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载姜黄素支架在骨再生中的应用

Curcumin-loaded scaffolds in bone regeneration.

作者信息

Astaneh Mohammad Ebrahim, Noori Fariba, Fereydouni Narges

机构信息

Department of Anatomical Sciences, School of Medicine, Fasa University of Medical Sciences, Fasa, Iran.

Department of Tissue Engineering, School of Medicine, Fasa University of Medical Sciences, Fasa, Iran.

出版信息

Heliyon. 2024 Jun 6;10(11):e32566. doi: 10.1016/j.heliyon.2024.e32566. eCollection 2024 Jun 15.

Abstract

In recent years, there has been a notable surge in the development of engineered bone scaffolds intended for the repair of bone defects. While autografts and allografts have traditionally served as the primary methods in bone tissue engineering, their inherent limitations have spurred the exploration of novel avenues in biomedical implant development. The emergence of bone scaffolds not only facilitates bone reconstruction but also offers a platform for the targeted delivery of therapeutic agents. There exists a pervasive interest in leveraging various drugs, proteins, growth factors, and biomolecules with osteogenic properties to augment bone formation, as the enduring side effects associated with current clinical modalities necessitate the pursuit of safer alternatives. Curcumin, the principal bioactive compound found in turmeric, has demonstrated notable efficacy in regulating the proliferation and differentiation of bone cells while promoting bone formation. Nevertheless, its utility is hindered by restricted water solubility and poor bioavailability. Strategies aimed at enhancing the solubility, stability, and bioavailability of curcumin, including formulation techniques such as liposomes and nanoparticles or its complexation with metals, have been explored. This investigation is dedicated to exploring the impact of curcumin on the proliferation, differentiation, and migration of osteocytes, osteoblasts, and osteoclasts.

摘要

近年来,用于修复骨缺损的工程化骨支架的发展显著激增。虽然自体移植和异体移植传统上一直是骨组织工程的主要方法,但它们固有的局限性促使人们在生物医学植入物开发中探索新的途径。骨支架的出现不仅有助于骨重建,还为治疗剂的靶向递送提供了一个平台。利用具有成骨特性的各种药物、蛋白质、生长因子和生物分子来增强骨形成存在广泛的兴趣,因为当前临床治疗方式的长期副作用使得有必要寻求更安全的替代方法。姜黄素是姜黄中的主要生物活性化合物,在调节骨细胞的增殖和分化以及促进骨形成方面已显示出显著疗效。然而,其效用受到水溶解度受限和生物利用度差的阻碍。人们已经探索了旨在提高姜黄素溶解度、稳定性和生物利用度的策略,包括脂质体和纳米颗粒等制剂技术或其与金属的络合。本研究致力于探索姜黄素对骨细胞、成骨细胞和破骨细胞的增殖、分化和迁移的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3677/11219509/612fe1421b8e/gr1.jpg

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