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转移因子对慢性黏膜皮肤念珠菌病中性粒细胞功能的影响。

The effect of transfer factor on neutrophil function in chronic mucocutaneous candidiasis.

作者信息

Lawton J W, Costello C, Barclay G R, Urbaniak S J, Darg C, Raeburn J A, Uttley W S, Kay A B

出版信息

Br J Haematol. 1976 May;33(1):137-42. doi: 10.1111/j.1365-2141.1976.tb00980.x.

Abstract

Chronic mucocutaneous candidiasis with hypoparathyroidism in a 6-year-old-boy is described. In addition to defects of in vivo and in vitro correlates of delayed-type hypersensitivity to Candida albicans the child also had abnormalities of neutrophil function in terms of their capacity to respond by chemotaxis to a known attractant and to kill suspensions of C. albicans. Dialysable transfer factor was given on six occasions at intervals of between 26 and 45 days. Neutrophil chemotaxis (optimal conditions) was restored following each of the six injections, neutrophil chemotaxis (sub-optimal conditions) following five of the six injections and candidicidal capacity following four of the six injections. The effects of transfer factor were transient requiring repeated injections. The Candida delayed-type hypersensitivity skin test was restored to normal but lymphocyte transformation to Candida extract was not consistently positive following treatment. There was a slight clinical improvement following therapy. These abnormalities of neutrophil and lymphocyte function point to the complexity of chronic mucocutaneous candidiasis. The improvement in neutrophil chemotaxis and candidicidal capacity following treatment suggests that transfer factor may be a heterogeneous group of molecules, some of which affect granulocytes and restore defects in their function.

摘要

本文描述了一名6岁男孩患有慢性黏膜皮肤念珠菌病并伴有甲状旁腺功能减退。除了对白色念珠菌迟发型超敏反应的体内和体外相关指标存在缺陷外,该患儿的中性粒细胞功能也存在异常,表现为其对已知趋化因子的趋化反应能力以及杀灭白色念珠菌悬液的能力。每隔26至45天给予六次可透析转移因子。六次注射中的每次注射后,中性粒细胞趋化性(最佳条件下)均恢复,六次注射中的五次后中性粒细胞趋化性(次优条件下)恢复,六次注射中的四次后杀念珠菌能力恢复。转移因子的作用是短暂的,需要重复注射。念珠菌迟发型超敏皮肤试验恢复正常,但治疗后对念珠菌提取物的淋巴细胞转化并非始终呈阳性。治疗后临床症状有轻微改善。中性粒细胞和淋巴细胞功能的这些异常表明慢性黏膜皮肤念珠菌病的复杂性。治疗后中性粒细胞趋化性和杀念珠菌能力的改善表明转移因子可能是一组异质性分子,其中一些影响粒细胞并恢复其功能缺陷。

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