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Microencapsulation of Phosphorylated Human-Like Collagen-Calcium Chelates for Controlled Delivery and Improved Bioavailability

机译:磷酸化的类人胶原钙螯合物的微囊化可控制递送并提高生物利用度

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摘要

The bioavailability of Phosphorylated Human-like Collagen-calcium chelates (PHLC-Ca) as calcium supplement is influenced by the extremely low pH and proteolytic enzymes in the gastrointestinal tract. This study addresses these issues by microencapsulation technology using alginate (ALG) and chitosan (CS) as wall materials. The different ratio of ALG to PHLC-Ca on microcapsules encapsulation efficiency (EE) and loading capacity (LC) was evaluated and 1:1/2 was selected as the optimal proportion. The microcapsules were micron-sized and spherical in shape. PHLC-Ca was successfully entrapped into the matrix of ALG through forming intermolecular hydrogen bonding or other interactions. The confocal laser scanning microscopy (CLSM) indicated that CS was coated on ALG microspheres. The MTT assay exhibited that CS/ALG-(PHLC-Ca) microcapsules extracts were safe to L929. The animal experiment showed that CS/ALG-(PHLC-Ca) microcapsules was superior to treating osteoporosis than PHLC-Ca. These results illustrated that the bioavailability of PHLC-Ca was improved by microencapsulated.
机译:磷酸化人样胶原钙螯合物(PHLC-Ca)作为钙补充剂的生物利用度受胃肠道中极低的pH和蛋白水解酶的影响。这项研究通过使用藻酸盐(ALG)和壳聚糖(CS)作为墙体材料的微囊化技术解决了这些问题。评估了ALG与PHLC-Ca在微囊包封效率(EE)和负载量(LC)上的不同比例,并选择1:1/2作为最佳比例。微囊是微米大小的并且是球形的。通过形成分子间氢键或其他相互作用,PHLC-Ca成功地被捕获到ALG的基质中。共聚焦激光扫描显微镜(CLSM)表明,CS被涂在ALG微球上。 MTT分析显示CS / ALG-(PHLC-Ca)微胶囊提取物对L929是安全的。动物实验表明,CS / ALG-(PHLC-Ca)微胶囊优于PHLC-Ca治疗骨质疏松症。这些结果说明通过微囊化可以提高PHLC-Ca的生物利用度。

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