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Full-Text Articles in Medicine and Health Sciences

Complete Sequencing Shows A Role For Msx1 In Non-Syndromic Cleft Lip And Palate, P. A. Jezewski, A. R. Vieira, C. Nishimura, B. Ludwig, M. Johnson, S. E. O'Brien, Sandra Daack-Hirsch, R. E. Schultz, A. Weber, B. Nepomucena, P. A. Romitti, K. Christensen, I. M. Orioli, E. E. Castilla, J. Machida, N. Natsume, J. C. Murray Oct 2011

Complete Sequencing Shows A Role For Msx1 In Non-Syndromic Cleft Lip And Palate, P. A. Jezewski, A. R. Vieira, C. Nishimura, B. Ludwig, M. Johnson, S. E. O'Brien, Sandra Daack-Hirsch, R. E. Schultz, A. Weber, B. Nepomucena, P. A. Romitti, K. Christensen, I. M. Orioli, E. E. Castilla, J. Machida, N. Natsume, J. C. Murray

Sandra Daack-Hirsch

MSX1 has been proposed as a gene in which mutations may contribute to non-syndromic forms of cleft lip and/or cleft palate. Support for this comes from human linkage and linkage disequilibrium studies, chromosomal deletions resulting in haploinsufficiency, a large family with a stop codon mutation that includes clefting as a phenotype, and the Msx1 phenotype in a knockout mouse. This report describes a population based scan for mutations encompassing the sense and antisense transcribed sequence of MSX1 (two exons, one intron). We compare the completed genomic sequence of MSX1 to the mouse Msx1 sequence to identify non-coding homology regions, and …


Role Of Hypoxia And Glycolysis In The Development Of Multi-Drug Resistance In Human Tumor Cells And The Establishment Of An Orthotopic Multi-Drug Resistant Tumor Model In Nude Mice Using Hypoxic Pre-Conditioning, Lara Milane, Zhenfeng Duan, Mansoor M. Amiji Sep 2011

Role Of Hypoxia And Glycolysis In The Development Of Multi-Drug Resistance In Human Tumor Cells And The Establishment Of An Orthotopic Multi-Drug Resistant Tumor Model In Nude Mice Using Hypoxic Pre-Conditioning, Lara Milane, Zhenfeng Duan, Mansoor M. Amiji

Mansoor M. Amiji

Background The development of multi-drug resistant (MDR) cancer is a significant challenge in the clinical treatment of recurrent disease. Hypoxia is an environmental selection pressure that contributes to the development of MDR. Many cancer cells, including MDR cells, resort to glycolysis for energy acquisition. This study aimed to explore the relationship between hypoxia, glycolysis, and MDR in a panel of human breast and ovarian cancer cells. A second aim of this study was to develop an orthotopic animal model of MDR breast cancer. Methods Nucleic and basal protein was extracted from a panel of human breast and ovarian cancer cells; …


Nod2, Rip2 And Irf5 Play A Critical Role In The Type I Interferon Response To Mycobacterium Tuberculosis, Amit K. Pandey, Yibin Yang, Zhaozhao Jiang, Sarah M. Fortune, Francois Coulombe, Marcel A. Behr, Katherine A. Fitzgerald, Christopher M. Sassetti, Michelle A. Kelliher Jul 2011

Nod2, Rip2 And Irf5 Play A Critical Role In The Type I Interferon Response To Mycobacterium Tuberculosis, Amit K. Pandey, Yibin Yang, Zhaozhao Jiang, Sarah M. Fortune, Francois Coulombe, Marcel A. Behr, Katherine A. Fitzgerald, Christopher M. Sassetti, Michelle A. Kelliher

Katherine A. Fitzgerald

While the recognition of microbial infection often occurs at the cell surface via Toll-like receptors, the cytosol of the cell is also under surveillance for microbial products that breach the cell membrane. An important outcome of cytosolic recognition is the induction of IFNalpha and IFNbeta, which are critical mediators of immunity against both bacteria and viruses. Like many intracellular pathogens, a significant fraction of the transcriptional response to Mycobacterium tuberculosis infection depends on these type I interferons, but the recognition pathways responsible remain elusive. In this work, we demonstrate that intraphagosomal M. tuberculosis stimulates the cytosolic Nod2 pathway that responds …


