Sun Yubo, Zeng Xiao-Rong, Wenger Leonor, Cheung Herman S
Division of Rheumatology and Immunology, University of Miami School of Medicine, Miami, FL 33101, USA.
Biochem Biophys Res Commun. 2003 Dec 26;312(4):1053-9. doi: 10.1016/j.bbrc.2003.11.048.
Pathological calcifications are associated with many medical conditions including diabetes, breast cancer, and crystals-associated osteoarthritis. The deposition of calcium-containing crystals on cells induces detrimental cellular effects and speeds up the progression of associated diseases. We carried out the present study to test the hypotheses that calcium-containing crystals may stimulate the influx of other molecules existing in the extracellular fluid disturbing normal molecular signaling and that anti-calcification agent will inhibit such endocytotic process. We found that basic calcium phosphate (BCP) crystals greatly stimulated the endocytotic activity of cells by rendering the cells more permeable and that the anti-calcification agent phosphocitrate and several others inhibited the crystals-mediated endocytosis. This is the first study reporting that the endocytotic activity of cells is affected by BCP crystals and that such endocytotic activity can be inhibited by anti-calcification agents. Since calcium-containing crystals are associated with many human diseases and in many circumstances are associated with apoptotic bodies, extracellular and matrix vesicles where DNA fragments, small peptides, and minerals are released into extracellular space, the findings reported here are important for our understanding of the complex biological effects and the potential pathological role of calcium-containing crystals in crystals-associated diseases, and for the development of disease modifying agents as well.
病理性钙化与许多医学病症相关,包括糖尿病、乳腺癌和晶体相关性骨关节炎。含钙晶体在细胞上的沉积会引发有害的细胞效应,并加速相关疾病的进展。我们开展了本研究,以验证以下假设:含钙晶体可能刺激细胞外液中其他分子的内流,扰乱正常的分子信号传导,并且抗钙化剂将抑制这种内吞过程。我们发现碱性磷酸钙(BCP)晶体通过使细胞更具通透性,极大地刺激了细胞的内吞活性,并且抗钙化剂磷酸柠檬酸及其他几种物质抑制了晶体介导的内吞作用。这是第一项报道细胞的内吞活性受BCP晶体影响且这种内吞活性可被抗钙化剂抑制的研究。由于含钙晶体与许多人类疾病相关,并且在许多情况下与凋亡小体、细胞外囊泡和基质小泡相关,在这些过程中DNA片段、小肽和矿物质被释放到细胞外空间,因此本文报道的研究结果对于我们理解含钙晶体在晶体相关性疾病中的复杂生物学效应和潜在病理作用,以及对于开发疾病改善药物都很重要。