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1
Depletion of Butyrate-Producing Clostridia from the Gut Microbiota Drives an Aerobic Luminal Expansion of Salmonella
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Depletion of Butyrate-Producing Clostridia from the Gut Microbiota Drives an Aerobic Luminal Expansion of Salmonella

Cell host & microbe, 2016-04, Vol.19 (4), p.443-454 [Peer Reviewed Journal]

2016 Elsevier Inc. ;Copyright © 2016 Elsevier Inc. All rights reserved. ;ISSN: 1931-3128 ;EISSN: 1934-6069 ;DOI: 10.1016/j.chom.2016.03.004 ;PMID: 27078066

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2
Gut-Innervating Nociceptor Neurons Regulate Peyer’s Patch Microfold Cells and SFB Levels to Mediate Salmonella Host Defense
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Gut-Innervating Nociceptor Neurons Regulate Peyer’s Patch Microfold Cells and SFB Levels to Mediate Salmonella Host Defense

Cell, 2020-01, Vol.180 (1), p.33-49.e22 [Peer Reviewed Journal]

2019 Elsevier Inc. ;Copyright © 2019 Elsevier Inc. All rights reserved. ;ISSN: 0092-8674 ;EISSN: 1097-4172 ;DOI: 10.1016/j.cell.2019.11.014 ;PMID: 31813624

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3
Salmonella versus the Microbiome
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Salmonella versus the Microbiome

Microbiology and molecular biology reviews, 2021-02, Vol.85 (1) [Peer Reviewed Journal]

Copyright © 2020 American Society for Microbiology. ;Copyright American Society for Microbiology Mar 2021 ;Copyright © 2020 American Society for Microbiology. 2020 American Society for Microbiology ;ISSN: 1092-2172 ;EISSN: 1098-5557 ;DOI: 10.1128/MMBR.00027-19 ;PMID: 33361269

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4
Probiotic Bacteria Reduce Salmonella Typhimurium Intestinal Colonization by Competing for Iron
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Probiotic Bacteria Reduce Salmonella Typhimurium Intestinal Colonization by Competing for Iron

Cell host & microbe, 2013-07, Vol.14 (1), p.26-37 [Peer Reviewed Journal]

2013 Elsevier Inc. ;Copyright © 2013 Elsevier Inc. All rights reserved. ;2013 Elsevier Inc. All rights reserved. 2013 ;ISSN: 1931-3128 ;EISSN: 1934-6069 ;DOI: 10.1016/j.chom.2013.06.007 ;PMID: 23870311

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5
Dysbiosis-Associated Change in Host Metabolism Generates Lactate to Support Salmonella Growth
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Dysbiosis-Associated Change in Host Metabolism Generates Lactate to Support Salmonella Growth

Cell host & microbe, 2018-01, Vol.23 (1), p.54-64.e6 [Peer Reviewed Journal]

2017 Elsevier Inc. ;Copyright © 2017 Elsevier Inc. All rights reserved. ;ISSN: 1931-3128 ;EISSN: 1934-6069 ;DOI: 10.1016/j.chom.2017.11.006 ;PMID: 29276172

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6
Epithelial inflammasomes, gasdermins, and mucosal inflammation - Lessons from Salmonella and Shigella infected mice
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Epithelial inflammasomes, gasdermins, and mucosal inflammation - Lessons from Salmonella and Shigella infected mice

Seminars in immunology, 2023-11, Vol.70 [Peer Reviewed Journal]

ISSN: 1044-5323 ;ISSN: 1096-3618 ;EISSN: 1096-3618 ;DOI: 10.1016/j.smim.2023.101812

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7
Salmonella-Driven Polarization of Granuloma Macrophages Antagonizes TNF-Mediated Pathogen Restriction during Persistent Infection
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Salmonella-Driven Polarization of Granuloma Macrophages Antagonizes TNF-Mediated Pathogen Restriction during Persistent Infection

Cell host & microbe, 2020-01, Vol.27 (1), p.54-67.e5 [Peer Reviewed Journal]

2019 Elsevier Inc. ;Copyright © 2019 Elsevier Inc. All rights reserved. ;ISSN: 1931-3128 ;EISSN: 1934-6069 ;DOI: 10.1016/j.chom.2019.11.011 ;PMID: 31883922

