Utilization of Raman spectroscopy for identification and characterization of fungal pathogens

IF 5.7 2区 生物学 Q1 MYCOLOGY
Ruchira Udupa , Prakash Peralam Yegneswaran , Jijo Lukose , Santhosh Chidangil
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引用次数: 0

Abstract

Rapid and accurate identification of pathogens causing infections is one of the biggest challenges of medicine. Timely identification and characterization of fungal pathogens is essential for choosing a suitable tailored antifungal treatment and proper management of patients. This, in turn, leads to the shortening of hospital stays, reducing costs and time to adequate treatment, increasing the well-being of patients, limiting the spread of antifungal resistance, and helps to save the lives of many patients. Raman spectra allow the assessment of the overall molecular constitution of biological samples, based on specific signals from proteins, nucleic acids, lipids, carbohydrates, and inorganic crystals. It has been found to be a valuable tool for the identification of microorganisms, characterization of virulence factors, and their ability to form biofilms. The most used method in current diagnostic laboratories for fungal identification is fungal culture which can take four weeks or longer to maximize the recovery of slowly growing fungi. This needs the development of new methods to detect and identify these pathogens directly from clinical samples.

We aim to offer an evidence-based review of the Raman spectroscopy technique, its strengths, and limitations with respect to its use in the field of medical mycology to help in the early detection of fungal pathogens. Raman spectroscopy can be used not only for identification but, also for the biochemical analysis of the fungal pathogen. It is a precise, convenient, and low-cost method for fungal detection. Analysis of various cell organelles present in the fungal cell can help us understand the cell dynamics and enable us to study the reaction of those cells under different environmental stresses. It can also help us to further study mechanisms of antifungal resistance.

利用拉曼光谱鉴定和描述真菌病原体
快速准确地识别导致感染的病原体是医学界面临的最大挑战之一。及时识别真菌病原体并确定其特征对于选择合适的定制抗真菌治疗方法和妥善管理病人至关重要。这反过来又能缩短住院时间,减少费用和适当治疗的时间,提高病人的福利,限制抗真菌抗药性的传播,并有助于挽救许多病人的生命。拉曼光谱可以根据蛋白质、核酸、脂类、碳水化合物和无机晶体的特定信号,评估生物样本的整体分子结构。人们发现,它是鉴定微生物、描述毒力因子及其形成生物膜能力的重要工具。目前诊断实验室最常用的真菌鉴定方法是真菌培养,这种方法需要四周或更长时间才能最大限度地回收生长缓慢的真菌。我们的目标是对拉曼光谱技术及其在医学真菌学领域应用的优势和局限性进行基于证据的综述,以帮助早期检测真菌病原体。拉曼光谱不仅可用于鉴定,还可用于真菌病原体的生化分析。这是一种精确、方便、低成本的真菌检测方法。对真菌细胞中存在的各种细胞器进行分析,有助于我们了解细胞的动态,使我们能够研究这些细胞在不同环境压力下的反应。它还能帮助我们进一步研究抗真菌的机制。
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
CiteScore
10.60
自引率
0.00%
发文量
36
期刊介绍: Fungal Biology Reviews is an international reviews journal, owned by the British Mycological Society. Its objective is to provide a forum for high quality review articles within fungal biology. It covers all fields of fungal biology, whether fundamental or applied, including fungal diversity, ecology, evolution, physiology and ecophysiology, biochemistry, genetics and molecular biology, cell biology, interactions (symbiosis, pathogenesis etc), environmental aspects, biotechnology and taxonomy. It considers aspects of all organisms historically or recently recognized as fungi, including lichen-fungi, microsporidia, oomycetes, slime moulds, stramenopiles, and yeasts.
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