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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Synthesis, characterization and evaluation of bone targeting salmon calcitonin analogs in normal and osteoporotic rats
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Synthesis, characterization and evaluation of bone targeting salmon calcitonin analogs in normal and osteoporotic rats

机译:正常和骨质疏松大鼠中靶向鲑鱼降钙素类似物的合成,表征和评价

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In order to assess the therapeutic efficacy of an antiresorptive drug with imparted bone targeting potential using bisphosphonate (BP) conjugation and an improved pharmacokinetic profile using PEGylation, we synthesized, characterized and evaluated in vivo efficacy of bone-targeting PEGylated salmon calcitonin (sCT) analog (sCT-PEG-BP). sCT-PEG-BP was compared with non-PEGylated bone targeting sCT analog (sCT-BP) and unmodified, commercially available sCT. sCT-PEG-BP conjugates were characterized by matrix-assisted laser desorption ionization time-of-flight (MALDI-TOF) analysis. The effect of PEG-BP or BP upon sCT secondary structure was examined by Circular Dichroism and sCT-PEG-BP was evaluated for in vitro bone mineral Hydroxyapatite (HA) binding ability and calcium salts specificity using a binding assay for bone HA and several calcium salts. Anti-calcitonin antibody binding ability of these analogs was determined using enzyme-linked immunosorbent assay (ELISA), by reacting bone targeting sCT analogs with calcium phosphate coated Osteologic? plates and detecting the bound sCT using anti-sCT antibody. Potential cytotoxicity of these compounds was evaluated in monocytic RAW 264.7 cells, and sCT bioactivity was evaluated using an in vitro intracellular cAMP stimulation assay in human T47D breast cancer cells. Finally, in vivo efficacy of each compound was evaluated by determining the plasma levels of calcium after s.c. administration in normal rats, and in a rat model of Osteoporosis, secondary to ovariectomy (OVX). In vivo micro-computed tomography (micro-CT) was used to temporally map and quantify alterations in bone volume and bone mineral density (BMD) in the same animals at 1, 4, 8 and 12 weeks after OVX surgery. Sixteen 6 week old virgin female rats underwent OVX surgery followed by the daily s.c. injection of 2.5 IU/kg/day sCT or equivalent analogs, and compared to four sham-operated, placebo treated control rats. Our results showed the chemical coupling of PEG-BP or BP to sCT altered its secondary structure without altering its antibody binding ability. sCT analogs retained strong sCT bioactivity, were non-toxic to RAW 264.7 cells in culture and elicited a comparable hypocalcemic effect to that of unmodified sCT in normal rats. Compared to marketed unmodified sCT, sCT-PEG-BP showed significantly improved efficacy in terms of preserving bone volume, BMD and trabecular micro-architecture in osteoporotic rats at the initial dose tested. Bisphosphonate-mediated targeting of PEGylated sCT to bone represents a new class of targeted antiresorptive compounds that has not previously been attempted.
机译:为了评估使用双膦酸酯(BP)偶联可赋予骨靶向潜力的抗吸收药的治疗功效以及使用PEG化作用改善的药代动力学特征,我们合成,表征和评估了靶向骨的PEG化鲑鱼降钙素(sCT)类似物的体内功效(sCT-PEG-BP)。将sCT-PEG-BP与未聚乙二醇的骨靶向sCT类似物(sCT-BP)和未修饰的市售sCT进行了比较。通过基质辅助激光解吸电离飞行时间(MALDI-TOF)分析来表征sCT-PEG-BP共轭物。通过圆二色谱法检查了PEG-BP或BP对sCT二级结构的影响,并通过对骨HA和几种钙的结合测定,评估了sCT-PEG-BP的体外骨矿物质羟基磷灰石(HA)结合能力和钙盐特异性。盐。这些类似物的抗降钙素抗体结合能力是通过酶联免疫吸附测定(ELISA)通过将靶向骨的sCT类似物与磷酸钙包被的Osteologic?板,并使用抗-sCT抗体检测结合的sCT。在单核RAW 264.7细胞中评估了这些化合物的潜在细胞毒性,并在人T47D乳腺癌细胞中使用体外细胞内cAMP刺激分析评估了sCT生物活性。最后,通过在s.c.之后测定血浆钙水平来评估每种化合物的体内功效。正常大鼠和骨质疏松的大鼠模型中,经卵巢切除术(OVX)给药。在OVX手术后的第1、4、8和12周,使用体内微型计算机断层扫描(micro-CT)来暂时绘制图并量化相同动物的骨体积和骨矿物质密度(BMD)的变化。 16只6周大的处女雌性大鼠接受OVX手术,然后每天进行一次皮下注射。注射2.5 IU / kg /天sCT或同等类似物,并与四只假手术,安慰剂治疗的对照组大鼠进行比较。我们的结果表明,PEG-BP或BP与sCT的化学偶联改变了其二级结构,而没有改变其抗体结合能力。 sCT类似物保留了很强的sCT生物活性,对培养中的RAW 264.7细胞无毒,并在正常大鼠中引起了与未经修饰的sCT相当的降血钙作用。与市售的未修饰sCT相比,在测试初始剂量下,sCT-PEG-BP在保持骨质疏松大鼠的骨体积,BMD和小梁微结构方面显示出显着改善的功效。双膦酸酯介导的PEG化sCT对骨的靶向代表了以前从未尝试过的一类新型靶向抗吸收化合物。

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