首页> 外文期刊>JALA: Journal of the Association for Laboratory Automation >Modeling Mass Transfer from Carmustine-Loaded Polymeric Implants for Malignant Gliomas
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Modeling Mass Transfer from Carmustine-Loaded Polymeric Implants for Malignant Gliomas

机译:从装载卡莫司汀的聚合物植入物为恶性胶质瘤传质建模。

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Significant advances in the encapsulation and release of drugs from degradable polymers have led to the Food and Drug Administration approval of Gliadel wafers for controlled local delivery of the chemotherapeutic drug carmustine to high-grade gliomas following surgical resection. Due to the localized nature of the delivery method, no pharmacokinetic measurements have been taken in humans. Rather, pharmacokinetic studies in animals and associated modeling have indicated the capability of carmustine to be delivered in high concentrations within millimeters from the implant site over approximately 5 days. Mathematical models have indicated that diffusion has a primary role in transport, which may be complemented by enhanced fluid convection from postsurgical edema in the initial 3 days following implantation. Carmustine's penetration distance is also presumably limited by its lipophilicity and permeability in the capillaries. This review discusses the mathematical models that have been used to predict the release and distribution of carmustine from a polymeric implant. These models provide a theoretical framework for greater understanding of systems for localized drug delivery while highlighting factors that should be considered in clinical applications. In effect, Gliadel wafers and similar drug delivery implants can be optimized with reduction in required time and resources with such a quantitative and integrative approach.
机译:药物从可降解聚合物的封装和释放方面的重大进展已导致食品药品监督管理局批准了Gliadel晶片,可用于在手术切除后控制将化疗药物卡莫司汀局部递送至高级神经胶质瘤。由于递送方法的局部性质,尚未在人体中进行药代动力学测量。相反,在动物中进行的药代动力学研究及相关模型表明,卡莫司汀能够在大约5天内以高浓度从植入部位以毫米为单位进行输送。数学模型表明,扩散在运输中起主要作用,在植入后的最初三天内,可能会因术后水肿引起的流体对流增强而得到补充。卡莫斯汀的渗透距离也可能受其亲脂性和毛细血管渗透性的限制。这篇评论讨论了数学模型,该数学模型已用于预测聚合物植入物中卡莫司汀的释放和分布。这些模型为进一步了解局部药物输送系统提供了理论框架,同时强调了在临床应用中应考虑的因素。实际上,通过这种定量和整合的方法,可以通过减少所需的时间和资源来优化Gliadel晶圆和类似的药物输送植入物。

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