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壳聚糖/丝素蛋白/氮掺杂碳量子点/α-磷酸三钙纳米复合材料静电纺丝作为伤口愈合应用的支架:体外和体内研究

Chitosan/silk fibroin/nitrogen-doped carbon quantum dot/α-tricalcium phosphate nanocomposite electrospinned as a scaffold for wound healing application: In vitro and in vivo studies.

作者信息

Dehghani Niloofar, Haghiralsadat Fatemeh, Yazdian Fatemeh, Sadeghian-Nodoushan Fatemeh, Ghasemi Nasrin, Mazaheri Fahime, Pourmadadi Mehrab, Naghib Seyed Morteza

机构信息

Department of Genetics, School of Medicine, Shahid Sadoughi University of Medical Sciences and Health Services, Yazd, Iran; Department of Medical Biotechnology, School of Medicine, Shahid Sadoughi University of Medical Sciences and Health Services, Yazd, Iran; Biomaterials and Tissue Engineering Research Group, Interdisciplinary Technologies Department, Breast Cancer Research Center, Motamed Cancer Institute, ACECR, Tehran, Iran.

Department of Advanced Medical Sciences and Technologies, School of Paramedicine, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

出版信息

Int J Biol Macromol. 2023 May 31;238:124078. doi: 10.1016/j.ijbiomac.2023.124078. Epub 2023 Mar 20.

Abstract

A highly porous nanofibrous network that can functionalize antibacterial and therapeutic agents can be considered a suitable option for skin wound healing. In this study, α-tricalcium phosphate (α-TCP)/nitrogen-doped carbon quantum dots (N-CQDs) nanocomposite was synthesized and then applied to the fabrication of novel chitosan (CS)/silk fibroin (SF)/N-CQDs/α-TCP wound dressing via electrospinning system. The prepared nanomaterials were well characterized using X-ray diffraction, Fourier-transform infrared, scanning and transmission electron microscopes analyses, and antibacterial assay. Furthermore, nanofibers were evaluated regarding their physical properties, such as tensile behavior, water uptake capacity, and water contact angle. The results reveal that CS/SF/N-CQDs/α-TCP showed lower MIC values against E. coli and S. aureus (1.45 ± 0.26 mg/mL and 1.59 ± 0.12 mg/mL) compared to other synthesized materials. Also, in-vitro investigations were performed, and the MTT assay on the HFF cell line revealed that CS/SF/N-CQDs/α-TCP nanofiber could possess good biocompatibility. Interestingly, the scratch test proved that faster cell migration and proliferation occurred in the presence of CS/SF/N-CQDs/α-TCP 73.23 ± 2.71 %). Finally, we examined the wound healing ability of CS/SF/N-CQDs/α-TCP nanofiber using an animal model. The results confirmed that produced nanofiber could efficiently promote wound closure by 96.73 ± 1.25 % in 12 days. Histopathological analyses verified accelerated re-epithelization and well-structured epidermis in CS/SF/N-CQDs/α-TCP nanofiber-treated group. Based on our findings, the CS/SF/N-CQDs/α-TCP nanofiber with excellent antimicrobial properties is highly suitable for wound healing and skin tissue regeneration applications.

摘要

一种能够使抗菌和治疗剂功能化的高度多孔纳米纤维网络可被视为皮肤伤口愈合的合适选择。在本研究中,合成了α-磷酸三钙(α-TCP)/氮掺杂碳量子点(N-CQDs)纳米复合材料,然后通过静电纺丝系统将其应用于制备新型壳聚糖(CS)/丝素蛋白(SF)/N-CQDs/α-TCP伤口敷料。使用X射线衍射、傅里叶变换红外光谱、扫描和透射电子显微镜分析以及抗菌试验对制备的纳米材料进行了充分表征。此外,还对纳米纤维的物理性能进行了评估,如拉伸性能、吸水能力和水接触角。结果表明,与其他合成材料相比,CS/SF/N-CQDs/α-TCP对大肠杆菌和金黄色葡萄球菌的最低抑菌浓度值较低(分别为1.45±0.26mg/mL和1.59±0.12mg/mL)。此外,还进行了体外研究,对人包皮成纤维细胞系的MTT试验表明,CS/SF/N-CQDs/α-TCP纳米纤维具有良好的生物相容性。有趣的是,划痕试验证明,在CS/SF/N-CQDs/α-TCP存在的情况下,细胞迁移和增殖更快(73.23±2.71%)。最后,我们使用动物模型研究了CS/SF/N-CQDs/α-TCP纳米纤维的伤口愈合能力。结果证实,所制备的纳米纤维能够在12天内有效促进伤口闭合,闭合率为96.73±1.25%。组织病理学分析证实,CS/SF/N-CQDs/α-TCP纳米纤维治疗组的上皮再形成加速,表皮结构良好。基于我们的研究结果,具有优异抗菌性能的CS/SF/N-CQDs/α-TCP纳米纤维非常适合伤口愈合和皮肤组织再生应用。

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