Rabadjieva Diana, Gergulova Rumiana, Ruseva Konstans, Bonchev Alexander, Shestakova Pavletta, Simeonov Marin, Vasileva Radosveta, Tatchev Dragomir, Titorenkova Rositsa, Vassileva Elena
Institute of General and Inorganic Chemistry, Bulgarian Academy of Sciences, Acad. G. Bonchev Str., bl. 11, 1113 Sofia, Bulgaria.
Laboratory on Structure and Properties of Polymers, Faculty of Chemistry and Pharmacy, University of Sofia, 1, James Bourchier Blvd., 1164 Sofia, Bulgaria.
Materials (Basel). 2023 Oct 11;16(20):6640. doi: 10.3390/ma16206640.
Biomacromolecules control mineral formation during the biomineralization process, but the effects of the organic components' functionality on the type of mineral phase is still unclear. The biomimetic precipitation of calcium phosphates in a physiological medium containing either polycarboxybetaine (PCB) or polysulfobetaine (PSB) was investigated in this study. Amorphous calcium phosphate (ACP) or a mixture of octacalcium phosphate (OCP) and dicalcium phosphate dihydrate (DCPD) in different ratios were identified depending on the sequence of initial solution mixing and on the type of the negative functional group of the polymer used. The more acidic character of the sulfo group in PSB than the carboxy one in PCB determines the dominance of the acidic solid phases, namely, an acidic amorphous phase or DCPD. In the presence of PCB, the formation of ACP with acicular particles arranged in bundles with the same orientation was observed. A preliminary study on the remineralization potential of the hybrid material with the participation of PSB and a mixture of OCP and DCPD did not show an increase in enamel density, contrary to the materials based on PCB and ACP. Moreover, the latter showed the creation of a newly formed crystal layer similar to that of the underlying enamel. This defines PCB/ACP as a promising material for enamel remineralization.
生物大分子在生物矿化过程中控制矿物质的形成,但有机成分的功能对矿相类型的影响仍不清楚。本研究考察了在含有聚羧酸甜菜碱(PCB)或聚磺酸甜菜碱(PSB)的生理介质中磷酸钙的仿生沉淀。根据初始溶液混合顺序和所用聚合物的负官能团类型,鉴定出了无定形磷酸钙(ACP)或不同比例的磷酸八钙(OCP)和二水磷酸二钙(DCPD)的混合物。PSB中磺酸基团的酸性比PCB中的羧基更强,这决定了酸性固相(即酸性无定形相或DCPD)占主导地位。在PCB存在的情况下,观察到形成了ACP,其针状颗粒以相同方向排列成束。与基于PCB和ACP的材料相反,对含有PSB以及OCP和DCPD混合物的杂化材料的再矿化潜力的初步研究未显示牙釉质密度增加。此外,后者显示形成了类似于底层牙釉质的新形成的晶体层。这将PCB/ACP定义为一种有前景的牙釉质再矿化材料。