MISC

2001年5月

A critical role of Fc receptor-mediated antibody-dependent phagocytosis in the host resistance to blood-stage Plasmodium berghei XAT infection

JOURNAL OF IMMUNOLOGY
  • T Yoneto
  • ,
  • S Waki
  • ,
  • T Takai
  • ,
  • Y Tagawa
  • ,
  • Y Iwakura
  • ,
  • J Mizuguchi
  • ,
  • H Nariuchi
  • ,
  • T Yoshimoto

166
10
開始ページ
6236
終了ページ
6241
記述言語
英語
掲載種別
出版者・発行元
AMER ASSOC IMMUNOLOGISTS

Plasmodium berghei XAT is an irradiation-induced attenuated variant derived from the lethal strain P. berghei NK65, and its blood-stage parasites are spontaneously cleared in immune competent mice. In the present study, we studied the mechanism of host resistance to blood-stage malaria infection using P. berghei XAT. Infection enhanced Ab-dependent phagocytosis of PRBC by splenic macrophages in wild-type C57BL/6 mice. In contrast, FcR gamma -chain knockout (FcR gamma (-/-)) mice, which lack the ability to mediate Ab-dependent phagocytosis and Ab-dependent cell-mediated cytotoxicity through Fc gamma RI, Fc gamma RII, and Fc gamma RIII, could not induce Ab-dependent phagocytic activity. These FeR gamma (-/-) mice showed increased susceptibility to the P. berghei XAT infection, with eventually fatal results, although they produced comparable amounts of IFN-gamma by spleen cells and anti-XAT Abs in serum. In addition, passive transfer of anti-XAT IgG obtained from wild-type mice that had recovered from infection into FcR gamma (-/-) mice could not suppress the increase in parasitemia, and almost all of these mice died after marked parasitemia. In contrast, passive transfer of anti-XAT IgG into control wild-type mice inhibited the increase in parasitemia. IFN-gamma (-/-) mice, which were highly susceptible to the P. berghei XAT infection, failed to induce Ab-dependent phagocytic activity and also showed reduced production of serum anti-XAT IgG2a isotype compared with control wild-type mice. These results suggest that FcR-mediated Ab-dependent phagocytosis, which is located downstream of IFN-gamma production, is important as an effector mechanism to eliminate PRBC in blood-stage P. berghei XAT infection.

リンク情報
Web of Science
https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=JSTA_CEL&SrcApp=J_Gate_JST&DestLinkType=FullRecord&KeyUT=WOS:000170948500050&DestApp=WOS_CPL
ID情報
  • ISSN : 0022-1767
  • Web of Science ID : WOS:000170948500050

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