粒细胞化学发光的临床应用。

R W Steele
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引用次数: 28

摘要

粒细胞的氧化代谢活性可以通过化学发光直接检测,化学发光是一种在明确的炎症或杀微生物事件中测量光子发射的实验室技术。许多研究利用化学发光来检查传染病和其他病理过程中的早期变化。研究表明,细胞表面的受体和粒细胞的氧合可以反映疾病的严重程度,并提供早期诊断信息。在这方面,几乎每一个医学专科都对疾病进行了研究,但大多数研究都集中在感染性和自身免疫性疾病上。本文综述了目前实验室方法的进展,并评估了最近发表的临床数据的潜在应用。很明显,在疾病期间,髓过氧化物酶和氧化酶依赖的氧化活性反映了不同的宿主反应,对这些活性的独立测量将为宿主防御提供更有意义的理解。血清中的免疫复合物和其他因子也可能与粒细胞相互作用,改变细胞表面的受体和随后的代谢活性。在某些情况下,增强的粒细胞功能可能对宿主有害。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clinical applications of chemiluminescence of granulocytes.

The oxidative metabolic activity of granulocytes can be directly examined by chemiluminescence, a laboratory technique that measures photon emission during well-defined inflammatory or microbicidal events. Numerous studies have utilized chemiluminescence to examine early changes during infectious diseases and other pathologic processes. Studies have suggested that receptors on cell surfaces and oxygenation of granulocytes can reflect the severity of disease as well as provide early diagnostic information. Diseases within virtually every subspecialty of medicine have been studied in this respect, but most investigations have focused on infectious and autoimmune conditions. The present review summarizes current progress in laboratory methods and evaluates the potential application of recently published clinical data. It is apparent that during disease myeloperoxidase- and oxidase-dependent oxygenation activities reflect separate host responses, and independent measurements of these activities will offer a more meaningful understanding of host defense. Immune complexes and other factors in serum may also interact with granulocytes to alter the receptors on cell surfaces and subsequent metabolic activity. In some circumstances, enhanced function of granulocytes may be detrimental to the host.

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