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Structural and Hydrodynamic Analysis of a Novel Drug Delivery Vector: ELPV5G3A2-150

机译:一种新型药物传递载体:ELP V5G3A2-150的结构和流体力学分析

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摘要

The therapeutic potential of elastin-like polypeptide (ELP) conjugated to therapeutic compounds is currently being investigated as an approach to target drugs to solid tumors. ELPs are hydrophobic polymers that are soluble at low temperatures and cooperatively aggregate above a transition temperature (TT), allowing for thermal targeting of covalently attached drugs. They have been shown to cooperatively transition from a disordered structure to a repeating type II β-turn structure, forming a β-spiral above the TT. Here we present biophysical measurements of the structural, thermodynamic, and hydrodynamic properties of a specific ELP being investigated for drug delivery, ELP[V5G3A2-150]. We examine the biophysical properties below and above the TT to understand and predict the therapeutic potential of ELP-drug conjugates. We observed that below the TT, ELP[V5G3A2-150] is soluble, with an extended conformation consisting of both random coil and heterogeneous β structures. Sedimentation velocity experiments indicate that ELP[V5G3A2-150] undergoes weak self-association with increasing temperature, and above the TT the hydrophobic effect drives aggregation entropically. These experiments also reveal a previously unreported temperature-dependent critical concentration (Cc) that resembles a solubility constant. Labeling ELP[V5G3A2-150] with fluorescein lowers the TT by 3.5°C at 20 μM, whereas ELP[V5G3A2-150] dissolution in physiological media (fetal bovine serum) increases the TT by ∼2.2°C.
机译:目前正在研究与治疗化合物缀合的弹性蛋白样多肽(ELP)的治疗潜力,作为将药物靶向实体瘤的方法。 ELP是疏水性聚合物,可在低温下溶解并在高于转变温度(TT)的情况下协同聚集,从而可以热靶向共价连接的药物。已经显示它们从无序结构协同转变为重复的II型β-转弯结构,在TT上方形成β-螺旋。在这里,我们介绍了正在研究用于药物输送的特定ELP ELP [V5G3A2-150]的结构,热力学和流体力学特性的生物物理测量。我们研究了TT上下的生物物理特性,以了解和预测ELP-药物偶联物的治疗潜力。我们观察到在TT以下,ELP [V5G3A2-150]是可溶的,具有由无规卷曲和异质β结构组成的扩展构象。沉积速度实验表明,ELP [V5G3A2-150]随温度升高而发生弱的自缔合,而在TT以上,疏水作用会熵地驱动聚集。这些实验还揭示了以前未报告的与温度相关的临界浓度(Cc),类似于溶解度常数。用荧光素标记ELP [V5G3A 2 -150]将T T 在20μM下降低3.5°C,而ELP [V 5 G < sub> 3 A 2 -150]在生理介质(胎牛血清)中的溶解会使T T 升高约2.2°C。

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