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脱细胞水凝胶在骨组织工程中的应用:综述

Decellularized Hydrogels in Bone Tissue Engineering: A Topical Review.

机构信息

Department of Oral and Maxillofacial Sciences La Sapienza University of Rome, Italy.

Multidisciplinary department of surgical and dental specialties. University of Campania Luigi Vanvitelli.

出版信息

Int J Med Sci. 2018 Mar 8;15(5):492-497. doi: 10.7150/ijms.22789. eCollection 2018.

Abstract

Nowadays, autograft and allograft techniques represent the main solution to improve bone repair. Unfortunately, autograft technique is expensive, invasive and subject to infections and hematoma, frequently affecting both donor sites and surgical sites. A recent advance in tissue engineering is the fabrication of cell-laden hydrogels with custom-made geometry, depending on the clinical case. The use of ECM (Extra-Cellular Matrix)-derived Hydrogels from bone tissue is the new opportunity to obtain good results in bone regeneration. Several micro-engineering techniques and approaches are available to fabricate different cell gradients and zonal structures in hydrogels design, in combination with the advancement in biomaterials selection. In this review, we analyse the stereolithografy, the Bio-patterning, the 3D bioprinting and 3D assembly, the Laser-Induced Forward Transfer Bioprinting (LIFT), the Micro-extrusion bioprinting, the promising Electrospinning technology, the Microfluidics and the Micromolding. Several mechanical properties are taken into account for bone regeneration scaffolds. However, each typology of scaffold presents some advantages and some concerns. The research on biomaterials is the most promising for bone tissue engineering: the new biomimetic materials will allow us to obtain optimal results in the next clinical application of basic research.

摘要

如今,自体移植物和同种异体移植物技术代表了改善骨修复的主要解决方案。不幸的是,自体移植物技术昂贵、有创,并且容易感染和血肿,经常影响供体部位和手术部位。组织工程学的最新进展是根据临床病例制造具有定制几何形状的细胞负载水凝胶。从骨组织中提取细胞外基质 (ECM) 衍生的水凝胶是获得骨再生良好效果的新机会。有几种微工程技术和方法可用于在水凝胶设计中制造不同的细胞梯度和区域结构,同时结合生物材料选择的进步。在这篇综述中,我们分析了立体光刻、生物图案化、3D 生物打印和 3D 组装、激光诱导前向转移生物打印 (LIFT)、微挤出生物打印、有前途的静电纺丝技术、微流控和微成型。几种机械性能被考虑用于骨再生支架。然而,每种支架类型都有一些优点和一些问题。生物材料的研究是骨组织工程中最有前途的:新的仿生材料将使我们能够在基础研究的下一次临床应用中获得最佳效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73c4/5859772/3547bfddd091/ijmsv15p0492g001.jpg

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