Myd88-Dependent Il-1 Receptor Signaling Is Essential For Gouty Inflammation Stimulated By Monosodium Urate Crystals, Chun-Jen Chen, Yan Shi, Arron Hearn, Katherine A. Fitzgerald, Douglas T. Golenbock, George W. Reed, Shizuo Akira, Kenneth L. Rock Jul 2011

Myd88-Dependent Il-1 Receptor Signaling Is Essential For Gouty Inflammation Stimulated By Monosodium Urate Crystals, Chun-Jen Chen, Yan Shi, Arron Hearn, Katherine A. Fitzgerald, Douglas T. Golenbock, George W. Reed, Shizuo Akira, Kenneth L. Rock

Katherine A. Fitzgerald

While it is known that monosodium urate (MSU) crystals cause the disease gout, the mechanism by which these crystals stimulate this inflammatory condition has not been clear. Here we find that the Toll/IL-1R (TIR) signal transduction adaptor myeloid differentiation primary response protein 88 (MyD88) is required for acute gouty inflammation. In contrast, other TIR adaptor molecules, TIRAP/Mal, TRIF, and TRAM, are not required for this process. The MyD88-dependent TLR1, -2, -4, -6, -7, -9, and -11 and IL-18 receptor (IL-18R) are not essential for MSU-induced inflammation. Moreover, MSU does not stimulate HEK cells expressing TLR1-11 to activate NF-kappaB. In contrast, …


Lps-Tlr4 Signaling To Irf-3/7 And Nf-Kappab Involves The Toll Adapters Tram And Trif, Katherine A. Fitzgerald, Daniel C. Rowe, Betsy J. Barnes, Daniel R. Caffrey, Alberto Visintin, Eicke Latz, Brian G. Monks, Paula M. Pitha, Douglas T. Golenbock Jul 2011

Lps-Tlr4 Signaling To Irf-3/7 And Nf-Kappab Involves The Toll Adapters Tram And Trif, Katherine A. Fitzgerald, Daniel C. Rowe, Betsy J. Barnes, Daniel R. Caffrey, Alberto Visintin, Eicke Latz, Brian G. Monks, Paula M. Pitha, Douglas T. Golenbock

Katherine A. Fitzgerald

Toll-IL-1-resistance (TIR) domain-containing adaptor-inducing IFN-beta (TRIF)-related adaptor molecule (TRAM) is the fourth TIR domain-containing adaptor protein to be described that participates in Toll receptor signaling. Like TRIF, TRAM activates interferon regulatory factor (IRF)-3, IRF-7, and NF-kappaB-dependent signaling pathways. Toll-like receptor (TLR)3 and 4 activate these pathways to induce IFN-alpha/beta, regulated on activation, normal T cell expressed and secreted (RANTES), and gamma interferon-inducible protein 10 (IP-10) expression independently of the adaptor protein myeloid differentiation factor 88 (MyD88). Dominant negative and siRNA studies performed here demonstrate that TRIF functions downstream of both the TLR3 (dsRNA) and TLR4 (LPS) signaling pathways, whereas the …


11beta-Hydroxylase Inhibitors Protect Against Seizures In Mice By Increasing Endogenous Neurosteroid Synthesis, Rafal Kaminski, Michael Rogawski Jun 2011

11beta-Hydroxylase Inhibitors Protect Against Seizures In Mice By Increasing Endogenous Neurosteroid Synthesis, Rafal Kaminski, Michael Rogawski

Michael A. Rogawski

Steroid 11β-hydroxylase (CYP11B1; EC 1.14.15.4) is a mitochondrial enzyme located in the zona fasciculata of the adrenal cortex and also in the brain that mediates the conversion of 11-deoxycortisol to cortisol and 11-deoxycorticosterone (DOC) to corticosterone. Inhibitors of CYP11B1, such as metyrapone and etomidate, reduce glucocorticoid synthesis and raise levels of DOC providing greater availability for metabolic conversion to the GABA-A receptor modulating neurosteroid allotetrahydrodeoxycorticosterone (THDOC). Because THDOC is potent anticonvulsant, it is plausible that CYP11B1 inhibitors could protect against seizures. Here we demonstrate that metyrapone affords dose-dependent protection against 6-Hz seizures 30 min after injection (ED50, 191 mg/kg), but …