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Editorial

Antimicrobial peptides: new drugs for bad bugs?

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Keep up to date with the latest research on this topic with citation updates for this article.

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Giannamaria Annunziato & Gabriele Costantino. (2020) Antimicrobial peptides (AMPs): a patent review (2015–2020). Expert Opinion on Therapeutic Patents 30:12, pages 931-947.
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Kerong Yang, Qing Han, Bingpeng Chen, Yuhao Zheng, Kesong Zhang, Qiang Li & Jincheng Wang. (2018) Antimicrobial hydrogels: promising materials for medical application. International Journal of Nanomedicine 13, pages 2217-2263.
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Brahma N. Singh, Prateeksha, Dalip K. Upreti, Braj Raj Singh, Tom Defoirdt, Vijai K. Gupta, Ana Olivia De Souza, Harikesh Bahadur Singh, João C. M. Barreira, Isabel C. F. R. Ferreira & Khabat Vahabi. (2017) Bactericidal, quorum quenching and anti-biofilm nanofactories: a new niche for nanotechnologists. Critical Reviews in Biotechnology 37:4, pages 525-540.
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Articles from other publishers (93)

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Che-Kang Chang, Mou-Chieh Kao & Chung-Yu Lan. (2021) Antimicrobial Activity of the Peptide LfcinB15 against Candida albicans. Journal of Fungi 7:7, pages 519.
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Mauricio Arias, Evan F. Haney, Ashley L. Hilchie, Jennifer A. Corcoran, M. Eric Hyndman, Robert E.W. Hancock & Hans J. Vogel. (2020) Selective anticancer activity of synthetic peptides derived from the host defence peptide tritrpticin. Biochimica et Biophysica Acta (BBA) - Biomembranes 1862:8, pages 183228.
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Mauricio Arias, James M. Aramini, Nicholas D. Riopel & Hans J. Vogel. (2020) Fluorine-19 NMR spectroscopy of fluorinated analogs of tritrpticin highlights a distinct role for Tyr residues in antimicrobial peptides. Biochimica et Biophysica Acta (BBA) - Biomembranes 1862:6, pages 183260.
Crossref
Berthony Deslouches, Ronald C. Montelaro, Ken L. Urish & Yuanpu P. Di. (2020) Engineered Cationic Antimicrobial Peptides (eCAPs) to Combat Multidrug-Resistant Bacteria. Pharmaceutics 12:6, pages 501.
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Sergio Acosta, Arturo Ibañez-Fonseca, Conrado Aparicio & J. Carlos Rodríguez-Cabello. (2020) Antibiofilm coatings based on protein-engineered polymers and antimicrobial peptides for preventing implant-associated infections. Biomaterials Science 8:10, pages 2866-2877.
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Kishore R. V. Thappeta, Yogesh S. Vikhe, Adeline M. H. Yong, Mary B. Chan-Park & Kimberly A. Kline. (2020) Combined Efficacy of an Antimicrobial Cationic Peptide Polymer with Conventional Antibiotics to Combat Multidrug-Resistant Pathogens. ACS Infectious Diseases 6:5, pages 1228-1237.
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Gopal Pandit, Karishma Biswas, Suvankar Ghosh, Swapna Debnath, Anil P. Bidkar, Priyadarshi Satpati, Anirban Bhunia & Sunanda Chatterjee. (2020) Rationally designed antimicrobial peptides: Insight into the mechanism of eleven residue peptides against microbial infections. Biochimica et Biophysica Acta (BBA) - Biomembranes 1862:4, pages 183177.
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Elham Kordestani Shargh, Majid Pirestani & Javid Sadraei. (2020) In vitro toxicity evaluation of short cationic antimicrobial peptide (CM11) on Blastocystis sp. Acta Tropica 204, pages 105384.
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Bruno Casciaro, Floriana Cappiello, Maria Rosa Loffredo, Francesca Ghirga & Maria Luisa Mangoni. (2020) The Potential of Frog Skin Peptides for Anti-Infective Therapies: The Case of Esculentin-1a(1-21)NH2. Current Medicinal Chemistry 27:9, pages 1405-1419.
