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长循环、pH 敏感脂质体与长循环、非 pH 敏感脂质体作为肿瘤识别的递药系统。

Long-circulating, pH-sensitive liposomes versus long-circulating, non-pH-sensitive liposomes as a delivery system for tumor identification.

机构信息

Faculdade de Farmácia, Universidade Federal de Minas Gerais, Av. AntOnio Carlos, 6627, 31279-901, Belo Horizonte, Minas Gerais, Brazil.

出版信息

J Biomed Nanotechnol. 2013 Sep;9(9):1636-43. doi: 10.1166/jbn.2013.1649.

Abstract

Bombesin (BBN) is a tetradecapeptide that binds specifically to gastrin-releasing peptide receptors in humans. Several forms of cancer, including lung, prostate, breast, and colon over-express receptors for bombesin-like peptides. Therefore, radiolabeled bombesin analogs might be useful for tumor identification. Nevertheless, it is well known that higher tumor uptake can yield images in higher quality. Hence, drug delivery systems, such as liposomes, can be used to achieve a higher concentration of radiotracer in tumor site, and also improve the radiotracer stability, since peptides can suffer easily degradation in vivo by natural plasma and tissue peptides. In this paper, we prepared long-circulating, pH-sensitive liposomes and long-circulation, non-pH sensitive liposomes. Both formulations were able to encapsulate the radiolabeled bombesin derivative (99mTc-BBN(7_14)), and also showing high in vitro stability. Biodistribution studies were performed in Ehrlich tumor bearing-mice to compare the ability of pH-sensitive and non-pH sensitive liposomes to deliver 99mTc-BBN(7_14) to tumor site. Results showed higher tumor uptake (2-fold) when pH-sensitive liposomes were used, suggesting that these vesicles can facilitate the access to the tumor by releasing the diagnostic agent into the ideal area. As a result, tumor-to-muscle ratio achieved with pH-sensitive liposomes was higher than that obtained with non-pH-sensitive formulation. In addition, scintigraphic images for pH-sensitive liposomes showed evident tumor uptake, corroborating with biodistribution data. Therefore, the results presented in this paper suggest that pH-sensitive liposomes are able to deliver more efficiently the radiolabeled bombesin analog. This finding poses a new possibility to improve images quality, since the tumor-to-muscle ratio was strongly enhanced.

摘要

蛙皮素(BBN)是一种十四肽,它能特异性地与人类胃泌素释放肽受体结合。包括肺癌、前列腺癌、乳腺癌和结肠癌在内的几种癌症过度表达蛙皮素样肽的受体。因此,放射性标记的蛙皮素类似物可能对肿瘤识别有用。然而,众所周知,更高的肿瘤摄取可以产生更高质量的图像。因此,可以使用药物递送系统(如脂质体)来实现肿瘤部位的放射性示踪剂更高浓度,并且提高放射性示踪剂的稳定性,因为肽在体内很容易被天然血浆和组织肽降解。在本文中,我们制备了长循环、pH 敏感的脂质体和长循环、非 pH 敏感的脂质体。这两种制剂都能够包封放射性标记的蛙皮素衍生物(99mTc-BBN(7_14)),并且体外稳定性也很高。通过在荷 Ehrlich 肿瘤的小鼠中进行生物分布研究,比较了 pH 敏感和非 pH 敏感脂质体将 99mTc-BBN(7_14)递送到肿瘤部位的能力。结果表明,使用 pH 敏感脂质体时肿瘤摄取更高(2 倍),这表明这些囊泡可以通过将诊断剂释放到理想区域来促进对肿瘤的进入。因此,pH 敏感脂质体的肿瘤与肌肉比值高于非 pH 敏感制剂。此外,pH 敏感脂质体的闪烁成像显示出明显的肿瘤摄取,与生物分布数据相符。因此,本文的结果表明,pH 敏感脂质体能够更有效地递送电放射性标记的蛙皮素类似物。这一发现为提高图像质量提供了新的可能性,因为肿瘤与肌肉的比值得到了极大的增强。

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