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Gelatin Stabilized Iron Oxide Nanoparticles As A Three Dimensional Template For The Hydroxyapatite Crystal Nucleation And Growth

机译:明胶稳定的氧化铁纳米粒子作为羟基磷灰石晶体成核和生长的三维模板

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摘要

Inspired by the structural similarity of gelatin (and collagen) linked to a mineral phase based on Ca-phosphates compounds with natural bone and increasing application of magnetic iron oxides in hyperthermia, gelatin coated iron oxide (GIO) was synthesized and hydroxyapatite (HAp) crystal nucleation and growth in the nanoparticles was explored. A series of GIO/HAp nanocomposites with various amount of GIO were synthesized by co-precipitation technique using calcium hydroxide and phosphoric acid as precursor. Various physico-chemical analysis showed that the HAp crystal nucleation and growth occurred at acidic group of gelatin, while magnetic iron oxide nanoparticles (< 8 nm) were bound to the amide groups of the gelatin chain. Moreover, the growth of HAp nanocrystals in aq. GIO solution was highly influenced by the GIO contents in the solution. The mineralized composite with magnetic properties could have great scope in biomedical field as a thermoseed to kill the cancerous cell in bone side by side for the bone reinforcement.
机译:受明胶(和胶原蛋白)与基于钙-磷酸化合物的矿物质相与天然骨的结构相似性的启发,并在高热中增加磁性氧化铁的使用,合成了明胶包覆的氧化铁(GIO)和羟基磷灰石(HAp)晶体探索了纳米颗粒中的成核和生长。以氢氧化钙和磷酸为前驱体,通过共沉淀技术合成了一系列具有不同GIO含量的GIO / HAp纳米复合材料。各种理化分析表明,HAp晶体的成核和生长发生在明胶的酸性基团上,而磁性氧化铁纳米粒子(<8 nm)与明胶链的酰胺基结合。此外,HAp纳米晶体在水溶液中的生长。 GIO解决方案受解决方案中GIO内容的影响很大。具有磁性的矿化复合物在生物医学领域具有广阔的前景,因为它是一种热种子,可以并排杀死骨骼中的癌细胞以增强骨骼。

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