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鲎试剂技术对制药和医学科学的杰出贡献:细菌感染和侵袭性真菌病早期检测与管理的方法、进展、挑战及未来展望综述

Outstanding Contributions of LAL Technology to Pharmaceutical and Medical Science: Review of Methods, Progress, Challenges, and Future Perspectives in Early Detection and Management of Bacterial Infections and Invasive Fungal Diseases.

作者信息

Tamura Hiroshi, Reich Johannes, Nagaoka Isao

机构信息

LPS Consulting Office, Tokyo 160-0023, Japan.

Department of Host Defense and Biochemical Research, Graduate School of Medicine, Juntendo University, Tokyo 113-8421, Japan.

出版信息

Biomedicines. 2021 May 11;9(5):536. doi: 10.3390/biomedicines9050536.

Abstract

The blue blood of the horseshoe crab is a natural, irreplaceable, and precious resource that is highly valued by the biomedical industry. The Limulus amebocyte lysate (LAL) obtained from horseshoe crab blood cells functions as a surprisingly sophisticated sensing system that allows for the extremely sensitive detection of bacterial and fungal cell-wall components. Notably, LAL tests have markedly contributed to the quality control of pharmaceutical drugs and medical devices as successful alternatives to the rabbit pyrogen test. Furthermore, LAL-based endotoxin and (1→3)-β-D-glucan (β-glucan) assay techniques are expected to have optimal use as effective biomarkers, serving as adjuncts in the diagnosis of bacterial sepsis and fungal infections. The innovative β-glucan assay has substantially contributed to the early diagnosis and management of invasive fungal diseases; however, the clinical significance of the endotoxin assay remains unclear and is challenging to elucidate. Many obstacles need to be overcome to enhance the analytical sensitivity and clinical performance of the LAL assay in detecting circulating levels of endotoxin in human blood. Additionally, there are complex interactions between endotoxin molecules and blood components that are attributable to the unique physicochemical properties of lipopolysaccharide (LPS). In this regard, while exploring the potential of new LPS-sensing technologies, a novel platform for the ultrasensitive detection of blood endotoxin will enable a reappraisal of the LAL assay for the highly sensitive and reliable detection of endotoxemia.

摘要

鲎的蓝色血液是一种天然、不可替代且珍贵的资源,受到生物医学行业的高度重视。从鲎血细胞中提取的鲎试剂(LAL)起着令人惊讶的精密传感系统的作用,能够极其灵敏地检测细菌和真菌细胞壁成分。值得注意的是,鲎试剂检测作为兔热源试验的成功替代方法,对药物和医疗器械的质量控制做出了显著贡献。此外,基于鲎试剂的内毒素和(1→3)-β-D-葡聚糖(β-葡聚糖)检测技术有望作为有效的生物标志物得到最佳应用,辅助诊断细菌败血症和真菌感染。创新的β-葡聚糖检测对侵袭性真菌病的早期诊断和管理有很大贡献;然而,内毒素检测的临床意义仍不明确,难以阐明。要提高鲎试剂检测人血中循环内毒素水平的分析灵敏度和临床性能,还需要克服许多障碍。此外,由于脂多糖(LPS)独特的物理化学性质,内毒素分子与血液成分之间存在复杂的相互作用。在这方面,在探索新型LPS传感技术潜力的同时,一个用于超灵敏检测血液内毒素的新平台将能够重新评估鲎试剂检测,以实现对内毒素血症的高灵敏度和可靠检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc24/8150811/3073947c3894/biomedicines-09-00536-g001.jpg

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