首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Insulin-loaded hydroxyapatite combined with macrophage activity to deliver insulin for diabetes mellitus
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Insulin-loaded hydroxyapatite combined with macrophage activity to deliver insulin for diabetes mellitus

机译:胰岛素负载的羟基磷灰石结合巨噬细胞活性为糖尿病输送胰岛素

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We aimed to develop a diabetes mellitus (DM) treatment that could be administered by intramuscular (IM) injection and it lasted for more than 3 days. The objective was to load insulin into the lattice space of hydroxyapatite (HAP) to prevent its release based on a concentration gradient or detachment from the surface, with insulin release being aided by cellular activity. To avoid insulin denaturation during the synthesis of insulin-loaded HAP (insHAP), we developed a single-step insHAP synthesis method by the hydrolysis of brushite. X-ray diffraction (XRD), Fourier transform infrared (FTIR) spectroscopy, scanning electron microscopy (SEM), and transmission electron microscopy (TEM) results suggested that insulin could be loaded into the HAP crystal lattice. After IM administration in rats with DM, the synthesized insHAP is thought to be engulfed by macrophages, escape from lysosome/endosome hybrids following disruption by osmotic pressure, and pumped into the extracellular space before entering the blood stream by diffusion. In rats with DM, the normal blood glucose level was maintained for 4 days after a single IM injection of the synthesized insHAP particles. Thus, insHAP may provide a breakthrough in insulin delivery for DM treatment, and may also be used to deliver fluorescent proteins, antibodies, and anticancer drugs.
机译:我们旨在开发一种可以通过肌肉注射(IM)进行治疗的糖尿病(DM)治疗,治疗持续3天以上。目的是将胰岛素加载到羟基磷灰石(HAP)的晶格空间中,以防止基于浓度梯度或从表面脱离而释放胰岛素,并通过细胞活性帮助胰岛素释放。为避免在负载胰岛素的HAP(insHAP)合成过程中胰岛素变性,我们通过透钙磷石的水解开发了一步式insHAP合成方法。 X射线衍射(XRD),傅立叶变换红外(FTIR)光谱,扫描电子显微镜(SEM)和透射电子显微镜(TEM)结果表明,胰岛素可以装载到HAP晶格中。在患有DM的大鼠中IM给药后,合成的insHAP被认为被巨噬细胞吞噬,在渗透压破坏后从溶酶体/内体杂种中逸出,并泵入细胞外空间,然后通过扩散进入血液。在患有DM的大鼠中,在一次IM注射合成的insHAP颗粒后,正常血糖水平维持4天。因此,insHAP可以为DM治疗提供胰岛素输送方面的突破,也可以用于输送荧光蛋白,抗体和抗癌药物。

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