Leveraging innovative diagnostics as a tool to contain superbugs

Ngozi J. Anyaegbunam, Kenneth Emenike Okpe, Aisha Bisola Bello, Theophilus Izuchukwu Ajanaobionye, Chukwuma Christian Mgboji, Aanuoluwapo Olonade, Zikora Kizito Glory Anyaegbunam, Ifeanyi Elibe Mba
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Abstract

The evolutionary adaptation of pathogens to biological materials has led to an upsurge in drug-resistant superbugs that significantly threaten public health. Treating most infections is an uphill task, especially those associated with multi-drug-resistant pathogens, biofilm formation, persister cells, and pathogens that have acquired robust colonization and immune evasion mechanisms. Innovative diagnostic solutions are crucial for identifying and understanding these pathogens, initiating efficient treatment regimens, and curtailing their spread. While next-generation sequencing has proven invaluable in diagnosis over the years, the most glaring drawbacks must be addressed quickly. Many promising pathogen-associated and host biomarkers hold promise, but their sensitivity and specificity remain questionable. The integration of CRISPR-Cas9 enrichment with nanopore sequencing shows promise in rapid bacterial diagnosis from blood samples. Moreover, machine learning and artificial intelligence are proving indispensable in diagnosing pathogens. However, despite renewed efforts from all quarters to improve diagnosis, accelerated bacterial diagnosis, especially in Africa, remains a mystery to this day. In this review, we discuss current and emerging diagnostic approaches, pinpointing the limitations and challenges associated with each technique and their potential to help address drug-resistant bacterial threats. We further critically delve into the need for accelerated diagnosis in low- and middle-income countries, which harbor more infectious disease threats. Overall, this review provides an up-to-date overview of the diagnostic approaches needed for a prompt response to imminent or possible bacterial infectious disease outbreaks.

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利用创新的诊断方法作为控制超级细菌的工具
病原体对生物材料的进化适应导致了耐药超级细菌的激增,严重威胁着公众健康。治疗大多数感染是一项艰巨的任务,特别是那些与多重耐药病原体、生物膜形成、持久性细胞和已获得强大定植和免疫逃避机制的病原体有关的感染。创新的诊断解决方案对于识别和了解这些病原体、启动有效的治疗方案以及遏制其传播至关重要。虽然新一代测序多年来在诊断方面已被证明是无价的,但最明显的缺点必须尽快解决。许多有希望的病原体相关和宿主生物标志物都有希望,但它们的敏感性和特异性仍然值得怀疑。CRISPR-Cas9富集与纳米孔测序的整合在血液样本的快速细菌诊断中显示出前景。此外,事实证明,机器学习和人工智能在诊断病原体方面不可或缺。然而,尽管各方重新努力改善诊断,但加速细菌诊断,特别是在非洲,至今仍是一个谜。在这篇综述中,我们讨论了当前和新兴的诊断方法,指出了每种技术的局限性和挑战,以及它们在帮助解决耐药细菌威胁方面的潜力。我们进一步深入探讨了在低收入和中等收入国家加速诊断的必要性,这些国家有更多的传染病威胁。总的来说,这篇综述提供了对即将发生或可能发生的细菌性传染病暴发的快速反应所需的诊断方法的最新概述。
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来源期刊
CiteScore
5.60
自引率
11.50%
发文量
104
审稿时长
3 months
期刊介绍: Antonie van Leeuwenhoek publishes papers on fundamental and applied aspects of microbiology. Topics of particular interest include: taxonomy, structure & development; biochemistry & molecular biology; physiology & metabolic studies; genetics; ecological studies; especially molecular ecology; marine microbiology; medical microbiology; molecular biological aspects of microbial pathogenesis and bioinformatics.
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