Multivesicular liposomal depot system for sustained delivery of risperidone: development, characterization, and toxicity assessment

脂质体 药理学 药物输送 生物相容性 析因实验 磷脂 化学 医学 输送系统 生物医学工程 色谱法 材料科学 纳米技术 数学 生物化学 有机化学 统计
作者
Sonia Alavi,Mohammad A. Mahjoob,Azadeh Haeri,Farshad H. Shirazi,Zahra Abbasian,Simin Dadashzadeh
出处
期刊:Drug Development and Industrial Pharmacy [Taylor & Francis]
卷期号:47 (8): 1290-1301 被引量:5
标识
DOI:10.1080/03639045.2021.1989454
摘要

Considering the limitations of conventional risperidone (RSP) therapies, the present research characterizes the usefulness of multivesicular liposomes (MVLs) as an efficient controlled-release carrier for this widely used antipsychotic drug, to be employed for the treatment of schizophrenia.A 23 full factorial design based on three independent variables was implemented to plan the experiments: the molar ratios of lipid to the drug, triolein to phospholipid, and cholesterol to phospholipid. The impacts of these parameters on the risperidone encapsulation efficiency and its release pattern within the first 24 and 48 h were investigated as dependent variables. Then, the optimized liposomal system was further in-depth analyzed in terms of size, morphological and structural features, release profile over 15 days, biocompatibility, and stability.Optimized formulation parameters gave rise to MVLs possessing a spherical morphology with a median diameter of about 8 μm, a relatively narrow size distribution (span value of 1.49), and an encapsulation efficiency of 57.6%. These carriers not only exhibited a sustained-release behavior in vitro, lasting until the end of the 15 days but also underwent a negligible change in their size and RSP incorporation over two months at refrigerator condition. Furthermore, in vitro cytotoxicity and hemolysis assessments revealed that the optimized MVL formulation is biocompatible.This study revealed the potential of MVLs as a promising system for the delivery of RSP and could open a new vista for the successful management of schizophrenia.
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