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在缺乏血小板血浆添加剂存在的情况下羟基磷灰石基杂化材料的形成

Formation of Hydroxyapatite-Based Hybrid Materials in the Presence of Platelet-Poor Plasma Additive.

作者信息

Glazov Ilya E, Krut'ko Valentina K, Safronova Tatiana V, Sazhnev Nikita A, Kil'deeva Natalia R, Vlasov Roman A, Musskaya Olga N, Kulak Anatoly I

机构信息

Institute of General and Inorganic Chemistry, National Academy of Sciences of Belarus, Surganova Str., 9/1, 220012 Minsk, Belarus.

Department of Chemistry, Lomonosov Moscow State University, Building, 3, Leninskie Gory, 1, 119991 Moscow, Russia.

出版信息

Biomimetics (Basel). 2023 Jul 9;8(3):297. doi: 10.3390/biomimetics8030297.

Abstract

Biomaterials based on hydroxyapatite with controllable composition and properties are promising in the field of regenerative bone replacement. One approach to regulate the phase composition of the materials is the introduction of biopolymer-based additives into the synthesis process. The purpose of present study was to investigate the formation of hydroxyapatite-based hybrid materials in the presence of 6-24% platelet-poor plasma (PPP) additive, at a [Ca]/[PO] ratio of 1.67, pH 11, and varying maturing time from 4 to 9 days. The mineral component of the materials comprised 53% hydroxyapatite/47% amorphous calcium phosphate after 4 days of maturation and 100% hydroxyapatite after 9 days of maturation. Varying the PPP content between 6% and 24% brought about the formation of materials with rather defined contents of amorphous calcium phosphate and biopolymer component and the desired morphology, ranging from typical apatitic conglomerates to hybrid apatite-biopolymer fibers. The co-precipitated hybrid materials based on hydroxyapatite, amorphous calcium phosphate, and PPP additive exhibited increased solubility in SBF solution, which defines their applicability for repairing rhinoplastic defects.

摘要

具有可控组成和性能的基于羟基磷灰石的生物材料在再生骨替代领域很有前景。调节材料相组成的一种方法是在合成过程中引入基于生物聚合物的添加剂。本研究的目的是研究在6 - 24%贫血小板血浆(PPP)添加剂存在下,在[Ca]/[PO]比为1.67、pH值为11且成熟时间从4天到9天变化的条件下,基于羟基磷灰石的杂化材料的形成情况。材料的矿物成分在成熟4天后由53%的羟基磷灰石/47%的无定形磷酸钙组成,在成熟9天后为100%的羟基磷灰石。将PPP含量在6%至24%之间变化导致形成具有相当明确的无定形磷酸钙和生物聚合物成分含量以及所需形态的材料,范围从典型的磷灰石团聚体到杂化的磷灰石 - 生物聚合物纤维。基于羟基磷灰石、无定形磷酸钙和PPP添加剂的共沉淀杂化材料在模拟体液(SBF)溶液中表现出增加的溶解度,这决定了它们在修复鼻整形缺陷方面的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4cf/10807031/ecb59bc2173b/biomimetics-08-00297-g001.jpg

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