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8
Salmonella Typhimurium reprograms macrophage metabolism via T3SS effector SopE2 to promote intracellular replication and virulence
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Salmonella Typhimurium reprograms macrophage metabolism via T3SS effector SopE2 to promote intracellular replication and virulence

Nature communications, 2021-02, Vol.12 (1), p.879-879, Article 879 [Peer Reviewed Journal]

The Author(s) 2021. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. ;The Author(s) 2021 ;ISSN: 2041-1723 ;EISSN: 2041-1723 ;DOI: 10.1038/s41467-021-21186-4 ;PMID: 33563986

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9
Polysaccharide-capped silver Nanoparticles inhibit biofilm formation and eliminate multi-drug-resistant bacteria by disrupting bacterial cytoskeleton with reduced cytotoxicity towards mammalian cells
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Polysaccharide-capped silver Nanoparticles inhibit biofilm formation and eliminate multi-drug-resistant bacteria by disrupting bacterial cytoskeleton with reduced cytotoxicity towards mammalian cells

Scientific reports, 2016-04, Vol.6 (1), p.24929, Article 24929 [Peer Reviewed Journal]

Copyright Nature Publishing Group Apr 2016 ;Copyright © 2016, Macmillan Publishers Limited 2016 Macmillan Publishers Limited ;ISSN: 2045-2322 ;EISSN: 2045-2322 ;DOI: 10.1038/srep24929 ;PMID: 27125749

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10
LPS Remodeling Triggers Formation of Outer Membrane Vesicles in Salmonella
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LPS Remodeling Triggers Formation of Outer Membrane Vesicles in Salmonella

mBio, 2016-07, Vol.7 (4) [Peer Reviewed Journal]

Copyright © 2016 Elhenawy et al. ;Copyright © 2016 Elhenawy et al. 2016 Elhenawy et al. ;ISSN: 2161-2129 ;EISSN: 2150-7511 ;DOI: 10.1128/mBio.00940-16 ;PMID: 27406567

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11
Anti-infective bile acids bind and inactivate a Salmonella virulence regulator
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Anti-infective bile acids bind and inactivate a Salmonella virulence regulator

Nature chemical biology, 2023-01, Vol.19 (1), p.91-100 [Peer Reviewed Journal]

2022. The Author(s), under exclusive licence to Springer Nature America, Inc. ;ISSN: 1552-4450 ;EISSN: 1552-4469 ;DOI: 10.1038/s41589-022-01122-3 ;PMID: 36175659

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12
Intestinal inflammation allows Salmonella to use ethanolamine to compete with the microbiota
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Intestinal inflammation allows Salmonella to use ethanolamine to compete with the microbiota

Proceedings of the National Academy of Sciences - PNAS, 2011-10, Vol.108 (42), p.17480-17485 [Peer Reviewed Journal]

copyright © 1993-2008 National Academy of Sciences of the United States of America ;Copyright National Academy of Sciences Oct 18, 2011 ;ISSN: 0027-8424 ;EISSN: 1091-6490 ;DOI: 10.1073/pnas.1107857108 ;PMID: 21969563

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13
Targeting of pancreatic cancer cells and stromal cells using engineered oncolytic Salmonella typhimurium
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Targeting of pancreatic cancer cells and stromal cells using engineered oncolytic Salmonella typhimurium

Molecular therapy, 2022-02, Vol.30 (2), p.662-671 [Peer Reviewed Journal]

2021 The American Society of Gene and Cell Therapy ;Copyright © 2021 The American Society of Gene and Cell Therapy. Published by Elsevier Inc. All rights reserved. ;2021 The American Society of Gene and Cell Therapy. 2021 The American Society of Gene and Cell Therapy ;ISSN: 1525-0016 ;EISSN: 1525-0024 ;DOI: 10.1016/j.ymthe.2021.08.023 ;PMID: 34400328

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14
An Oxidative Central Metabolism Enables Salmonella to Utilize Microbiota-Derived Succinate
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An Oxidative Central Metabolism Enables Salmonella to Utilize Microbiota-Derived Succinate

Cell host & microbe, 2017-09, Vol.22 (3), p.291-301.e6 [Peer Reviewed Journal]

