Literature DB >> 21490162

NK cell-depleting anti-asialo GM1 antibody exhibits a lethal off-target effect on basophils in vivo.

Hideto Nishikado1, Kaori Mukai, Yohei Kawano, Yoshiyuki Minegishi, Hajime Karasuyama.   

Abstract

NK cells are innate immune lymphocytes and play a key role in both innate and adaptive immunity. Their pivotal functions in vivo have been illustrated in mice by means of their ablation with NK cell-depleting Abs, particularly anti-asialo GM1 (ASGM1). In this study, we show that the whole population of basophils constitutively expresses ASGM1 as well as CD49b (DX5) as does the NK cell population and was ablated in vivo by anti-ASGM1 as efficiently as by a basophil-depleting anti-FcεRIα Ab. Anti-ASGM1-mediated basophil depletion was operative as for NK cell depletion in various mouse strains, irrespective of NK1 allotype and MHC H2 haplotype, including C57BL/6, BALB/c, C3H, and A/J mice. These results identified basophils as a previously unrecognized target of anti-ASGM1-mediated cell depletion and raised concern about possible contribution of basophils, rather than or in addition to NK cells, to some of phenotypes observed in anti-ASGM1-treated mice. Indeed, regardless of the presence or absence of NK cells in mice, anti-ASGM1 treatment abolished the development of IgE-mediated chronic cutaneous allergic inflammation as efficiently as did the treatment with basophil-depleting Ab. Given the fact that basophils have recently been shown to play crucial roles in a variety of immune responses, our finding of the off-target effect on basophils issues a grave warning about the use of anti-ASGM1 and underscores the need for careful interpretation of phenotypes observed in anti-ASGM1-treated mice.

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Year:  2011        PMID: 21490162     DOI: 10.4049/jimmunol.1100370

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  65 in total

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7.  Acute clearance of human metapneumovirus occurs independently of natural killer cells.

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Authors:  Gregory J Baker; Peter Chockley; Viveka Nand Yadav; Robert Doherty; Michael Ritt; Sivaraj Sivaramakrishnan; Maria G Castro; Pedro R Lowenstein
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