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The Journal of Allergy and Clinical Immunology|August 30, 2011
Functional KCa3.1 K+ channels are required for human fibrocyte migrationGlenn Cruse, Shailendra R Singh, S Mark Duffy, et al.The Journal of Allergy and Clinical Immunology|April 16, 2010
Activation of human mast cells through the platelet-activating factor receptorNaoki Kajiwara, Tomomi Sasaki, Peter Bradding, et al.Proceedings of the National Academy of Sciences of the United States of America|November 23, 2016
Exon skipping of FcεRIβ eliminates expression of the high-affinity IgE receptor in mast cells with therapeutic potential for allergyGlenn Cruse, Yuzhi Yin, Tomoki Fukuyama, et al.Cellular Signalling|April 3, 2020
The FcεRIβ homologue, MS4A4A, promotes FcεRI signal transduction and store-operated Ca2+ entry in human mast cellsGreer K Arthur, Lauren C Ehrhardt-Humbert, Douglas B Snider, et al.Allergy|November 25, 2022
Identification of redundancy between human FcεRIβ and MS4A6A proteins points toward additional complex mechanisms for FcεRI trafficking and signalingKatie Bitting, Barry Hedgespeth, Lauren C Ehrhardt-Humbert, et al.Journal of Immunology (Baltimore, Md. : 1950)|August 8, 2008
Human airway smooth muscle promotes human lung mast cell survival, proliferation, and constitutive activation: cooperative roles for CADM1, stem cell factor, and IL-6Fay Hollins, Davinder Kaur, Weidong Yang, et al.Journal of Immunology (Baltimore, Md. : 1950)|May 21, 2010
Human lung mast cells mediate pneumococcal cell death in response to activation by pneumolysinGlenn Cruse, Vitor E Fernandes, Jose de Salort, et al.Tissue Engineering. Part A|October 2, 2020
Dermal Extracellular Matrix-Derived Hydrogels as an In Vitro Substrate to Study Mast Cell MaturationEmily W Ozpinar, Ariana L Frey, Greer K Arthur, et al.American Journal of Respiratory Cell and Molecular Biology|June 23, 2007
KCa3.1 Ca2+ activated K+ channels regulate human airway smooth muscle proliferationMalcolm C Shepherd, S Mark Duffy, Trudi Harris, et al.Frontiers in Veterinary Science|April 3, 2025
Comparison of histochemical methods for the analysis of eosinophils and mast cells using a porcine model of eosinophilic esophagitisDouglas B Snider, David K Meyerholz, Evan S Dellon, et al.Pageof 4