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使用基于CRISPR的生物传感器检测由蚊子引起的热带疾病

Detection of Tropical Diseases Caused by Mosquitoes Using CRISPR-Based Biosensors.

作者信息

Zakiyyah Salma Nur, Ibrahim Abdullahi Umar, Babiker Manal Salah, Gaffar Shabarni, Ozsoz Mehmet, Zein Muhammad Ihda H L, Hartati Yeni Wahyuni

机构信息

Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Padjadjaran, Sumedang 45363, Indonesia.

Department of Biomedical Engineering, Near East University, Mersin 10, 99010 Nicosia, Turkey.

出版信息

Trop Med Infect Dis. 2022 Oct 17;7(10):309. doi: 10.3390/tropicalmed7100309.

Abstract

Tropical diseases (TDs) are among the leading cause of mortality and fatality globally. The emergence and reemergence of TDs continue to challenge healthcare system. Several tropical diseases such as yellow fever, tuberculosis, cholera, Ebola, HIV, rotavirus, dengue, and malaria outbreaks have led to endemics and epidemics around the world, resulting in millions of deaths. The increase in climate change, migration and urbanization, overcrowding, and other factors continue to increase the spread of TDs. More cases of TDs are recorded as a result of substandard health care systems and lack of access to clean water and food. Early diagnosis of these diseases is crucial for treatment and control. Despite the advancement and development of numerous diagnosis assays, the healthcare system is still hindered by many challenges which include low sensitivity, specificity, the need of trained pathologists, the use of chemicals and a lack of point of care (POC) diagnostic. In order to address these issues, scientists have adopted the use of CRISPR/Cas systems which are gene editing technologies that mimic bacterial immune pathways. Recent advances in CRISPR-based biotechnology have significantly expanded the development of biomolecular sensors for diagnosing diseases and understanding cellular signaling pathways. The CRISPR/Cas strategy plays an excellent role in the field of biosensors. The latest developments are evolving with the specific use of CRISPR, which aims for a fast and accurate sensor system. Thus, the aim of this review is to provide concise knowledge on TDs associated with mosquitoes in terms of pathology and epidemiology as well as background knowledge on CRISPR in prokaryotes and eukaryotes. Moreover, the study overviews the application of the CRISPR/Cas system for detection of TDs associated with mosquitoes.

摘要

热带疾病是全球主要的死亡原因之一。热带疾病的出现和再次出现持续挑战着医疗保健系统。诸如黄热病、结核病、霍乱、埃博拉、艾滋病毒、轮状病毒、登革热和疟疾爆发等几种热带疾病已在世界各地导致地方病和流行病,造成数百万人死亡。气候变化、移民和城市化、过度拥挤以及其他因素的增加继续促使热带疾病传播。由于医疗保健系统不合格以及缺乏清洁水和食物,记录到的热带疾病病例更多。这些疾病的早期诊断对于治疗和控制至关重要。尽管众多诊断检测方法取得了进步和发展,但医疗保健系统仍受到许多挑战的阻碍,这些挑战包括灵敏度低、特异性差、需要训练有素的病理学家、使用化学物质以及缺乏即时检测(POC)诊断方法。为了解决这些问题,科学家们采用了CRISPR/Cas系统,这是一种模仿细菌免疫途径的基因编辑技术。基于CRISPR的生物技术的最新进展显著扩展了用于疾病诊断和理解细胞信号通路的生物分子传感器的开发。CRISPR/Cas策略在生物传感器领域发挥着出色的作用。最新进展随着CRISPR的具体应用而不断发展,其目标是建立一个快速准确的传感器系统。因此,本综述的目的是提供关于与蚊子相关的热带疾病在病理学和流行病学方面的简明知识,以及原核生物和真核生物中CRISPR的背景知识。此外,该研究概述了CRISPR/Cas系统在检测与蚊子相关的热带疾病中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7633/9611970/3771868d4305/tropicalmed-07-00309-g001.jpg

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