Phage therapy and its role in cancer treatment and control.

IF 3.1 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Heba Ibrahim Abd El-Moaty, Ahmed S Doghish, Hebatallah Ahmed Mohamed Moustafa, Wagiha S Elkalla, Ghadir A Sayed, Nourhan H Elshami, Sherif S Abdel Mageed, Osama A Mohammed, Mahmoud A Elrebehy, Kareem AlFarsi, Amr M Abdelfatah, Aly M Waseem, Ahmed O Abdulkader, Rabab S Hamad, Akram N Salah
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引用次数: 0

Abstract

Cancer is very dangerous and has a high death rate around the world. This rate is expected to rise even more in the next few years. Chemotherapy and radiation therapy are two examples of current treatment choices. However, they have some problems, such as side effects, being less effective overall, being expensive, and not being widely available. A rising demand exists for alternative therapies that can specifically target cancer cells while minimizing adverse effects. Phage has a dual function as both a diagnostic and therapeutic instrument. This phage has the potential to serve as a suitable recombinant medicine, potentially replacing current labor-intensive, high-capital therapies that often lead to failure or severe adverse effects. Identifying tumor-homing peptides constitutes one of the most substantial hurdles. This therapeutic approach is crucial in tumor treatment, demonstrating remarkable precision and efficacy regardless of the target site. Phages, which target bacteria but not eukaryotic cells, have arisen as viable cancer therapies owing to their distinctive attributes, such as selectivity and simplicity of genetic modification. Engineered phages have the potential to revolutionize cancer therapy by selectively targeting malignant cells while preserving healthy ones. Bacteriophages are presently utilized extensively in several fields of science and medicine, with cancer therapy being the most compelling application. While challenges remain, especially in identifying the most effective tumor-targeting peptides, research increasingly supports the safety and effectiveness of phage-based therapies in cancer treatment. This review highlights recent progress and ongoing challenges in the use of phage therapy for cancer.

噬菌体疗法及其在癌症治疗和控制中的作用。
癌症是非常危险的,在世界范围内具有很高的死亡率。预计这一比率在未来几年还会进一步上升。化疗和放射治疗是目前治疗选择的两个例子。然而,它们也存在一些问题,比如副作用、总体效果较差、价格昂贵、不能广泛使用。人们对替代疗法的需求不断增加,这种疗法可以专门针对癌细胞,同时将副作用降到最低。噬菌体具有诊断和治疗双重功能。这种噬菌体有潜力作为一种合适的重组药物,有可能取代目前劳动密集型、高资本的治疗方法,这些治疗方法往往导致失败或严重的不良反应。确定肿瘤归巢肽是最大的障碍之一。这种治疗方法在肿瘤治疗中至关重要,无论靶部位如何,都表现出显著的准确性和有效性。噬菌体以细菌而非真核细胞为目标,由于其独特的特性,如选择性和基因修饰的简单性,已成为可行的癌症治疗方法。工程噬菌体有可能在保留健康细胞的同时选择性地靶向恶性细胞,从而彻底改变癌症治疗。噬菌体目前广泛应用于科学和医学的几个领域,其中最引人注目的应用是癌症治疗。尽管挑战依然存在,特别是在确定最有效的肿瘤靶向肽方面,但越来越多的研究支持基于噬菌体的治疗在癌症治疗中的安全性和有效性。本文综述了噬菌体治疗癌症的最新进展和面临的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Folia microbiologica
Folia microbiologica 工程技术-生物工程与应用微生物
CiteScore
5.80
自引率
0.00%
发文量
82
审稿时长
6-12 weeks
期刊介绍: Unlike journals which specialize ever more narrowly, Folia Microbiologica (FM) takes an open approach that spans general, soil, medical and industrial microbiology, plus some branches of immunology. This English-language journal publishes original papers, reviews and mini-reviews, short communications and book reviews. The coverage includes cutting-edge methods and promising new topics, as well as studies using established methods that exhibit promise in practical applications such as medicine, animal husbandry and more. The coverage of FM is expanding beyond Central and Eastern Europe, with a growing proportion of its contents contributed by international authors.
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