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用于解释层流植入物体外重组人生长激素释放的数学模型。

A mathematical model for interpreting in vitro rhGH release from laminar implants.

作者信息

Santoveña A, García J T, Oliva A, Llabrés M, Fariña J B

机构信息

Departamento de Ingeniería Química y Tecnología Farmacéutica, Facultad de Farmacia, Universidad de La Laguna, 38200 La Laguna, Tenerife, Spain.

出版信息

Int J Pharm. 2006 Feb 17;309(1-2):38-43. doi: 10.1016/j.ijpharm.2005.10.045. Epub 2006 Jan 10.

Abstract

Recombinant human growth hormone (rhGH), used mainly for the treatment of growth hormone deficiency in children, requires daily subcutaneous injections. The use of controlled release formulations with appropriate rhGH release kinetics reduces the frequency of medication, improving patient compliance and quality of life. Biodegradable implants are a valid alternative, offering the feasibility of a regular release rate after administering a single dose, though it exists the slight disadvantage of a very minor surgical operation. Three laminar implant formulations (F(1), F(2) and F(3)) were produced by different manufacture procedures using solvent-casting techniques with the same copoly(D,L-lactic) glycolic acid (PLGA) polymer (Mw=48 kDa). A correlation in vitro between polymer matrix degradation and drug release rate from these formulations was found and a mathematical model was developed to interpret this. This model was applied to each formulation. The obtained results where explained in terms of manufacture parameters with the aim of elucidate whether drug release only occurs by diffusion or erosion, or by a combination of both mechanisms. Controlling the manufacture method and the resultant changes in polymer structure facilitates a suitable rhGH release profile for different rhGH deficiency treatments.

摘要

重组人生长激素(rhGH)主要用于治疗儿童生长激素缺乏症,需要每日皮下注射。使用具有适当rhGH释放动力学的控释制剂可减少用药频率,提高患者的依从性和生活质量。可生物降解植入物是一种有效的替代方法,单次给药后能实现药物的持续释放,不过存在需要进行非常小的外科手术这一轻微缺点。通过不同的制造工艺,采用溶剂浇铸技术,使用相同的聚(D,L-乳酸)乙醇酸共聚物(PLGA)聚合物(Mw = 48 kDa)制备了三种层状植入物制剂(F(1)、F(2)和F(3))。发现了这些制剂的聚合物基质降解与药物释放速率之间的体外相关性,并建立了一个数学模型来解释这一现象。该模型应用于每种制剂。从制造参数的角度对所得结果进行了解释,目的是阐明药物释放是仅通过扩散或侵蚀发生,还是通过两种机制的组合发生。控制制造方法以及聚合物结构由此产生的变化,有助于为不同的rhGH缺乏症治疗提供合适的rhGH释放曲线。

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