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新蝶呤综述

Neopterin: a review.

作者信息

Hamerlinck F F

机构信息

Department of Dermatology, University of Amsterdam, Academic Medical Center, The Netherlands.

出版信息

Exp Dermatol. 1999 Jun;8(3):167-76. doi: 10.1111/j.1600-0625.1999.tb00367.x.

Abstract

Neopterin was discovered in bee larvae, in worker bees and in royal jelly. The compound was termed "neopterin" to denote that it might start a new (Greek, neo) epoch in pteridine research. Increased concentrations of neopterin were reported in patients with viral infections, suggesting that increased neopterin may originate from the immune response of patients to the infections. In vitro studies revealed that human monocytes/macrophages produce neopterin when stimulated by interferon-gamma. Neopterin can easily be detected in serum and urine. The most important clinical applications for the determination of neopterin are prognostic indicator of malignant diseases, follow-up control of chronic infections, monitoring of immune-stimulatory therapy, differential diagnosis of acute viral and bacterial infections, prognostic indicator in HIV infections and early indications of complications in allograft recipients. In recent years new physiological functions of neopterin have been discovered such as inducing or enhancing cytotoxicity, inducing apoptosis and the role of a chain breaking antioxidant. This review will focus on the immunological and physiological properties of neopterin.

摘要

新蝶呤是在蜜蜂幼虫、工蜂和蜂王浆中发现的。该化合物被命名为“新蝶呤”,以表示它可能开启蝶啶研究的一个新(希腊语,neo)时代。据报道,病毒感染患者的新蝶呤浓度会升高,这表明新蝶呤浓度升高可能源于患者对感染的免疫反应。体外研究表明,人单核细胞/巨噬细胞在受到γ干扰素刺激时会产生新蝶呤。新蝶呤很容易在血清和尿液中检测到。测定新蝶呤最重要的临床应用包括恶性疾病的预后指标、慢性感染的随访监测、免疫刺激治疗的监测、急性病毒和细菌感染的鉴别诊断、HIV感染的预后指标以及同种异体移植受者并发症的早期迹象。近年来,人们发现了新蝶呤的一些新的生理功能,如诱导或增强细胞毒性、诱导细胞凋亡以及作为链断裂抗氧化剂的作用。本综述将聚焦于新蝶呤的免疫学和生理学特性。

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