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基于柔性生物玻璃纳米纤维的多功能3D基质在骨肉瘤术后治疗中的潜在应用

Multifunctional 3D matrixes based on flexible bioglass nanofibers for potential application in postoperative therapy of osteosarcoma.

作者信息

Wang Lihuan, Yuan Liting, Dong Yanbing, Huang Wenli, Zhu Jichang, Du Xuexian, Zhang Chenglin, Liu Pengbi, Mo Jinpeng, Li Bingyan, Liu Zijin, Yu Xi, Yu Hui

机构信息

Guangdong-Hong Kong Joint Laboratory for New Textile Materials, School of Textile Science and Engineering, Wuyi University, Jiangmen 529020, China.

Guangdong Laboratory of Chemistry and Fine Chemical Industry Jieyang Center, Jieyang 515200, China.

出版信息

Regen Biomater. 2024 Jul 24;11:rbae088. doi: 10.1093/rb/rbae088. eCollection 2024.

Abstract

Postoperative treatment of osteosarcoma is one of the major challenging clinical issues since both elimination of residual tumors and acceleration of bone regeneration should be considered. Photothermal therapy has been widely studied due to its advantages of small side-effect, low-toxicity, high local selectivity and noninversion, and bone tissue engineering is an inevitable trend in postoperative treatment of osteosarcoma. In this study, we combined the tissue engineering and photothermal therapy together, and developed a kind of multifunctional nanofibrous 3D matrixes for postoperative treatment of osteosarcoma. The flexible bioactive glass nanofibers (BGNFs) prepared by sol-gel electrospinning and calcination acted as the basic blocks, and the genipin-crosslinked gelatin (GNP-Gel) acted as the cement to bond the BGNFs forming a stable 3D structure. The stable porous 3D scaffolds were obtained through ice crystal templating method and freeze-drying technology. The obtained GNP-Gel/BGNF 3D matrixes showed a nanofibrous structure that highly biomimetics the extracellular matrix. The excellent compression recovery performance in water of these matrixes made them suitable for minimally invasive surgery. In addition, these 3D matrixes were not only biocompatible , but also benefit for the formation of mineralized bone . Furthermore, the dark blue GNP-Gel also acted as the photothermal agent, which endowed the GNP-Gel/BGNF 3D matrixes with efficient photothermal antitumor and photothermal antibacterial performance without addition of other toxic photothermal agents. Therefore, this study provides an ingenious avenue to prepare multifunctional nanofibrous 3D matrixes with photothermal therapy for postoperative treatment of osteosarcoma.

摘要

骨肉瘤的术后治疗是极具挑战性的临床问题之一,因为既要考虑消除残留肿瘤,又要促进骨再生。光热疗法因其副作用小、毒性低、局部选择性高和非侵入性等优点而得到广泛研究,骨组织工程是骨肉瘤术后治疗的必然趋势。在本研究中,我们将组织工程与光热疗法相结合,开发了一种用于骨肉瘤术后治疗的多功能纳米纤维三维基质。通过溶胶 - 凝胶电纺丝和煅烧制备的柔性生物活性玻璃纳米纤维(BGNFs)作为基本单元,京尼平交联的明胶(GNP - Gel)作为粘结BGNFs形成稳定三维结构的粘结剂。通过冰晶模板法和冷冻干燥技术获得稳定的多孔三维支架。所制备的GNP - Gel/BGNF三维基质呈现出高度仿生细胞外基质的纳米纤维结构。这些基质在水中优异的压缩恢复性能使其适用于微创手术。此外,这些三维基质不仅具有生物相容性,而且有利于矿化骨的形成。此外,深蓝色的GNP - Gel还作为光热剂,在不添加其他有毒光热剂的情况下,赋予GNP - Gel/BGNF三维基质高效的光热抗肿瘤和光热抗菌性能。因此,本研究为制备用于骨肉瘤术后治疗的具有光热疗法的多功能纳米纤维三维基质提供了一条巧妙的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1940/11333569/3a48fdfc2e64/rbae088f7.jpg

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