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Yamazaki Y, Danelishvili L, Wu M, Hidaka E, Katsuyama T, Stang BV, Petrofsky M, Bildfell RJ, Bermudez LE. 2006. The ability to form biofilm influences Mycobacterium avium invasion and translocation of bronchial epithelial cells.. Cellular microbiology. 8(5):806-14.
Bermudez LE, Sangari FJ, Kolonoski P, Petrofsky M, Goodman J. 2002. The efficiency of the translocation of Mycobacterium tuberculosis across a bilayer of epithelial and endothelial cells as a model of the alveolar wall is a consequence of transport within mononuclear phagocytes and invasion of alveolar epithelial cells.. Infection and immunity. 70(1):140-6.
Bermudez LE, Inderlied CB, Kolonoski P, Chee CB, Aralar P, Petrofsky M, Parman T, Green CE, Lewin AH, Ellis WY et al.. 2012. Identification of (+)-Erythro-Mefloquine as an Active Enantiomer with Greater Efficacy than Mefloquine against Mycobacterium avium Infection in Mice.. Antimicrobial agents and chemotherapy. 56(8):4202-6.
Bermudez LE, Petrofsky M, Sangari F. 2004. Intracellular phenotype of Mycobacterium avium enters macrophages primarily by a macropinocytosis-like mechanism and survives in a compartment that differs from that with extracellular phenotype.. Cell biology international. 28(5):411-9.
Bermudez LE, Kolonoski P, Petrofsky M, Wu M, Inderlied CB, Young LS. 2003. Mefloquine, moxifloxacin, and ethambutol are a triple-drug alternative to macrolide-containing regimens for treatment of Mycobacterium avium disease.. The Journal of infectious diseases. 187(12):1977-80.
Li Y-jun, Petrofsky M, Bermudez LE. 2002. Mycobacterium tuberculosis uptake by recipient host macrophages is influenced by environmental conditions in the granuloma of the infectious individual and is associated with impaired production of interleukin-12 and tumor necrosis factor alpha.. Infection and immunity. 70(11):6223-30.