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首页> 外文期刊>Chemical Engineering Science >Chemotherapeutic engineering: Application and further development of chemical engineering principles for chemotherapy of cancer and other diseases [Review]
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Chemotherapeutic engineering: Application and further development of chemical engineering principles for chemotherapy of cancer and other diseases [Review]

机译:化学治疗工程:化学工程原理在癌症和其他疾病化学疗法中的应用和进一步发展[综述]

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摘要

This review defines chemotherapeutic engineering as an engineering discipline that applies and further develops chemical engineering principles, techniques and devices for chemotherapy of cancer and other diseases. It provides new challenges as well as new opportunities for chemical engineering. Chemical engineering has substantially changed the human civilization through its services and products to improve the quality of life for human being. It is now time for chemical engineering to contribute to the most important aspect of the quality of life-human health care. Cancer and cardiovascular diseases are the leading causes for deaths. Chemotherapy is one of the most important treatments currently available for cancer and other diseases such as cardiovascular diseases. The present status of chemotherapy is far from being satisfactory. Its efficacy is limited and patients have to suffer from serious side effects, some of which are life-threatening. Chemotherapeutic engineering is emerging to help solving the problems in chemotherapy and to eventually develop an ideal way to conduct chemotherapy with the best efficacy and the least side effects. This review gives, from an engineering point of view, brief introductions to cancer and cancer treatment, chemotherapy and the problems involved in chemotherapy, and the possible roles of chemical engineering in solving the problems involved. Progress in developing various controlled and targeted drug delivery systems is reviewed with an emphasis on nanoparticles of biodegradable polymers and lipid bilayer vesicles (liposomes). Preparation, characterization, in vitro release, cell line experiments and animal testing of drug-loaded polymeric nanoparticles are described with paclitaxel as a prototype drug, which is one of the best anticancer drugs found in nature. A novel drug delivery system, liposomes-in-microspheres, is used as an example for possible combinations of the existing polymer- and lipid-based delivery systems. Research of molecular interactions between the drug and the cell membrane is also reviewed, with the lipid monolayer at the air-water or oil-water interface and bilayer vesicles as models for the cell membrane. Finally, mathematical modeling in chemotherapeutic engineering is discussed with typical examples in the literature. This review is a short introduction of chemotherapeutic engineering to chemical engineers, biomedical engineers, other engineers, clinical oncologists, and pharmaceutical scientists, who are interested in developing new dosage forms of drugs for chemotherapy of cancer and other diseases with the best efficacy and the least side effects. (C) 2003 Elsevier Ltd. All rights reserved. [References: 331]
机译:这篇综述将化学治疗工程定义为一门工程学科,该学科应用并进一步发展了化学工程原理,技术和设备,用于癌症和其他疾病的化学疗法。它为化学工程带来了新的挑战和新的机遇。化学工程通过其服务和产品极大地改变了人类文明,从而改善了人类的生活质量。现在是化学工程为人类生命保健质量的最重要方面做出贡献的时候了。癌症和心血管疾病是导致死亡的主要原因。化学疗法是目前可用于治疗癌症和其他疾病(如心血管疾病)的最重要的治疗方法之一。化疗的现状远远不能令人满意。它的功效是有限的,患者必须遭受严重的副作用,其中一些生命危险。化学治疗工程学正在出现,以帮助解决化学疗法中的问题,并最终开发出一种以最佳疗效和最小副作用进行化学疗法的理想方法。这篇综述从工程学的角度简要介绍了癌症和癌症治疗,化学疗法以及化学疗法中涉及的问题,以及化学工程在解决相关问题中的可能作用。综述了开发各种可控和靶向药物递送系统的进展,重点是可生物降解的聚合物和脂质双层囊泡(脂质体)的纳米颗粒。紫杉醇作为原型药物描述了载有药物的聚合物纳米颗粒的制备,表征,体外释放,细胞系实验和动物试验,紫杉醇是自然界中发现的最好的抗癌药物之一。一种新颖的药物递送系统,微球脂质体,被用作现有基于聚合物和脂质的递送系统可能组合的例子。还审查了药物与细胞膜之间的分子相互作用的研究,以空气-水或油-水界面处的脂质单层和双层囊泡作为细胞膜的模型。最后,通过文献中的典型例子讨论了化学治疗工程中的数学建模。这篇评论是化学工程师,化学工程师,生物医学工程师,其他工程师,临床肿瘤学家和药学科学家的简短介绍,他们对开发新的剂型用于癌症和其他疾病化疗的药物具有最高的功效,且最少副作用。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:331]

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