Saurav Sushmita, Sharma Prashish, Kumar Anil, Tabassum Zeba, Girdhar Madhuri, Mamidi Narsimha, Mohan Anand
School of Bioengineering and Biosciences, Lovely Professional University, Phagwara 144401, Punjab, India.
Gene Regulation Laboratory, National Institute of Immunology, New Delhi 110067, Delhi, India.
Curr Issues Mol Biol. 2024 Jan 5;46(1):585-611. doi: 10.3390/cimb46010038.
Numerous surgeries are carried out to replace tissues that have been harmed by an illness or an accident. Due to various surgical interventions and the requirement of bone substitutes, the emerging field of bone tissue engineering attempts to repair damaged tissues with the help of scaffolds. These scaffolds act as template for bone regeneration by controlling the development of new cells. For the creation of functional tissues and organs, there are three elements of bone tissue engineering that play very crucial role: cells, signals and scaffolds. For the achievement of these aims, various types of natural polymers, like chitosan, chitin, cellulose, albumin and silk fibroin, have been used for the preparation of scaffolds. Scaffolds produced from natural polymers have many advantages: they are less immunogenic as well as being biodegradable, biocompatible, non-toxic and cost effective. The hierarchal structure of bone, from microscale to nanoscale, is mostly made up of organic and inorganic components like nanohydroxyapatite and collagen components. This review paper summarizes the knowledge and updates the information about the use of natural polymers for the preparation of scaffolds, with their application in recent research trends and development in the area of bone tissue engineering (BTE). The article extensively explores the related research to analyze the advancement of nanotechnology for the treatment of bone-related diseases and bone repair.
人们进行了大量手术来替换因疾病或事故而受损的组织。由于各种外科手术干预以及对骨替代物的需求,新兴的骨组织工程领域试图借助支架修复受损组织。这些支架通过控制新细胞的发育,充当骨再生的模板。对于功能性组织和器官的创建,骨组织工程有三个非常关键的要素:细胞、信号和支架。为了实现这些目标,各种天然聚合物,如壳聚糖、几丁质、纤维素、白蛋白和丝素蛋白,已被用于制备支架。由天然聚合物制成的支架有许多优点:它们免疫原性较低,并且具有生物可降解性、生物相容性、无毒且成本效益高。从微观尺度到纳米尺度,骨的层次结构主要由有机和无机成分组成,如纳米羟基磷灰石和胶原蛋白成分。这篇综述文章总结了有关使用天然聚合物制备支架的知识,并更新了相关信息,以及它们在骨组织工程(BTE)领域的最新研究趋势和发展中的应用。本文广泛探讨了相关研究,以分析纳米技术在治疗骨相关疾病和骨修复方面的进展。