Amphotericin B–Induced Interleukin‐1β Expression in Human Monocytic Cells is Calcium and Calmodulin Dependent
Author(s) -
P. David Rogers,
Robert Krämer,
Stanley W. Chapman,
John D. Cleary
Publication year - 1999
Publication title -
the journal of infectious diseases
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.69
H-Index - 252
eISSN - 1537-6613
pISSN - 0022-1899
DOI - 10.1086/315004
Subject(s) - amphotericin b , calmodulin , thapsigargin , calcium , ionomycin , pharmacology , chills , endocrinology , biology , medicine , immunology , chemistry , microbiology and biotechnology , antifungal
Amphotericin B remains the agent of choice for treatment of severe fungal infections. Its use is hindered by adverse effects, including infusion-related fever, chills, and hypotension, as well as nephrotoxicity with secondary anemia, hypokalemia, and hypomagnesemia. Amphotericin B-induced transcription and expression of interleukin (IL)-1beta by human monocytes is believed to be involved in mediating infusion-related adverse effects. It is shown here that agents that increase intracellular calcium [Ca++]i (A23187 and thapsigargin) in human monocytic cells also induce IL-1beta expression. Furthermore, amphotericin B-induced IL-1beta expression is attenuated by the calmodulin antagonist calmidazolium. Amphotericin B 5.41 microM increases [Ca++]i by up to 300 nM in these cells. In the presence of a nominal calcium buffer or EGTA, amphotericin B-induced IL-1beta expression is attenuated. Thus, amphotericin B acts as an ionophore to increase [Ca++]i and activates calmodulin-mediated expression of IL-1beta in human monocytes.
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