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骨组织再生的演变:从移植到创新生物材料。

Evolution in Bone Tissue Regeneration: From Grafts to Innovative Biomaterials.

作者信息

Carrascal-Hernández Domingo Cesar, Martínez-Cano Juan Pablo, Rodríguez Macías Juan David, Grande-Tovar Carlos David

机构信息

Departamento de Química y Biología, Facultad de Ciencias Básicas, Universidad del Norte, Barranquilla 080020, Colombia.

Ortopedia y Traumatología, Epidemiología Clínica, Fundación Valle del Lili, Universidad ICESI, Cali 760031, Colombia.

出版信息

Int J Mol Sci. 2025 Apr 29;26(9):4242. doi: 10.3390/ijms26094242.

Abstract

Bone defects caused by various traumas and diseases such as osteoporosis, which affects bone density, and osteosarcoma, which affects the integrity of bone structure, are now well known. Given this situation, several innovative research projects have been reported to improve orthopedic methods and technologies that positively contribute to the regeneration of affected bone tissue, representing a significant advance in regenerative medicine. This review article comprehensively analyzes the transition from existing methods and technologies for implants and bone tissue regeneration to innovative biomaterials. These biomaterials have been of great interest in the last decade due to their physicochemical characteristics, which allow them to overcome the most common limitations of traditional grafting methods, such as the availability of biomaterials and the risk of rejection after their application in regenerative medicine. This could be achieved through an exhaustive study of the applications and properties of various materials with potential applications in regenerative medicine, such as using magnetic nanoparticles and hydrogels sensitive to external stimuli, including pH and temperature. In this regard, this review article describes the most relevant compounds used in bone tissue regeneration, promoting the integration of these biomaterials with the affected area's bone structure, thereby allowing for regeneration and preventing amputation. Additionally, the types of interactions between biomaterials and mesenchymal stem cells and their effects on bone tissue are discussed, which is critical for developing biomaterials with optimal regenerative properties. Furthermore, the mechanisms of action of the various biomaterials that enhance osteoconduction and osteoinduction, ensuring the success of orthopedic therapies, are analyzed. This enables the treatment of bone defects tailored to each patient's condition, thereby avoiding limb amputation. Consequently, a promising future for regenerative medicine is emerging, with various therapies that could revolutionize the management of bone defects, offering more efficient and safer solutions.

摘要

由各种创伤和疾病引起的骨缺损已为人熟知,比如影响骨密度的骨质疏松症,以及影响骨结构完整性的骨肉瘤。鉴于这种情况,已有多项创新性研究项目报道,旨在改进骨科方法和技术,这些方法和技术对受影响骨组织的再生有积极作用,代表了再生医学的重大进展。这篇综述文章全面分析了从现有的植入物和骨组织再生方法与技术向创新生物材料的转变。在过去十年中,这些生物材料因其物理化学特性而备受关注,这些特性使它们能够克服传统移植方法最常见的局限性,例如生物材料的可用性以及在再生医学中应用后出现排斥反应的风险。这可以通过详尽研究各种可能应用于再生医学的材料的应用和特性来实现,比如使用对外部刺激(包括pH值和温度)敏感的磁性纳米颗粒和水凝胶。在这方面,这篇综述文章描述了用于骨组织再生的最相关化合物,促进这些生物材料与受影响区域的骨结构整合,从而实现再生并防止截肢。此外,还讨论了生物材料与间充质干细胞之间的相互作用类型及其对骨组织的影响,这对于开发具有最佳再生特性的生物材料至关重要。此外,还分析了各种增强骨传导和骨诱导作用、确保骨科治疗成功的生物材料的作用机制。这使得能够根据每个患者的病情定制骨缺损治疗方案,从而避免肢体截肢。因此,再生医学的前景一片光明,各种疗法可能会彻底改变骨缺损的治疗方式,提供更高效、更安全的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ec8/12072198/736a53d63ecd/ijms-26-04242-g005.jpg

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