Application of experimental design in preparation of nanoliposomes containing hyaluronidase.

Journal of drug delivery Pub Date : 2014-01-01 Epub Date: 2014-09-09 DOI:10.1155/2014/948650
Narayanan Kasinathan, Subrahmanyam Mallikarjuna Volety, Venkata Rao Josyula
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引用次数: 10

Abstract

Hyaluronidase is an enzyme that catalyzes breakdown of hyaluronic acid. This property is utilized for hypodermoclysis and for treating extravasation injury. Hyaluronidase is further studied for possible application as an adjuvant for increasing the efficacy of other drugs. Development of suitable carrier system for hyaluronidase would help in coadministration of other drugs. In the present study, the hyaluronidase was encapsulated in liposomes. The effect of variables, namely, phosphatidylcholine (PC), cholesterol, temperature during film formation (T 1), and speed of rotation of the flask during film formation (SPR) on percentage of protein encapsulation, was first analyzed using factorial design. The study showed that level of phosphatidylcholine had the maximum effect on the outcome. The effect of interaction of PC and SPR required for preparation of nanoliposomes was identified by central composite design (CCD). The dependent variables were percentage protein encapsulation, particle size, and zeta potential. The study showed that ideal conditions for production of hyaluronidase loaded nanoliposomes are PC-140 mg and cholesterol 1/5th of PC when the SPR is 150 rpm and T 1 is 50°C.

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实验设计在制备含透明质酸酶纳米脂质体中的应用。
透明质酸酶是一种催化透明质酸分解的酶。这一特性被用于皮下粘连和治疗外渗损伤。透明质酸酶还在进一步研究其作为辅助药物提高其他药物疗效的可能性。开发合适的透明质酸酶载体系统将有助于其他药物的联合给药。在本研究中,透明质酸酶被包裹在脂质体中。磷脂酰胆碱(PC)、胆固醇、成膜时温度(t1)和成膜时烧瓶旋转速度(SPR)等变量对蛋白质包封率的影响首先采用因子设计进行分析。研究表明,磷脂酰胆碱水平对预后的影响最大。采用中心复合设计(CCD)确定了制备纳米脂质体所需的聚羧酸酯(PC)和聚羧酸酯(SPR)相互作用的影响。因变量为蛋白质包封率、颗粒大小和zeta电位。研究表明,当SPR为150 rpm,温度为50°C时,产载透明质酸酶纳米脂质体的理想条件为PC-140 mg,胆固醇为PC的1/5。
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Journal of drug delivery
Journal of drug delivery PHARMACOLOGY & PHARMACY-
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