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Xiaoyu Liu, Xiaoyan Li, Yan Shan, Yixin Yin, Congrui Liu, Ziyi Lin & Supriya Soraiya Kumar. (2020) CuS nanoparticles anchored to g-C 3 N 4 nanosheets for photothermal ablation of bacteria . RSC Advances 10:21, pages 12183-12191.
Crossref
Miguel Fernández de Ullivarri, Sara Arbulu, Enriqueta Garcia-Gutierrez & Paul D. Cotter. (2020) Antifungal Peptides as Therapeutic Agents. Frontiers in Cellular and Infection Microbiology 10.
Crossref
Albert Bolatchiev, Vladimir Baturin, Igor Bazikov, Alexander Maltsev & Elena Kunitsina. (2019) Effect of antimicrobial peptides HNP ‐1 and hBD ‐1 on Staphylococcus aureus strains in vitro and in vivo . Fundamental & Clinical Pharmacology 34:1, pages 102-108.
Crossref
Anandhi Anandan & Alice Vrielink. (2019) Structure and function of lipid A–modifying enzymes. Annals of the New York Academy of Sciences 1459:1, pages 19-37.
Crossref
Leila Quercini, Jlenia Brunetti, Giulia Riolo, Stefano Bindi, Silvia Scali, Ilaria Lampronti, Elisabetta D'Aversa, Sabine Wronski, Simona Pollini, Mariangela Gentile, Pietro Lupetti, Gian Maria Rossolini, Chiara Falciani, Luisa Bracci & Alessandro Pini. (2019) An antimicrobial molecule mitigates signs of sepsis in vivo and eradicates infections from lung tissue. The FASEB Journal 34:1, pages 192-207.
Crossref
Buzhe Xu, Yann Hermant, Sung‐Hyun Yang, Paul W. R. Harris & Margaret A. Brimble. (2019) A Versatile Boc Solid Phase Synthesis of Daptomycin and Analogues Using Site Specific, On‐Resin Ozonolysis to Install the Kynurenine Residue. Chemistry – A European Journal 25:62, pages 14101-14107.
Crossref
Changbao Sun, Liya Gu, Muhammad Altaf Hussain, Lijun Chen, Li Lin, Haimei Wang, Shiyue Pang, Chenggang Jiang, Zhanmei Jiang & Juncai Hou. (2019) Characterization of the Bioactivity and Mechanism of Bactenecin Derivatives Against Food-Pathogens. Frontiers in Microbiology 10.
Crossref
Réka Spohn, Lejla Daruka, Viktória Lázár, Ana Martins, Fanni Vidovics, Gábor Grézal, Orsolya Méhi, Bálint Kintses, Mónika Számel, Pramod K. Jangir, Bálint Csörgő, Ádám Györkei, Zoltán Bódi, Anikó Faragó, László Bodai, Imre Földesi, Diána Kata, Gergely Maróti, Bernadett Pap, Roland Wirth, Balázs Papp & Csaba Pál. (2019) Integrated evolutionary analysis reveals antimicrobial peptides with limited resistance. Nature Communications 10:1.
Crossref
Fatemeh Mahdavi Abhari, Majid Pirestani & Abdolhossein Dalimi. (2019) Anti-amoebic activity of a cecropin-melittin hybrid peptide (CM11) against trophozoites of Entamoeba histolytica. Wiener klinische Wochenschrift 131:17-18, pages 427-434.
Crossref
Bruno, Maresca, Canaan, Cavalier, Mabrouk, Boidin-Wichlacz, Olleik, Zeppilli, Brodin, Massol, Jollivet, Jung & Tasiemski. (2019) Worms’ Antimicrobial Peptides. Marine Drugs 17:9, pages 512.
Crossref
Sara Pandidan & Adam Mechler. (2019) Nano-viscosimetry analysis of the membrane disrupting action of the bee venom peptide melittin. Scientific Reports 9:1.
Crossref
Hildegunn Norbakken Granslo, Elizabeth G. Aarag Fredheim, Eirin Esaiassen, Lars Christophersen, Peter Østrup Jensen, Tom Eirik Mollnes, Claus Moser, Trond Flægstad, Claus Klingenberg & Jorunn Pauline Cavanagh. (2019) The synthetic antimicrobial peptide LTX 21 induces inflammatory responses in a human whole blood model and a murine peritoneum model . APMIS 127:6, pages 475-483.
