用受到限制。在本研究中,通过制备姜黄素-磺酸杯[4]芳烃(SC4A)包合物,提高了蓖麻油聚氨酯/层状双氢氧化物(LDH)伤口覆盖物中姜黄素的生物利用度。然后,将其用于插层 MgAl 层状双氢氧化物(MgAl-LDH)纳米片。将纳米结构掺入 PU/Cur-SC4A-LDH 薄膜中,提供了对革兰氏阳性和革兰氏阴性细菌的杀菌性能。这一发现归因于 PU 基质中姜黄素生物利用度的增加。此外,所有 PU 纳米复合材料均基于 MTT 测定表现出适当的细胞相容性。主要是,与其他纳米复合材料相比,与 PU/Cur-SC4A-LDH 样品接触的 L929 成纤维细胞的增殖在 7 天内明显进一步增强。这种观察结果可以与薄膜表面上姜黄素更好的可用性相关,这导致细胞增殖率的提高。关于组织学结果,苏木精和伊红(H&E)图像显示,与阴性对照相比,PU/Cur-SC4A-LDH 愈合伤口在 28 天内更快地形成表皮层并产生更多成熟的毛囊。因此,这种实用的愈合能力使 PU/Cur-SC4A-LDH 纳米复合材料成为有前途的伤口敷料膜候选物。

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