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Novel methods of antiepileptic drug delivery - Polymer-based implants

机译:抗癫痫药物释放的新方法-基于聚合物的植入物

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Epilepsy is a neurological disorder characterised by spontaneous seizures. Over one third of patients receive insufficient benefit from oral anti-epileptic drug (AED) therapy, and continue to experience seizures whilst on medication. Epilepsy researchers are consequently seeking new ways to deliver AEDs directly to the seizure focus in the brain in order to deliver higher, more effective doses to the seizure focus whilst bypassing the remainder of the brain and body to prevent side effects. The focus of this review will be polymer-based implants, which are polymeric devices loaded with AED that are designed for implantation at the seizure focus in order to achieve gradual, continuous release of AED direct into the region of the brain responsible for seizures. Polymer-based implants produced for epilepsy to date are based on a range of polymers, both biodegradable and non-biodegradable, and range from simple materials development studies through to investigations of implants in animal models of seizures and epilepsy, with varying degrees of success. This review describes the range of methods employed to manufacture polymer-based implants and compares their advantages and potential appeal to industry, and describes and compares the results and successes of polymer-based materials and devices produced to date for the treatment of epilepsy. We also discuss disadvantages and hurdles to be overcome in the field, and describe our predictions for advances to be made in the field in the coming decade.
机译:癫痫病是一种以自发性癫痫为特征的神经系统疾病。超过三分之一的患者无法从口服抗癫痫药(AED)疗法中受益,并且在服药期间会继续发作。因此,癫痫研究人员正在寻找新方法,将AED直接传递到大脑的癫痫病灶,以便向癫痫病灶提供更高,更有效的剂量,同时绕过大脑和身体的其余部分以防止副作用。这篇综述的重点将是基于聚合物的植入物,该聚合物植入物是装有AED的聚合物设备,设计用于在癫痫发作时植入,以实现AED逐渐,连续地直接释放到负责癫痫发作的大脑区域。迄今为止,生产用于癫痫的基于聚合物的植入物是基于一系列可生物降解和不可生物降解的聚合物,从简单的材料开发研究一直到癫痫和癫痫动物模型的植入物研究,均取得了不同程度的成功。这篇综述描述了用于制造基于聚合物的植入物的方法范围,并比较了其优势和对工业的潜在吸引力,并描述并比较了迄今为止生产的用于治疗癫痫的基于聚合物的材料和装置的结果和成功。我们还将讨论该领域中要克服的缺点和障碍,并描述我们对未来十年中该领域将取得进展的预测。

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