For: | Porter E, Ma DC, Alvarez S, Faull KF. Antimicrobial lipids: Emerging effector molecules of innate host defense. World J Immunol 2015; 5(2): 51-61 [DOI: 10.5411/wji.v5.i2.51] |
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URL: | https://www.wjgnet.com/2219-2824/full/v5/i2/51.htm |
Number | Citing Articles |
1 |
Phuc Le, Andrew Desbois. Antibacterial Effect of Eicosapentaenoic Acid against Bacillus cereus and Staphylococcus aureus: Killing Kinetics, Selection for Resistance, and Potential Cellular Target. Marine Drugs 2017; 15(11): 334 doi: 10.3390/md15110334
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2 |
Brent A. Beadell, Andy Chieng, Kevin R. Parducho, Zhipeng Dai, Sam On Ho, Gary Fujii, Yixian Wang, Edith Porter. Nano- and Macroscale Imaging of Cholesterol Linoleate and Human Beta Defensin 2-Induced Changes in Pseudomonas aeruginosa Biofilms. Antibiotics 2021; 10(11): 1279 doi: 10.3390/antibiotics10111279
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3 |
Xiangfeng Lai, Seong Hoong Chow, Anton P. Le Brun, Benjamin W. Muir, Phillip J. Bergen, Jacinta White, Heidi H. Yu, Jiping Wang, Jill Danne, Jhih‐hang Jiang, Francesca L. Short, Mei‐Ling Han, Richard A. Strugnell, Jiangning Song, Neil R. Cameron, Anton Y. Peleg, Jian Li, Hsin‐Hui Shen. Polysaccharide‐Targeting Lipid Nanoparticles to Kill Gram‐Negative Bacteria. Small 2024; 20(6) doi: 10.1002/smll.202305052
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4 |
Timothy Jong, Poonam Mudgil. Exploring antimicrobial properties of cholesterol esters: a systematic literature review. All Life 2022; 15(1): 684 doi: 10.1080/26895293.2022.2085816
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5 |
Carol L. Fischer. Antimicrobial Activity of Host-Derived Lipids. Antibiotics 2020; 9(2): 75 doi: 10.3390/antibiotics9020075
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6 |
Annie H. Cheung Lam, Natalie Sandoval, Ritambhara Wadhwa, Janine Gilkes, Thai Q. Do, William Ernst, Su-Ming Chiang, Suzanne Kosina, H. Howard Xu, Gary Fujii, Edith Porter. Assessment of free fatty acids and cholesteryl esters delivered in liposomes as novel class of antibiotic. BMC Research Notes 2016; 9(1) doi: 10.1186/s13104-016-2138-8
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7 |
Siva Bala Subramaniyan, Fuad Ameen, Fathiah A Zakham, Veerappan Anbazhagan. Activity of lipid-loaded lectin against co-infection ofCandida albicansandStaphylococcus aureususing the zebrafish model. Journal of Applied Microbiology 2023; 134(1) doi: 10.1093/jambio/lxac050
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8 |
Ankit Sharma, Ashu Rani, Shobhana Sharma, Kunjbihari Malav, Tushar Balichwal, Yogesh kumar Paridwal, Shikha Sharma, Sushil Kumar Sharma. Linear electronic relationship of surface functionalized fly ash and substituted phenols on bactericidal activity with the computational study. Vietnam Journal of Chemistry 2024; doi: 10.1002/vjch.202300393
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9 |
Qianyu Zhang, Wen Wu, Jinqiang Zhang, Xuefeng Xia. Antimicrobial lipids in nano-carriers for antibacterial delivery. Journal of Drug Targeting 2020; 28(3): 271 doi: 10.1080/1061186X.2019.1681434
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10 |
Edith Porter, Juan-Carlos Saiz, Joseph T. Nickels. Editorial: Lipids in host microbe interaction. Frontiers in Cellular and Infection Microbiology 2022; 12 doi: 10.3389/fcimb.2022.1002856
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11 |
Congcong Li, Haoyuan Han, Xiuling Li, Jiao Wu, Xinfeng Li, Hui Niu, Wantao Li, Zhongliang Ma. Analysis of lncRNA, miRNA, and mRNA Expression Profiling in Type I IFN and Type II IFN Overexpressed in Porcine Alveolar Macrophages. International Journal of Genomics 2021; 2021: 1 doi: 10.1155/2021/6666160
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12 |
Natalia Bravo-Santano, James K. Ellis, Yolanda Calle, Hector C. Keun, Volker Behrends, Michal Letek. Intracellular Staphylococcus aureus Elicits the Production of Host Very Long-Chain Saturated Fatty Acids with Antimicrobial Activity. Metabolites 2019; 9(7): 148 doi: 10.3390/metabo9070148
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13 |
Donald F. Weaver. Endogenous Antimicrobial‐Immunomodulatory Molecules: Networking Biomolecules of Innate Immunity. ChemBioChem 2024; 25(12) doi: 10.1002/cbic.202400089
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