Conversion of Broad-Spectrum Antimicrobial Peptides into Species-Specific Antimicrobials Capable of Precisely Targeting Pathogenic Bacteria
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Q. Ma | Jiajun Wang | Lin Xu | A. Shan | N. Dong | Changxuan Shao | Shuli Chou | Guoyu Li
[1] A. Shan,et al. Highly Stabilized α-Helical Coiled Coils Kill Gram-Negative Bacteria by Multicomplementary Mechanisms under Acidic Condition. , 2019, ACS applied materials & interfaces.
[2] Jiajun Wang,et al. Antimicrobial peptides: Promising alternatives in the post feeding antibiotic era , 2018, Medicinal research reviews.
[3] A. Shan,et al. Central β-turn increases the cell selectivity of imperfectly amphipathic α-helical peptides. , 2018, Acta biomaterialia.
[4] Y. Lyu,et al. Antimicrobial activity, improved cell selectivity and mode of action of short PMAP-36-derived peptides against bacteria and Candida , 2016, Scientific Reports.
[5] Jiajun Wang,et al. Short, multiple-stranded β-hairpin peptides have antimicrobial potency with high selectivity and salt resistance. , 2016, Acta biomaterialia.
[6] Jiajun Wang,et al. Antimicrobial activity and membrane-active mechanism of tryptophan zipper-like β-hairpin antimicrobial peptides , 2015, Amino Acids.
[7] Xin Zhu,et al. Characterization of cell selectivity, physiological stability and endotoxin neutralization capabilities of α-helix-based peptide amphiphiles. , 2015, Biomaterials.
[8] Junguang Jiang,et al. Antimicrobial potency and selectivity of simplified symmetric-end peptides. , 2014, Biomaterials.
[9] K. Iwatsuki,et al. Cathelicidin antimicrobial peptide LL‐37 augments interferon‐β expression and antiviral activity induced by double‐stranded RNA in keratinocytes , 2014, The British journal of dermatology.
[10] A. Yajima. Recent Progress in the Chemistry and Chemical Biology of Microbial Signaling Molecules: Quorum-Sensing Pheromones and Microbial Hormones , 2014 .
[11] Yi Yan Yang,et al. Short Synthetic β‐Sheet Forming Peptide Amphiphiles as Broad Spectrum Antimicrobials with Antibiofilm and Endotoxin Neutralizing Capabilities , 2013 .
[12] D. Teng,et al. Design, expression and characterization of the hybrid antimicrobial peptide LHP7, connected by a flexible linker, against Staphylococcus and Streptococcus , 2013 .
[13] Yoonkyung Park,et al. Effect of repetitive lysine–tryptophan motifs on the bactericidal activity of antimicrobial peptides , 2012, Amino Acids.
[14] R. Eckert,et al. Targeted Antimicrobial Treatment to Re-establish a Healthy Microbial Flora for Long-term Protection , 2012, Advances in dental research.
[15] Marc Torrent,et al. Antimicrobial peptide action on parasites. , 2012, Current drug targets.
[16] Margarida Bastos,et al. Role of lipids in the interaction of antimicrobial peptides with membranes. , 2012, Progress in lipid research.
[17] G. Schneider,et al. Designing antimicrobial peptides: form follows function , 2011, Nature Reviews Drug Discovery.
[18] Yung-Hua Li,et al. A Novel Target-Specific, Salt-Resistant Antimicrobial Peptide against the Cariogenic Pathogen Streptococcus mutans , 2011, Antimicrobial Agents and Chemotherapy.
[19] R. Eckert. Road to clinical efficacy: challenges and novel strategies for antimicrobial peptide development. , 2011, Future microbiology.
[20] J. Wiesner,et al. Antimicrobial peptides: The ancient arm of the human immune system , 2010, Virulence.
[21] W. Shi,et al. Systematic Approach to Optimizing Specifically Targeted Antimicrobial Peptides against Streptococcus mutans , 2010, Antimicrobial Agents and Chemotherapy.
[22] W. Shi,et al. Design and activity of a 'dual-targeted' antimicrobial peptide. , 2009, International journal of antimicrobial agents.
[23] S. M. Asaduzzaman,et al. Lantibiotics: diverse activities and unique modes of action. , 2009, Journal of bioscience and bioengineering.
[24] Shih-Bin Lin,et al. Design and synthesis of cationic antimicrobial peptides with improved activity and selectivity against Vibrio spp. , 2008, International journal of antimicrobial agents.
[25] W. Shi,et al. Targeted Killing of Streptococcus mutans by a Pheromone-Guided “Smart” Antimicrobial Peptide , 2006, Antimicrobial Agents and Chemotherapy.
[26] W. Shi,et al. Adding Selectivity to Antimicrobial Peptides: Rational Design of a Multidomain Peptide against Pseudomonas spp , 2006, Antimicrobial Agents and Chemotherapy.
[27] G. Fimland,et al. Structure and Mode of Action of the Membrane-permeabilizing Antimicrobial Peptide Pheromone Plantaricin A* , 2005, Journal of Biological Chemistry.
[28] K. Brogden. Antimicrobial peptides: pore formers or metabolic inhibitors in bacteria? , 2005, Nature Reviews Microbiology.
[29] C. Donskey,et al. Inhibition of methicillin-resistant Staphylococcus aureus by an in vitro continuous-flow culture containing human stool microflora. , 2004, FEMS microbiology letters.
[30] P. Sansonetti. War and peace at mucosal surfaces , 2004, Nature Reviews Immunology.
[31] Gholson J. Lyon,et al. Peptide signaling in Staphylococcus aureus and other Gram-positive bacteria , 2004, Peptides.
[32] G. Dunny,et al. Enterococcal peptide sex pheromones: synthesis and control of biological activity , 2004, Peptides.
[33] R. Rastall. Nature, Nurture, and the Case for Nutrition Bacteria in the Gut: Friends and Foes and How to Alter the Balance 1 , 2004 .
[34] T. Macdonald,et al. Microbial-gut interactions in health and disease. Immune responses. , 2004, Best practice & research. Clinical gastroenterology.
[35] T. Mitchell,et al. The pathogenesis of streptococcal infections: from Tooth decay to meningitis , 2003, Nature Reviews Microbiology.
[36] Li Yang,et al. An engineered multidomain bactericidal peptide as a model for targeted antibiotics against specific bacteria , 2003, Nature Biotechnology.
[37] H. G. Boman. Innate immunity and the normal microflora , 2000, Immunological reviews.
[38] O. Kuipers,et al. Use of the cell wall precursor lipid II by a pore-forming peptide antibiotic. , 1999, Science.
[39] L Kochevar,et al. Form Follows Function , 1997, AAOHN journal : official journal of the American Association of Occupational Health Nurses.
[40] Lisa C. Crossman,et al. antimicrobial , 2022, The Fairchild Books Dictionary of Fashion.
[41] A. Yajima. Chapter 10 - Recent Advances in the Chemistry and Chemical Biology of Quorum-Sensing Pheromones and Microbial Hormones , 2016 .
[42] Q. Ma,et al. Design of imperfectly amphipathic α-helical antimicrobial peptides with enhanced cell selectivity. , 2014, Acta biomaterialia.
[43] Philippe Sansonetti,et al. Microbial-gut interactions in health and disease. Epithelial cell responses. , 2004, Best practice & research. Clinical gastroenterology.
[44] Y. Shai,et al. Mode of action of membrane active antimicrobial peptides. , 2002, Biopolymers.
[45] Alessandro Tossi,et al. Amphipathic, α‐helical antimicrobial peptides , 2000 .