A calcium-activated chloride channel blocker inhibits goblet cell metaplasia and mucus overproduction

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Abstract

We have previously shown that expression of a Ca2+ -activated Cl- channel (mCLCA 3 in mice and hCLCA 1 in humans) is up-regulated along with goblet cell metaplasia and mucus overproduction in the lungs of interleukin 9 (IL9) transgenic mice, and in human primary lung cultures by IL4, IL13 and IL9. We show here that hCLCA 1 expression in NCI-H292 cells specifically induces soluble gel-forming mucin production. Moreover, niflumic acid (NFA), a blocker of hCLCA1-dependent Cl- efflux, inhibits MUC5A/C production in these cells. NFA treatment during natural antigen-exposure, where mCLCA3 is greatly up-regulated in the lung, significantly reduces airway inflammation, goblet cell metaplasia and mucus overproduction in vivo. These data suggest that this Ca2+ -activated Cl- channel plays an important role in epithelial-regulated inflammatory responses, including goblet cell metaplasia, and represents a potential novel therapeutic target for the control of mucus overproduction chronic pulmonary disorders.

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Zhou, Y., Shapiro, M., Dong, Q., Louahed, J., Weiss, C., Wan, S. H., … Levitt, R. C. (2002). A calcium-activated chloride channel blocker inhibits goblet cell metaplasia and mucus overproduction. Novartis Foundation Symposium, 248, 150–170. https://doi.org/10.1002/0470860790.ch10

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