Development Trend of 3D Printing Bone Tissue Engineering Scaffold Based on Black Phosphorus Nanosheets

Lianyi Huo, Xuetao Shi, Xing Wang, Yuchen Yao, Yiwei Liu
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Abstract

∗ With the increasingly serious problem of population aging, the number of patients with bone defects caused by degenerative dis-eases is gradually increasing, which has brought great pressure to the medical system of various countries. Bone tissue engineering scaffolds made of traditional biomaterials are easy to produce problems such as poor fit, wear and corrosion after repairing bone tissue, especially it is difficult to form bone tissue with biological function. In this paper, the research status of 3D printed bone tissue engineering scaffold technology based on black phosphorus nanosheets (BPNs) is deeply analyzed. It is considered that BPNs have unique advantages and development prospects compared with other traditional bone tissue scaffold materials (such as bioceramics and metal materials). The combination of BPNs and 3D-printed bone tissue engineering scaffolds can overcome the defects of traditional scaffold manufacturing methods and achieve a breakthrough in the personalized, accurate, mechanical strength, pore regulation and spatial structure complexity of scaffolds. This study provides a salutary lesson for the design of 3D printed bone tissue engineering scaffolds and the improvement of antibacterial and stability based on BPNs.
基于黑磷纳米片的3D打印骨组织工程支架的发展趋势
*随着人口老龄化问题的日益严重,退行性疾病引起的骨缺损患者数量逐渐增加,给各国医疗系统带来了巨大的压力。传统生物材料制成的骨组织工程支架在修复骨组织后容易产生贴合不良、磨损、腐蚀等问题,尤其难以形成具有生物功能的骨组织。本文深入分析了基于黑磷纳米片(BPNs)的3D打印骨组织工程支架技术的研究现状。与其他传统的骨组织支架材料(如生物陶瓷和金属材料)相比,bpn具有独特的优势和发展前景。bpn与3d打印骨组织工程支架的结合,克服了传统支架制造方法的缺陷,在支架的个性化、精准性、机械强度、孔隙调节、空间结构复杂性等方面实现了突破。本研究为3D打印骨组织工程支架的设计以及基于bpn的抗菌性和稳定性的提高提供了有益的借鉴。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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