Cytokine profiles in primary and secondary pulmonary granulomas of Guinea pigs with tuberculosis.
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[1] S. Ehlers,et al. Location of Persisting Mycobacteria in a Guinea Pig Model of Tuberculosis Revealed by R207910 , 2007, Antimicrobial Agents and Chemotherapy.
[2] D. McMurray,et al. Microdissection of the cytokine milieu of pulmonary granulomas from tuberculous guinea pigs , 2007, Cellular microbiology.
[3] H. Yamada,et al. BCG vaccination enhances resistance to M. tuberculosis infection in guinea pigs fed a low casein diet. , 2007, The Tohoku journal of experimental medicine.
[4] T. Yoshimura,et al. Production and Characterization of Guinea Pig Recombinant Gamma Interferon and Its Effect on Macrophage Activation , 2006, Infection and Immunity.
[5] Hiroyuki Yamada,et al. Newly designed primer sets available for evaluating various cytokines and iNOS mRNA expression in guinea pig lung tissues by RT-PCR. , 2005, Experimental animals.
[6] T. Yoshimura,et al. Recombinant Guinea Pig Tumor Necrosis Factor Alpha Stimulates the Expression of Interleukin-12 and the Inhibition of Mycobacterium tuberculosis Growth in Macrophages , 2005, Infection and Immunity.
[7] D. McMurray,et al. Coordinate Cytokine Gene Expression In Vivo following Induction of Tuberculous Pleurisy in Guinea Pigs , 2003, Infection and Immunity.
[8] D. McMurray,et al. Hematogenous reseeding of the lung in low-dose, aerosol-infected guinea pigs: unique features of the host-pathogen interface in secondary tubercles. , 2003, Tuberculosis.
[9] E. Chan,et al. What is the role of nitric oxide in murine and human host defense against tuberculosis?Current knowledge. , 2001, American journal of respiratory cell and molecular biology.
[10] T. Sakamoto,et al. Molecular cloning and characterization of Ca2+-dependent inducible nitric oxide synthase from guinea-pig lung. , 1998, The Biochemical journal.
[11] D. Smith,et al. Pathogenesis of tuberculosis: pathway to apical localization. , 1994, Tubercle and lung disease : the official journal of the International Union against Tuberculosis and Lung Disease.
[12] D. Smith,et al. Mycobacterial infection in guinea pigs. , 1994, Immunobiology.
[13] D. Smith,et al. A guinea pig model of experimental airborne tuberculosis for evaluation of the response to chemotherapy: the effect on bacilli in the initial phase of treatment. , 1991, Tubercle.
[14] D. Smith,et al. Host-parasite relationships in experimental airborne tuberculosis. VII. Fate of Mycobacterium tuberculosis in primary lung lesions and in primary lesion-free lung tissue infected as a result of bacillemia. , 1978, The Journal of infectious diseases.
[15] D. Smith,et al. Host-parasite relationships in experimental airborne tuberculosis. VI. Influence of vaccination with Bacille Calmette-Guérin on the onset and/or extent of hematogenous dissemination of virulent Mycobacterium tuberculosis to the lungs. , 1977, The Journal of infectious diseases.
[16] D. Smith,et al. Influence of BCG vaccination on the pathogenesis of experimental airborne tuberculosis. , 1975, Journal of hygiene, epidemiology, microbiology, and immunology.
[17] W. Stead,et al. Evidence of a "silent" bacillemia in primary tuberculosis. , 1971, Annals of Internal Medicine.
[18] D. Smith,et al. Host-parasite relationships in experimental airborne tuberculosis. IV. Early events in the course of infection in vaccinated and nonvaccinated guinea pigs. , 1970, The American review of respiratory disease.
[19] D. Smith,et al. Host-parasite relationships in experimental airborne tuberculosis. 3. Relevance of microbial enumeration to acquired resistance in guinea pigs. , 1970, The American review of respiratory disease.
[20] Medlar Em. The pathogenesis of minimal pulmonary tuberculosis; a study of 1,225 necropsies in cases of sudden and unexpected death. , 1948 .
[21] E. Medlar. The pathogenesis of minimal pulmonary tuberculosis; a study of 1,225 necropsies in cases of sudden and unexpected death. , 1948, American review of tuberculosis.