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调节硅灰石生物陶瓷中的锌含量,赋予其出色的血管生成和抗菌功能,有利于眼眶重建。

Tuning zinc content in wollastonite bioceramic endowing outstanding angiogenic and antibacterial functions beneficial for orbital reconstruction.

作者信息

Peng Yiyu, Chen Menglu, Wang Jingyi, Xie Jiajun, Wang Changjun, Yang Xianyan, Huang Xiaoling, Gou Zhongru, Ye Juan

机构信息

Eye Center, The Second Affiliated Hospital, Zhejiang University School of Medicine, Zhejiang, Provincial Key Lab of Ophthalmology, Hangzhou, 310009, China.

Bio-nanomaterials and Regenerative Medicine Research Division, Zhejiang-California International Nanosystem Institute, Zhejiang University, Hangzhou, 310058, China.

出版信息

Bioact Mater. 2024 Jul 5;36:551-564. doi: 10.1016/j.bioactmat.2024.02.027. eCollection 2024 Jun.

Abstract

Prosthetic eye is indispensable as filler after enucleation in patients with anophthalmia, whereas there are still many complications including postoperative infection and eye socket depression or extrusion during the conventional artificial eye material applications. Some Ca-silicate biomaterials showed superior bioactivity but their biological stability limit the biomedical application as long-term or permanent implants. Herein we aimed to understand the physicochemical and potential biological responses of zinc doping in wollastonite bioceramic used for orbital implants. The wollastonite powders with different zinc dopant contents (CSi-Zn) could be fabricated as porous implants with strut or curve surface pore geometries (cubic, IWP) via ceramic stereolithography. The experimental results indicated that, by increasing zinc-substituting-Ca ratio (up to 9%), the sintering and mechanical properties could be significantly enhanced, and meanwhile the bio-dissolution and biodegradability were thoroughly inhibited. In particular, an appreciable angiogenic activity and expected antibacterial efficacy (over 90 %) were synergistically achieved at 9 mol% Zn dopant. In the back-embedding and enucleation and implantation model experiments in rabbits, the superior continuous angiogenesis was corroborated from the 2D/3D fibrovascular reconstruction in the IWP-pore CSi-Zn9 and CSi-Zn13.5 groups within very short time stages. Totally, the present silicate-based bioceramic via selective Zn doping could produce outstanding structural stability and bifunctional biological responses which is especially valuable for developing the next-generation implants with vascular insertion and fixation in orbital reconstruction prothesis.

摘要

对于无眼球患者,义眼作为眼球摘除术后的填充物不可或缺,然而在传统人工眼材料应用过程中仍存在许多并发症,包括术后感染以及眼窝凹陷或突出。一些钙硅酸盐生物材料表现出优异的生物活性,但其生物稳定性限制了它们作为长期或永久性植入物的生物医学应用。在此,我们旨在了解用于眼眶植入物的硅灰石生物陶瓷中锌掺杂的物理化学和潜在生物学反应。通过陶瓷立体光刻技术,可以将具有不同锌掺杂剂含量(CSi-Zn)的硅灰石粉末制成具有支柱或曲面孔隙几何形状(立方,IWP)的多孔植入物。实验结果表明,通过增加锌取代钙的比例(高达9%),烧结和机械性能可得到显著提高,同时生物溶解和生物降解性也得到彻底抑制。特别是,在锌掺杂剂含量为9 mol%时,协同实现了可观的血管生成活性和预期的抗菌效果(超过90%)。在兔的后植入、眼球摘除和植入模型实验中,IWP孔隙CSi-Zn9和CSi-Zn13.5组在非常短的时间内通过二维/三维纤维血管重建证实了优异的持续血管生成。总的来说,通过选择性锌掺杂的新型硅酸盐基生物陶瓷可以产生出色的结构稳定性和双功能生物学反应,这对于开发下一代在眼眶重建假体中具有血管插入和固定功能的植入物特别有价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cc8/11276934/999c71e6093b/ga1.jpg

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