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脂质体包裹药物的淋巴转运:腹腔注射后脂质体大小的影响

Lymphatic transport of liposome-encapsulated agents: effects of liposome size following intraperitoneal administration.

作者信息

Hirano K, Hunt C A

出版信息

J Pharm Sci. 1985 Sep;74(9):915-21. doi: 10.1002/jps.2600740902.

DOI:10.1002/jps.2600740902
PMID:4067845
Abstract

Liposomal encapsulation can limit passage of a drug from a peritoneal administration site to blood, while enhancing lymphatic transport. We evaluated the effects of liposome size on lymphatic transport after intraperitoneal administration. Liposomes tested had mean diameters of either 0.72, 0.46, 0.17, or 0.048 micron and identical compositions. [14C]Sucrose was the aqueous space marker (model drug). Doses were given to thoracic-duct-cannulated rats. The subsequent 0-5 h time-course of carbon-14 was quantified in thoracic lymph, several lymph nodes, blood, and urine. Calibration studies indicated a maximum of approximately 30% of the absorbed dose could be collected in thoracic lymph. Carbon-14 levels in the various nodes covered a 1000-fold range, and relatively high levels were observed in the left mediastinal, parathymic, cisternal, and renal lymph nodes. Liposome stability in vivo and in vitro increased with decreasing size. Absorption from the peritoneal cavity was independent of size. The smallest liposomes were collected in lymph with little lymph node retention. The largest liposomes were retained most by lymph nodes, and would be the best prototypical carrier of the group if increased therapeutic availability within both lymph and lymph nodes is desired. The results implicate other, unexplored physical and physiological variables as potentially of equal importance.

摘要

脂质体包封可限制药物从腹膜给药部位进入血液,同时增强淋巴转运。我们评估了脂质体大小对腹膜内给药后淋巴转运的影响。所测试的脂质体平均直径分别为0.72、0.46、0.17或0.048微米,且组成相同。[14C]蔗糖作为水相空间标记物(模型药物)。给胸导管插管的大鼠给药。随后在胸导管淋巴液、多个淋巴结、血液和尿液中对0 - 5小时内碳-14的时间进程进行了定量分析。校准研究表明,最多约30%的吸收剂量可在胸导管淋巴液中收集到。各个淋巴结中的碳-14水平范围达1000倍,在左纵隔、胸腺旁、胸导管和肾淋巴结中观察到相对较高的水平。脂质体在体内和体外的稳定性随尺寸减小而增加。从腹腔的吸收与尺寸无关。最小的脂质体在淋巴液中被收集,在淋巴结中保留较少。最大的脂质体在淋巴结中保留最多,如果期望在淋巴液和淋巴结中均增加治疗可用性,那么它将是该组中最佳的原型载体。结果表明其他未探索的物理和生理变量可能具有同等重要性。

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