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隐孢子虫素和阳离子中性粒细胞肽对蓝氏贾第鞭毛虫的杀伤作用。

Killing of Giardia lamblia by cryptdins and cationic neutrophil peptides.

作者信息

Aley S B, Zimmerman M, Hetsko M, Selsted M E, Gillin F D

机构信息

Department of Pathology, University of California at San Diego 92103-8416.

出版信息

Infect Immun. 1994 Dec;62(12):5397-403. doi: 10.1128/iai.62.12.5397-5403.1994.

Abstract

Antimicrobial polypeptides such as the defensins kill a wide range of organisms, including bacteria, fungi, viruses, and tumor cells. Because of the recent finding that intestinal defensins, also known as cryptdins, are synthesized by the Paneth cells of the small intestinal crypts and released into the lumen, we asked whether defensins and other small cationic antimicrobial peptides could kill the trophozoites of Giardia lamblia, which colonize the small intestine. Four mouse cryptdins, two neutrophil defensins (HNP-1 [human] and NP-2 [rabbit]), and the unique tryptophan-rich bovine neutrophil polypeptide indolicidin each had some antigiardial activity against trophozoites in vitro. Cryptdins 2 and 3, indolicidin, and NP-2 each reduced viability by more than 3 log units in 2 h, and killing by all peptides was dose and time dependent. Exposure of trophozoites to peptides frequently resulted in cell aggregation and dramatic changes in morphology. The mechanism of binding and lysis appeared to involve charge interactions, since 150 mM NaCl as well as millimolar levels of Ca2+ and Mg2+ inhibited killing by most of the peptides. Our studies show that G. lamblia is sensitive to defensins and indolicidin and suggest that these small polypeptides could play a role in nonimmune host defenses.

摘要

诸如防御素之类的抗菌多肽能杀死多种生物体,包括细菌、真菌、病毒和肿瘤细胞。由于最近发现肠道防御素(也称为隐窝素)由小肠隐窝的潘氏细胞合成并释放到肠腔中,我们不禁要问,防御素和其他小阳离子抗菌肽是否能杀死寄生于小肠的蓝氏贾第鞭毛虫滋养体。四种小鼠隐窝素、两种中性粒细胞防御素(人源HNP-1和兔源NP-2)以及独特的富含色氨酸的牛中性粒细胞多肽吲哚杀菌素,在体外对滋养体均具有一定的抗贾第虫活性。隐窝素2和3、吲哚杀菌素以及NP-2在2小时内均可使滋养体活力降低超过3个对数单位,并且所有肽的杀伤作用均呈剂量和时间依赖性。将滋养体暴露于这些肽后,常常会导致细胞聚集和形态发生显著变化。结合和裂解机制似乎涉及电荷相互作用,因为150 mM NaCl以及毫摩尔水平的Ca2+和Mg2+会抑制大多数肽的杀伤作用。我们的研究表明,蓝氏贾第鞭毛虫对防御素和吲哚杀菌素敏感,并提示这些小多肽可能在非免疫宿主防御中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c365/303280/7f55101a1b18/iai00012-0206-a.jpg

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