新型抗菌γ- alooh基纳米复合材料加速感染全层创面愈合

IF 4.4 3区 医学 Q2 ENGINEERING, BIOMEDICAL
Hilda Parastar, Mohammad Reza Farahpour, Rasoul Shokri, Saeed Jafarirad, Mohsen Kalantari
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引用次数: 1

摘要

本研究以壳聚糖(Au/γ-AlOOH/Ctn-NC)为原料,借助一步薄荷合成了Au/γ-AlOOH(波西米亚)基Au/γ-AlOOH- nc及其功能化衍生物纳米复合材料(NCs)。研究了NCs的理化性质。此外,还评估了生物医学特性,如体外和体内条件下的抗菌活性以及细胞活力。评估感染创面的愈合活性和组织学参数。观察TNF-α、Capase 3、Bcl-2、Cyclin-D1、FGF-2基因的表达。TEM和FESEM图像显示Au/γ- aloh - nc中的波西米亚石呈片状结构,Au纳米颗粒在14 ~ 15 nm范围内。元素分析表明,合成的Au/γ-AlOOH中存在碳、氧、铝和Au等元素。毒性实验结果表明,制备的纳米复合材料没有细胞毒性。生物医学研究证实,Au/γ-AlOOH- nc和Au/γ-AlOOH/Ctn-NC具有抗菌性能,可以通过增加胶原蛋白的生物合成来加速感染伤口的愈合过程。Au/γ-AlOOH- nc和Au/γ-AlOOH/Ctn-NC软膏可降低TNF-α的表达,增加Capase 3、Bcl-2、Cyclin-D1和FGF-2的表达。这项研究的新颖之处在于,波西米亚纳米粒子和金纳米粒子可以用作敷料,加速伤口愈合过程。在绿色合成Au/γ- aloh - nc中,植物提取物的植物化学成分是稳定Au/γ- aloh - nc的合适试剂。因此,在未来的临床研究中,基于波西米亚的新型nc可以作为治疗感染伤口的候选材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acceleration in healing of infected full-thickness wound with novel antibacterial γ-AlOOH-based nanocomposites.

This study was conducted to synthesize γ-AlOOH (bohemite)-based nanocomposites (NCs) of Au/γ-AlOOH-NC and its functionalized derivative using chitosan (Au/γ-AlOOH/Ctn-NC) and with the help of one-step Mentha piperita. The physicochemical characteristics of the NCs were investigated. In addition, biomedical properties, such as antibacterial activity under in vitro and in vivo conditions, and cell viability were assessed. Wound healing activity on infected wounds and histological parameters were assessed. The gene expressions of TNF-α, Capase 3, Bcl-2, Cyclin-D1 and FGF-2 were investigated. The TEM and FESEM images showed the sheet-like structure for bohemite in Au/γ-AlOOH-NC with Au nanoparticles in a range of 14-15 nm. The elemental analysis revealed the presence of carbon, oxygen, aluminum, and Au elements in the as-synthesized Au/γ-AlOOH. The results for toxicity showed that the produced nanocomposites did not show any cytotoxicity. Biomedical studies confirmed that Au/γ-AlOOH-NC and Au/γ-AlOOH/Ctn-NC have anti-bacterial properties and could expedite the wound healing process in infected wounds by an increase in collagen biosynthesis. The administration of ointment containing Au/γ-AlOOH-NC and Au/γ-AlOOH/Ctn-NC decreased the expressions of TNF-α, and increased the expressions of Capase 3, Bcl-2, Cyclin-D1 and FGF-2. The novelty of this study was that bohemite and Au nanoparticles can be used as a dressing to accelerate the wound healing process. In green synthesis of Au/γ-AlOOH-NC, phytochemical compounds of the plant extract are appropriate reagents for stabilization and the production of Au/γ-AlOOH-NC. Therefore, the new bohemite-based NCs can be considered as candidate for treatment of infected wounds after future clinical studies.

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来源期刊
Progress in Biomaterials
Progress in Biomaterials MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
9.60
自引率
4.10%
发文量
35
期刊介绍: Progress in Biomaterials is a multidisciplinary, English-language publication of original contributions and reviews concerning studies of the preparation, performance and evaluation of biomaterials; the chemical, physical, biological and mechanical behavior of materials both in vitro and in vivo in areas such as tissue engineering and regenerative medicine, drug delivery and implants where biomaterials play a significant role. Including all areas of: design; preparation; performance and evaluation of nano- and biomaterials in tissue engineering; drug delivery systems; regenerative medicine; implantable medical devices; interaction of cells/stem cells on biomaterials and related applications.
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