Bonifacio Maria Addolorata, Cassano Amalia, Vincenti Alessandra, Vinella Angela, Dell'Olio Fabio, Favia Gianfranco, Mariggiò Maria Addolorata
Department of Precision and Regenerative Medicine and Ionian Area, Medical School, University of Bari Aldo Moro, 70124 Bari, Italy.
Department of Interdisciplinary Medicine, University of Bari Aldo Moro, 70124 Bari, Italy.
Biomedicines. 2023 Mar 1;11(3):751. doi: 10.3390/biomedicines11030751.
The treatment of bone injuries must be timely and effective to improve the chances of full recovery. In this respect, a mix of hyaluronic acid and an amino acidic pool has been marketed to promote soft tissue healing, fastening recovery times. Several studies have reported the in vitro and in vivo influence of hyaluronic acid and amino acids on fibroblasts and keratinocytes, highlighting the enhancement of cell proliferation, motility and cytokines synthesis. Even though the effectiveness of this combination of molecules on bone repair has been described in vivo, to the best of our knowledge, its in vitro effects on osteoblasts still need to be investigated. Therefore, this work describes for the first time osteoblast metabolism, proliferation and in vitro differentiation in the presence of hyaluronic acid and amino acids, aiming at understanding the mechanisms underlying their effectiveness in injured tissue repair. The reported results demonstrate the enhancement of osteoblasts' metabolic activity and the fastening of cell cycle progression. Furthermore, gene expression studies show a significant increase in differentiation markers, i.e., osteoprotegerin and osteonectin. Finally, alkaline phosphatase activity is also boosted by the combination of hyaluronic acid and aminoacids, confirming the ability of in vitro cultured cells to properly differentiate through the osteogenic lineage.
骨损伤的治疗必须及时且有效,以提高完全康复的几率。在这方面,一种透明质酸和氨基酸池的混合物已上市销售,以促进软组织愈合,缩短恢复时间。多项研究报告了透明质酸和氨基酸在体外和体内对成纤维细胞和角质形成细胞的影响,突出了细胞增殖、运动性和细胞因子合成的增强。尽管这种分子组合对骨修复的有效性已在体内得到描述,但据我们所知,其对成骨细胞的体外作用仍有待研究。因此,这项工作首次描述了在透明质酸和氨基酸存在下成骨细胞的代谢、增殖和体外分化,旨在了解它们在损伤组织修复中有效性的潜在机制。报告结果表明成骨细胞代谢活性增强,细胞周期进程加快。此外,基因表达研究显示分化标志物(即骨保护素和骨连接蛋白)显著增加。最后,透明质酸和氨基酸的组合也提高了碱性磷酸酶活性,证实了体外培养细胞通过成骨谱系进行适当分化的能力。