IOC - Instituto do Osso e da Cartilagem/The Bone and Cartilage Institute, 1386 Presidente Kennedy Avenue - 2nd Floor, Room #29, Zip Code 13334-170, Indaiatuba, SP, Brazil.
Queensland University of Technology, 2 George St, Zip Code 4000, Brisbane, Queensland, Australia.
Cytokine. 2021 Aug;144:155560. doi: 10.1016/j.cyto.2021.155560. Epub 2021 May 15.
Orthobiologics continue to gain popularity in many areas of medical science, especially in the field of regenerative medicine. Platelet-rich plasma derivatives are orthobiologic tools of particular interest. These biologic products can be obtained via centrifugation of a patient's whole blood and the components can then be subsequently isolated, concentrated and ultimately administered into injured tissues, particularly in areas where standard healing is disrupted. The elevated concentration of platelets above the basal value enables accelerated growth of various tissues with minimal side effects. The application of autologous orthobiologics is a relatively new biotechnology undergoing expansion which continues to reveal optimistic results in the stimulation and enhanced healing of various sorts of tissue injuries. The local release of growth factors and cytokines contained in platelet alpha granules accelerates and ameliorates tissue repair processes, mimicking and supporting standard wound healing. This effect is greatly enhanced upon combination with the fibrinolytic system, which are essential for complete regeneration. Fibrinolytic reactions can dictate proper cellular recruitment of certain cell populations such as mesenchymal stem cells and other immunomodulatory agents. Additionally, these reactions also control proteolytic activity in areas of wound healing and regenerative processes of mesodermal tissues including bone, cartilage, and muscle, which makes it particularly valuable for musculoskeletal health, for instance. Although many investigations have demonstrated significant results with platelet-rich plasma derivatives, further studies are still warranted.
在许多医学科学领域,特别是在再生医学领域,骨生物学继续受到关注。富含血小板的血浆衍生物是特别有趣的骨生物学工具。这些生物制品可以通过离心患者的全血获得,然后可以分离、浓缩并最终注入受伤组织,特别是在标准愈合受到干扰的区域。血小板浓度高于基础值可加速各种组织的生长,副作用极小。自体骨生物学的应用是一种相对较新的生物技术,正在不断扩展,在刺激和增强各种组织损伤的愈合方面继续显示出乐观的结果。血小板α颗粒中包含的生长因子和细胞因子的局部释放加速和改善组织修复过程,模拟并支持标准的伤口愈合。这种效果在与纤维蛋白溶解系统结合时得到极大增强,纤维蛋白溶解系统对于完全再生是必不可少的。纤维蛋白溶解反应可以决定某些细胞群(如间充质干细胞和其他免疫调节剂)的适当细胞募集。此外,这些反应还控制着包括骨骼、软骨和肌肉在内的中胚层组织的伤口愈合和再生过程中的蛋白水解活性,这使得富含血小板的血浆衍生物在肌肉骨骼健康等方面特别有价值。尽管许多研究已经证明富含血小板的血浆衍生物具有显著效果,但仍需要进一步研究。