首页> 外文期刊>Journal of Pharmacy and Pharmacology >Design, synthesis, characterization and in-vivo activity of a novel salmon calcitonin conjugate containing a novel PEG-lipid moiety.
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Design, synthesis, characterization and in-vivo activity of a novel salmon calcitonin conjugate containing a novel PEG-lipid moiety.

机译:新型鲑鱼降钙素结合物的设计,合成,表征和体内活性,所述鲑鱼降钙素结合物含有新型PEG-脂质部分。

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OBJECTIVES: The aim of the study was to explore (1) the synthesis of a novel poly(ethylene glycol) modified lipid (PEG-lipid, PL) containing a chemically active tri-block linker, epsilon-maleimido lysine (Mal), and its conjugation with salmon calcitonin (sCT), and (2) the biophysical properties and activity of the resulting conjugate, Mal-PL-sCT, relative to the control, 2PEG-Mal-sCT, which comprises sCT conjugated with alpha-palmitoyl-N-epsilon-maleimido-L-lysine at cysteine 1 and cysteine 7, and PEG moieties at lysine 11 and lysine 18 via a conventional stepwise method. METHODS: The PEG-lipid was obtained by condensing palmitic acid derivative of epsilon-maleimido lysine with methoxy poly(ethylene glycol) amine. Under reductive conditions, the PEG-lipid readily reacted with sCT to yield the resultant compound, Mal-PL-sCT. KEY FINDINGS: Dynamic light scattering analyses suggested that Mal-PL-sCT and 2PEG-Mal-sCT exhibited robust helical structures with a high tendency to aggregate in water. Both compounds were more stable against intestinal degradation than sCT, although Mal-PL-sCT was less stable than 2PEG-Mal-sCT. However, 2PEG-Mal-sCT did not possess hypocalcaemic activity while Mal-PL-sCT retained the hypocalcaemic activity of sCT when it was subcutaneously injected in the rat model. Multiple functional groups may be conjugated to a peptide via a tri-block linker without the risk of obliterating the intrinsic bioactivity of the peptide. CONCLUSIONS: The resultant novel PEG-lipid has a potential role to optimize protein and peptide delivery.
机译:目的:本研究的目的是探索(1)合成具有化学活性三嵌段接头,ε-马来酰亚胺基赖氨酸(Mal)的新型聚乙二醇修饰的脂质(PEG-脂质,PL),以及(2)相对于对照组2PEG-Mal-sCT的结合物(Mal-PL-sCT)的生物物理特性和活性,相对于对照2PEG-Mal-sCT,后者包含与α-棕榈酰-N结合的sCT -ε-马来酰亚胺基-L-赖氨酸在半胱氨酸1和半胱氨酸7处,并且PEG部分在赖氨酸11和赖氨酸18处通过常规的逐步方法。方法:将ε-马来酰亚胺赖氨酸的棕榈酸衍生物与甲氧基聚乙二醇胺缩合得到PEG-脂质。在还原条件下,PEG-脂质很容易与sCT反应生成化合物Mal-PL-sCT。主要发现:动态光散射分析表明,Mal-PL-sCT和2PEG-Mal-sCT表现出坚固的螺旋结构,在水中极有聚集的趋势。尽管Mal-PL-sCT的稳定性不如2PEG-Mal-sCT,但两种化合物对肠道降解的稳定性均高于sCT。然而,当在大鼠模型中皮下注射时,2PEG-Mal-sCT不具有降钙活性,而Mal-PL-sCT保留了sCT的降钙活性。多个官能团可以通过三嵌段接头与肽缀合,而没有消除肽的固有生物活性的风险。结论:所得的新型PEG-脂质具有优化蛋白质和肽递送的潜在作用。

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