【2h】

Lysozyme turnover in man

机译:人的溶菌酶营业额

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摘要

Lysozyme turnover studies with 125I-labeled human lysozyme were carried out on 22 patients, viz. nine control patients, seven nephrological patients with varying degrees of renal insufficiency, including three bilaterally nephrectomized patients, and six hematological patients with disturbed turnover of the neutrophilic granulocytes.It was found that plasma lysozyme has a rapid turnover with a fractional catabolic rate of 76%/hr of the plasma content. Lysozyme catabolism varied with the endogenous creatinine clearance; in addition however, extrarenal sites of catabolism were demonstrated since lysozyme could be broken down in the anephric patients, although only at a rate amounting to about 15% of the rate found in persons with intact kidneys. In the uremic patients the increased plasma lysozyme concentration was due to decreased rates of catabolism; in the hematological patients the increased plasma lysozyme level was due to increased rates of synthesis which supports the hypothesis that plasma lysozyme mainly stems from disintegrating neutrophilic granulocytes. Furthermore, it was shown that in the nonhematological patients examined, the rate of synthesis varied with the endogenous creatinine clearance.
机译: 125 I标记的人溶菌酶进行了溶菌酶更新研究,对22例患者进行了研究。对照患者9例,肾功能不全程度的肾病患者7例,包括双侧肾切除术3例,嗜中性粒细胞更新障碍的血液学患者6例,发现血浆溶菌酶代谢迅速,分解代谢率为76% /小时的血浆含量。溶菌酶分解代谢随内源性肌酐清除率的变化而变化。然而,此外,由于肾病患者的溶菌酶可能被分解,因此证明了肾外分解代谢的部位,尽管其发生率仅为肾脏完整者的约15%。在尿毒症患者中,血浆溶菌酶浓度升高是由于分解代谢速率降低所致。在血液病患者中,血浆溶菌酶水平的提高是由于合成速率的提高,这支持了以下假设:血浆溶菌酶主要源于嗜中性粒细胞的分解。此外,研究表明,在接受非血液学检查的患者中,合成速率随内源性肌酐清除率而变化。

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