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一种用于引导骨再生应用的非对称微流控/壳聚糖药物缓释装置。

An Asymmetric Microfluidic/Chitosan Device for Sustained Drug Release in Guided Bone Regeneration Applications.

机构信息

School of Chemical Engineering and Technology, Tianjin University, Tianjin 300350, China.

School and Hospital of Stomatology, Tianjin Medical University, Tianjin 300070, China.

出版信息

Biosensors (Basel). 2022 Oct 9;12(10):847. doi: 10.3390/bios12100847.

Abstract

One of the major challenges of guided bone regeneration (GBR) is infections caused by pathogen colonization at wound sites. In this paper, an asymmetric microfluidic/chitosan device was developed to release drugs to inhibit infections and to ensure that guided bone regeneration can be realized. The microfluidic technique was introduced into the GBR membrane for the first time, which demonstrated more controllable drug release, more flexible clinical use and had a lower cost compared with surface treatments and embedded nanoparticles. Based on the theory of diffusion and Fick’s first law, the contact area and concentration gradient were adjusted to realize sustained drug release. The standard deviation of minocycline release over 5 days was only 12.7%, which was lower than the joint effect of porous chitosan discs and nanospheres. The in vitro experiments against E. coli and Streptococcus mutans showed the excellent antibacterial performance of the device (>95%). The in vitro experiments for fibroblasts at the microfluidic side and osteoblasts at the chitosan side showed the satisfactory biocompatibility and the ability of the device to enhance bone regeneration. Therefore, this microfluidic/chitosan device is a promising therapeutic approach to prevent infection and guide bone regeneration.

摘要

引导骨再生(GBR)的主要挑战之一是伤口部位病原体定植引起的感染。本文开发了一种不对称微流控/壳聚糖装置,以释放药物来抑制感染,确保实现引导骨再生。微流控技术首次被引入 GBR 膜中,与表面处理和嵌入纳米颗粒相比,其具有更可控的药物释放、更灵活的临床应用和更低的成本。基于扩散和菲克第一定律的理论,调整接触面积和浓度梯度以实现持续的药物释放。米诺环素释放 5 天的标准偏差仅为 12.7%,低于多孔壳聚糖盘和纳米球的联合作用。该装置对大肠杆菌和变形链球菌的体外实验显示出优异的抗菌性能(>95%)。微流控侧的成纤维细胞和壳聚糖侧的成骨细胞的体外实验表明,该装置具有良好的生物相容性和增强骨再生的能力。因此,这种微流控/壳聚糖装置是一种有前途的治疗方法,可以预防感染和引导骨再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c74/9599337/d2e4d7b4c3dd/biosensors-12-00847-g001.jpg

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