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Items: 1 to 20 of 28


Experimental Models of Foamy Macrophages and Approaches for Dissecting the Mechanisms of Lipid Accumulation and Consumption during Dormancy and Reactivation of Tuberculosis.

Santucci P, Bouzid F, Smichi N, Poncin I, Kremer L, De Chastellier C, Drancourt M, Canaan S.

Front Cell Infect Microbiol. 2016 Oct 7;6:122. eCollection 2016. Review.


Mycobacterium tuberculosis exploits the formation of new blood vessels for its dissemination.

Polena H, Boudou F, Tilleul S, Dubois-Colas N, Lecointe C, Rakotosamimanana N, Pelizzola M, Andriamandimby SF, Raharimanga V, Charles P, Herrmann JL, Ricciardi-Castagnoli P, Rasolofo V, Gicquel B, Tailleux L.

Sci Rep. 2016 Sep 12;6:33162. doi: 10.1038/srep33162.


MUSASHI-Mediated Expression of JMJD3, a H3K27me3 Demethylase, Is Involved in Foamy Macrophage Generation during Mycobacterial Infection.

Holla S, Prakhar P, Singh V, Karnam A, Mukherjee T, Mahadik K, Parikh P, Singh A, Rajmani RS, Ramachandra SG, Balaji KN.

PLoS Pathog. 2016 Aug 17;12(8):e1005814. doi: 10.1371/journal.ppat.1005814. eCollection 2016 Aug.


Mycobacterium tuberculosis: Manipulator of Protective Immunity.

Korb VC, Chuturgoon AA, Moodley D.

Int J Mol Sci. 2016 Feb 25;17(3):131. doi: 10.3390/ijms17030131. Review.


A bug's life in the granuloma.

Martin CJ, Carey AF, Fortune SM.

Semin Immunopathol. 2016 Mar;38(2):213-20. doi: 10.1007/s00281-015-0533-1. Epub 2015 Nov 17. Review.


Prospects in Mycobacterium bovis Bacille Calmette et Guérin (BCG) vaccine diversity and delivery: why does BCG fail to protect against tuberculosis?

Moliva JI, Turner J, Torrelles JB.

Vaccine. 2015 Sep 22;33(39):5035-41. doi: 10.1016/j.vaccine.2015.08.033. Epub 2015 Aug 28. Review.


Mathematical Model of Oxygen Transport in Tuberculosis Granulomas.

Datta M, Via LE, Chen W, Baish JW, Xu L, Barry CE 3rd, Jain RK.

Ann Biomed Eng. 2016 Apr;44(4):863-72. doi: 10.1007/s10439-015-1415-3. Epub 2015 Aug 8.


Trans-species communication in the Mycobacterium tuberculosis-infected macrophage.

Tan S, Russell DG.

Immunol Rev. 2015 Mar;264(1):233-48. doi: 10.1111/imr.12254. Review.


The Sculpting of the Mycobacterium tuberculosis Genome by Host Cell-Derived Pressures.

Russell DG, Lee W, Tan S, Sukumar N, Podinovskaia M, Fahey RJ, VanderVen BC.

Microbiol Spectr. 2014 Oct;2(5). doi: 10.1128/microbiolspec.MGM2-0016-2013. Review.


Reversible lipid accumulation and associated division arrest of Mycobacterium avium in lipoprotein-induced foamy macrophages may resemble key events during latency and reactivation of tuberculosis.

Caire-Brändli I, Papadopoulos A, Malaga W, Marais D, Canaan S, Thilo L, de Chastellier C.

Infect Immun. 2014 Feb;82(2):476-90. doi: 10.1128/IAI.01196-13. Epub 2013 Nov 25.


Intracellular Mycobacterium tuberculosis exploits host-derived fatty acids to limit metabolic stress.

Lee W, VanderVen BC, Fahey RJ, Russell DG.

J Biol Chem. 2013 Mar 8;288(10):6788-800. doi: 10.1074/jbc.M112.445056. Epub 2013 Jan 10.


The evolutionary pressures that have molded Mycobacterium tuberculosis into an infectious adjuvant.

Russell DG.

Curr Opin Microbiol. 2013 Feb;16(1):78-84. doi: 10.1016/j.mib.2012.11.007. Epub 2013 Jan 3. Review.


Mycobacterial trehalose dimycolate reprograms macrophage global gene expression and activates matrix metalloproteinases.

Sakamoto K, Kim MJ, Rhoades ER, Allavena RE, Ehrt S, Wainwright HC, Russell DG, Rohde KH.

Infect Immun. 2013 Mar;81(3):764-76. doi: 10.1128/IAI.00906-12. Epub 2012 Dec 21.


Targeting drug tolerance in mycobacteria: a perspective from mycobacterial biofilms.

Islam MS, Richards JP, Ojha AK.

Expert Rev Anti Infect Ther. 2012 Sep;10(9):1055-66. doi: 10.1586/eri.12.88. Review.


Exosomes isolated from mycobacteria-infected mice or cultured macrophages can recruit and activate immune cells in vitro and in vivo.

Singh PP, Smith VL, Karakousis PC, Schorey JS.

J Immunol. 2012 Jul 15;189(2):777-85. doi: 10.4049/jimmunol.1103638. Epub 2012 Jun 20.


Alterations in phospholipid catabolism in Mycobacterium tuberculosis lysX mutant.

Maloney E, Lun S, Stankowska D, Guo H, Rajagoapalan M, Bishai WR, Madiraju MV.

Front Microbiol. 2011 Feb 11;2:19.


Rare Cell Capture in Microfluidic Devices.

Pratt ED, Huang C, Hawkins BG, Gleghorn JP, Kirby BJ.

Chem Eng Sci. 2011 Apr 1;66(7):1508-1522.


Mycobacteria release active membrane vesicles that modulate immune responses in a TLR2-dependent manner in mice.

Prados-Rosales R, Baena A, Martinez LR, Luque-Garcia J, Kalscheuer R, Veeraraghavan U, Camara C, Nosanchuk JD, Besra GS, Chen B, Jimenez J, Glatman-Freedman A, Jacobs WR Jr, Porcelli SA, Casadevall A.

J Clin Invest. 2011 Apr;121(4):1471-83. doi: 10.1172/JCI44261.

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