2017 Elsevier Inc. ;Copyright © 2017 Elsevier Inc. All rights reserved. ;ISSN: 1931-3128 ;EISSN: 1934-6069 ;DOI: 10.1016/j.chom.2017.07.018 ;PMID: 28844888

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15
Salmonella Effector SteE Converts the Mammalian Serine/Threonine Kinase GSK3 into a Tyrosine Kinase to Direct Macrophage Polarization
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Salmonella Effector SteE Converts the Mammalian Serine/Threonine Kinase GSK3 into a Tyrosine Kinase to Direct Macrophage Polarization

Cell host & microbe, 2020-01, Vol.27 (1), p.41-53.e6 [Peer Reviewed Journal]

2019 The Authors ;Copyright © 2019 The Authors. Published by Elsevier Inc. All rights reserved. ;2019 The Authors 2019 ;ISSN: 1931-3128 ;EISSN: 1934-6069 ;DOI: 10.1016/j.chom.2019.11.002 ;PMID: 31862381

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16
Salmonella enterica Remodels the Host Cell Endosomal System for Efficient Intravacuolar Nutrition
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Salmonella enterica Remodels the Host Cell Endosomal System for Efficient Intravacuolar Nutrition

Cell host & microbe, 2017-03, Vol.21 (3), p.390-402 [Peer Reviewed Journal]

2017 Elsevier Inc. ;Copyright © 2017 Elsevier Inc. All rights reserved. ;ISSN: 1931-3128 ;EISSN: 1934-6069 ;DOI: 10.1016/j.chom.2017.02.005 ;PMID: 28238623

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17
Cross talk between ABC transporter mRNAs via a target mRNA-derived sponge of the GcvB small RNA
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Cross talk between ABC transporter mRNAs via a target mRNA-derived sponge of the GcvB small RNA

The EMBO journal, 2015-06, Vol.34 (11), p.1478-1492 [Peer Reviewed Journal]

2015 The Authors. Published under the terms of the CC BY NC ND 4.0 license ;2015 The Authors. Published under the terms of the CC BY NC ND 4.0 license. ;2015 The Authors. Published under the terms of the CC BY NC ND 4.0 license 2015 ;ISSN: 0261-4189 ;EISSN: 1460-2075 ;DOI: 10.15252/embj.201490546 ;PMID: 25630703 ;CODEN: EMJODG

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18
Lag Phase Is a Distinct Growth Phase That Prepares Bacteria for Exponential Growth and Involves Transient Metal Accumulation
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Lag Phase Is a Distinct Growth Phase That Prepares Bacteria for Exponential Growth and Involves Transient Metal Accumulation

Journal of Bacteriology, 2012-02, Vol.194 (3), p.686-701 [Peer Reviewed Journal]

2015 INIST-CNRS ;Copyright American Society for Microbiology Feb 2012 ;Copyright © 2012, American Society for Microbiology. All Rights Reserved. 2012 American Society for Microbiology ;ISSN: 0021-9193 ;EISSN: 1098-5530 ;EISSN: 1067-8832 ;DOI: 10.1128/JB.06112-11 ;PMID: 22139505 ;CODEN: JOBAAY

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19
Salmonella exploits membrane reservoirs for invasion of host cells
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Salmonella exploits membrane reservoirs for invasion of host cells

Nature communications, 2024-04, Vol.15 (1), p.3120-3120 [Peer Reviewed Journal]

2024. The Author(s). ;The Author(s) 2024. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. ;The Author(s) 2024 ;EISSN: 2041-1723 ;DOI: 10.1038/s41467-024-47183-x ;PMID: 38600106

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20
The antimicrobial polymer PHMB enters cells and selectively condenses bacterial chromosomes
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The antimicrobial polymer PHMB enters cells and selectively condenses bacterial chromosomes

Scientific reports, 2016-03, Vol.6 (1), p.23121-23121, Article 23121 [Peer Reviewed Journal]

Copyright Nature Publishing Group Mar 2016 ;Copyright © 2016, Macmillan Publishers Limited 2016 Macmillan Publishers Limited ;ISSN: 2045-2322 ;EISSN: 2045-2322 ;DOI: 10.1038/srep23121 ;PMID: 26996206

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