以多糖为基础的癌症药物传递系统的最新进展:综述。

IF 4.5 3区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Chou-Yi Hsu, Omer Qutaiba B Allela, Ali M Hussein, Mohammed Ahmed Mustafa, Mandeep Kaur, Mohd Alaraj, Ali Fawzi Al-Hussainy, Usama Kadem Radi, Mohammed Ubaid, Ameer Hassan Idan, Fahad Alsaikhan, Asghar Narmani, Bagher Farhood
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引用次数: 0

摘要

癌症在全世界的发病率和死亡率都很高。虽然已经发展了几种传统的治疗癌症的方法,如手术、化疗、放疗和热疗法,但它们都有明显的缺点,导致癌症的治疗效率低下。例如,免疫原性、治疗时间长、非特异性、转移和治疗费用高被认为是化疗的主要缺点。因此,发展突破性的抑癌技术是一个根本的要求。基于多糖的药物传递系统(dds)是癌症治疗中最可靠的药物载体。多糖作为一种实用的生物材料,分为几种类型,包括壳聚糖、海藻酸盐、葡聚糖、透明质酸、环糊精、果胶等。多糖是从不同的自然资源(如草药、海洋、微生物等)中提取的。多糖的潜在特性使其成为癌症部位治疗药物的可靠候选者;纯化简单、易于修饰和功能化、亲水性、血清稳定性、适宜的载药能力、生物相容性、生物利用度、生物降解性以及刺激反应性和药物缓释方式是这些生物聚合物的重要特点。本文综述了多糖类dss在制药科学和癌症治疗中的实际应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances in polysaccharide-based drug delivery systems for cancer therapy: a comprehensive review.

Cancer has a high rate of incidence and mortality throughout the world. Although several conventional approaches have been developed for the treatment of cancer, such as surgery, chemotherapy, radiotherapy and thermal therapy, they have remarkable disadvantages which result in inefficient treatment of cancer. For example, immunogenicity, prolonged treatment, non-specificity, metastasis and high cost of treatment, are considered as the major drawbacks of chemotherapy. Therefore, there is a fundamental requirement for the development of breakthrough technologies for cancer suppression. Polysaccharide-based drug delivery systems (DDSs) are the most reliable drug carriers for cancer therapy. Polysaccharides, as a kind of practical biomaterials, are divided into several types, including chitosan, alginates, dextran, hyaluronic acid, cyclodextrin, pectin, etc. Polysaccharides are extracted from different natural resources (like herbal, marine, microorganisms, etc.). The potential features of polysaccharides have made them reliable candidates for therapeutics delivery to cancer sites; the simple purification, ease of modification and functionalization, hydrophilicity, serum stability, appropriate drug loading capacity, biocompatibility, bioavailability, biodegradability and stimuli-responsive and sustained drug release manner are considerable aspects of these biopolymers. This review highlights the practical applications of polysaccharides-based DDSs in pharmaceutical science and cancer therapy.

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来源期刊
Artificial Cells, Nanomedicine, and Biotechnology
Artificial Cells, Nanomedicine, and Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-ENGINEERING, BIOMEDICAL
CiteScore
10.90
自引率
0.00%
发文量
48
审稿时长
20 weeks
期刊介绍: Artificial Cells, Nanomedicine and Biotechnology covers the frontiers of interdisciplinary research and application, combining artificial cells, nanotechnology, nanobiotechnology, biotechnology, molecular biology, bioencapsulation, novel carriers, stem cells and tissue engineering. Emphasis is on basic research, applied research, and clinical and industrial applications of the following topics:artificial cellsblood substitutes and oxygen therapeuticsnanotechnology, nanobiotecnology, nanomedicinetissue engineeringstem cellsbioencapsulationmicroencapsulation and nanoencapsulationmicroparticles and nanoparticlesliposomescell therapy and gene therapyenzyme therapydrug delivery systemsbiodegradable and biocompatible polymers for scaffolds and carriersbiosensorsimmobilized enzymes and their usesother biotechnological and nanobiotechnological approachesRapid progress in modern research cannot be carried out in isolation and is based on the combined use of the different novel approaches. The interdisciplinary research involving novel approaches, as discussed above, has revolutionized this field resulting in rapid developments. This journal serves to bring these different, modern and futuristic approaches together for the academic, clinical and industrial communities to allow for even greater developments of this highly interdisciplinary area.
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