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用于 pH 敏感药物释放的被动肿瘤靶向的双荧光 HPMA 共聚物 II:释放速率对生物分布的影响。

Dual fluorescent HPMA copolymers for passive tumor targeting with pH-sensitive drug release II: impact of release rate on biodistribution.

机构信息

Institute of Macromolecular Chemistry AS CR, v.v.i., Heyrovský Sq. 2, 162 06 Prague 6, Czech Republic.

出版信息

J Control Release. 2013 Dec 10;172(2):504-12. doi: 10.1016/j.jconrel.2013.05.008. Epub 2013 May 19.

Abstract

In recent years, polymer drug carriers based on N-(2-hydroxypropyl)methacrylamide (HPMA) copolymers with pH-triggered drug release have shown enhanced uptake in solid tumors and excellent antitumor activity. Here, the impact of the structure of the acid-labile spacer between the drug and the polymer carrier on the biodistribution of both the drug and the carrier was studied using in vivo noninvasive multispectral optical imaging of dual fluorescently labeled HPMA copolymers. Five different spacers containing a pH-sensitive hydrazone bond were synthesized and used to combine a fluorescent model drug with a polymer backbone, conjugated with another non-releasable fluorescent dye. Two copolymers differing in polymer chain structure (linear and star-like) and molecular weight (30 and 200kDa) were used to distinguish between carriers with molecular weights above and below the limit for renal filtration. The rate of model drug release from the conjugates was determined in vitro. The biodistributions of the six most promising conjugates were investigated in vivo in athymic nude mice inoculated with human colon carcinoma xenograft. The structure of the spacer in the vicinity of the hydrazone bond significantly influenced the release rate of the model drug. The slow release rate of a pyridyl group bearing spacer resulted in a greater amount of the model drug being transported to the tumor, which was independent of the carrier structure. The results of this study emphasize the importance of careful selection of the structure and appropriate spacer when designing polymer conjugates intended for passive tumor targeting.

摘要

近年来,基于 N-(2-羟丙基)甲基丙烯酰胺(HPMA)共聚物的聚合物药物载体具有 pH 触发的药物释放特性,在实体瘤中的摄取率得到提高,并表现出优异的抗肿瘤活性。在此,我们通过对双重荧光标记的 HPMA 共聚物进行体内无创多光谱光学成像,研究了药物和聚合物载体之间的酸不稳定间隔物的结构对药物和载体的生物分布的影响。我们合成了五种不同的含有 pH 敏感腙键的间隔物,用于将荧光模型药物与聚合物主链结合,并与另一种不可释放的荧光染料缀合。我们使用两种在聚合物链结构(线性和星形)和分子量(30 和 200kDa)上存在差异的共聚物,以区分分子量高于和低于肾滤过极限的载体。我们在体外测定了结合物中模型药物的释放速率。在接种人结肠癌细胞异种移植的裸鼠体内,研究了六种最有前途的结合物的体内生物分布。腙键附近间隔物的结构显著影响了模型药物的释放速率。带有吡啶基团的间隔物的缓慢释放速率导致更多的模型药物被输送到肿瘤中,这与载体结构无关。本研究结果强调了在设计用于被动肿瘤靶向的聚合物缀合物时,仔细选择结构和适当间隔物的重要性。

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