探索黑腹果蝇作为模式生物在生物医学研究中的多功能性:综述。

IF 2.4 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Fly Pub Date : 2025-12-01 Epub Date: 2024-12-25 DOI:10.1080/19336934.2024.2420453
Ayomide Victor Atoki, Patrick Maduabuchi Aja, Tijjani Salihu Shinkafi, Erick Nyakundi Ondari, Adekunle Ismahil Adeniyi, Ilemobayo Victor Fasogbon, Reuben Samson Dangana, Umar Uthman Shehu, Akinpelumi Akin-Adewumi
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引用次数: 0

摘要

黑腹果蝇是一种高度通用的模式生物,它深刻地推进了我们对人类疾病的理解。超过60%的果蝇基因与人类同源,果蝇提供了一个无价的系统来模拟广泛的病理,包括神经退行性疾病,癌症,代谢疾病,以及心脏和肌肉疾病。这篇综述强调了利用果蝇进行疾病建模的关键进展,强调了已经改变了这一领域研究的遗传工具。GAL4/UAS系统、RNA干扰(RNAi)和CRISPR-Cas9等技术已经实现了精确的基因操作,CRISPR-Cas9允许将人类疾病突变引入同源果蝇基因。这些方法对疾病机制产生了重要的见解,确定了新的治疗靶点,并促进了药物筛选和毒理学研究。文章是根据其相关性、影响和对该领域的贡献来选择的,特别侧重于对疾病机制或治疗策略提供创新观点的研究。我们的发现强调了果蝇在研究复杂的人类疾病中的核心作用,强调了它与人类的遗传相似性以及它在模拟阿尔茨海默病、帕金森病和癌症等疾病方面的有效性。这篇综述重申了果蝇作为一种模式生物的关键作用,强调了其推动未来研究和治疗进步的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the versatility of Drosophila melanogaster as a model organism in biomedical research: a comprehensive review.

Drosophila melanogaster is a highly versatile model organism that has profoundly advanced our understanding of human diseases. With more than 60% of its genes having human homologs, Drosophila provides an invaluable system for modelling a wide range of pathologies, including neurodegenerative disorders, cancer, metabolic diseases, as well as cardiac and muscular conditions. This review highlights key developments in utilizing Drosophila for disease modelling, emphasizing the genetic tools that have transformed research in this field. Technologies such as the GAL4/UAS system, RNA interference (RNAi) and CRISPR-Cas9 have enabled precise genetic manipulation, with CRISPR-Cas9 allowing for the introduction of human disease mutations into orthologous Drosophila genes. These approaches have yielded critical insights into disease mechanisms, identified novel therapeutic targets and facilitated both drug screening and toxicological studies. Articles were selected based on their relevance, impact and contribution to the field, with a particular focus on studies offering innovative perspectives on disease mechanisms or therapeutic strategies. Our findings emphasize the central role of Drosophila in studying complex human diseases, underscoring its genetic similarities to humans and its effectiveness in modelling conditions such as Alzheimer's disease, Parkinson's disease and cancer. This review reaffirms Drosophila's critical role as a model organism, highlighting its potential to drive future research and therapeutic advancements.

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来源期刊
Fly
Fly 生物-生化与分子生物学
CiteScore
2.90
自引率
0.00%
发文量
17
审稿时长
>12 weeks
期刊介绍: Fly is the first international peer-reviewed journal to focus on Drosophila research. Fly covers a broad range of biological sub-disciplines, ranging from developmental biology and organogenesis to sensory neurobiology, circadian rhythm and learning and memory, to sex determination, evolutionary biology and speciation. We strive to become the “to go” resource for every researcher working with Drosophila by providing a forum where the specific interests of the Drosophila community can be discussed. With the advance of molecular technologies that enable researchers to manipulate genes and their functions in many other organisms, Fly is now also publishing papers that use other insect model systems used to investigate important biological questions. Fly offers a variety of papers, including Original Research Articles, Methods and Technical Advances, Brief Communications, Reviews and Meeting Reports. In addition, Fly also features two unconventional types of contributions, Counterpoints and Extra View articles. Counterpoints are opinion pieces that critically discuss controversial papers questioning current paradigms, whether justified or not. Extra View articles, which generally are solicited by Fly editors, provide authors of important forthcoming papers published elsewhere an opportunity to expand on their original findings and discuss the broader impact of their discovery. Extra View authors are strongly encouraged to complement their published observations with additional data not included in the original paper or acquired subsequently.
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