Crossref
Manoj Jangra, Manpreet Kaur & Hemraj Nandanwar. (2019) In-vitro studies on a natural lantibiotic, paenibacillin: A new-generation antibacterial drug candidate to overcome multi-drug resistance. International Journal of Antimicrobial Agents 53:6, pages 838-843.
Crossref
Kyriakos G. Varnava & Vijayalekshmi Sarojini. (2019) Making Solid‐Phase Peptide Synthesis Greener: A Review of the Literature. Chemistry – An Asian Journal 14:8, pages 1088-1097.
Crossref
Guillaume André Durand, Didier Raoult & Grégory Dubourg. (2019) Antibiotic discovery: history, methods and perspectives. International Journal of Antimicrobial Agents 53:4, pages 371-382.
Crossref
Fengfeng Xiao, Bing Cao, Congyu Wang, Xujuan Guo, Mengge Li, Da Xing & Xianglong Hu. (2019) Pathogen-Specific Polymeric Antimicrobials with Significant Membrane Disruption and Enhanced Photodynamic Damage To Inhibit Highly Opportunistic Bacteria. ACS Nano 13:2, pages 1511-1525.
Crossref
Esteban N. Lorenzon, Julia P. Piccoli, Norival A. Santos-Filho & Eduardo M. Cilli. (2019) Dimerization of Antimicrobial Peptides: A Promising Strategy to Enhance Antimicrobial Peptide Activity. Protein & Peptide Letters 26:2, pages 98-107.
Crossref
Chin-Hao Yang, Yi-Cheng Chen, Shih-Yi Peng, Andy Po-Yi Tsai, Tony Jer-Fu Lee, Jui-Hung Yen & Je-Wen Liou. (2018) An engineered arginine-rich α-helical antimicrobial peptide exhibits broad-spectrum bactericidal activity against pathogenic bacteria and reduces bacterial infections in mice. Scientific Reports 8:1.
Crossref
Jin-Sol Bae, Ji-Min Jeong, Bo-Hye Nam, Ju-Won Kim, Jung Youn Park & Chan-Il Park. (2018) Gene expressions and biological activities of two novel antimicrobial peptides (AMPs) isolated from leucocytes of the rock bream, Oplegnathus fasciatus. Aquaculture 495, pages 35-43.
Crossref
Wei Shen, Pan He, Chunsheng Xiao & Xuesi Chen. (2018) From Antimicrobial Peptides to Antimicrobial Poly(α-amino acid)s. Advanced Healthcare Materials 7:20, pages 1800354.
Crossref
Dianxiang Li, Yuanyuan Luan, Lei Wang, Mei Qi, Jinxing Wang, Jidong Xu, Badrul Arefin & Meixia Li. (2018) Expression of the Shrimp wap gene in Drosophila elicits defense responses and protease inhibitory activity. Scientific Reports 8:1.
Crossref
C. Chen, B. Deslouches, R.C. Montelaro & Y.P. Di. (2018) Enhanced efficacy of the engineered antimicrobial peptide WLBU2 via direct airway delivery in a murine model of Pseudomonas aeruginosa pneumonia. Clinical Microbiology and Infection 24:5, pages 547.e1-547.e8.
Crossref
Shuqiang Li, Shujun Dong, Weiguo Xu, Shicheng Tu, Lesan Yan, Changwen Zhao, Jianxun Ding & Xuesi Chen. (2018) Antibacterial Hydrogels. Advanced Science 5:5, pages 1700527.
Crossref
Atia-tul-Wahab, Mahwish Siddiqui, Iman Ibrahim, Arifa Hussain, El Hassan Ajandouz, Akram Hijazi, Elias Baydoun & M. Iqbal Choudhary. (2018) Cunninghamella blakesleeana-mediated biotransformation of a contraceptive drug, desogestrel, and anti-MDR-Staphylococcus aureus activity of its metabolites. Bioorganic Chemistry 77, pages 152-158.
Crossref
Hai Chi & Helge Holo. (2017) Synergistic Antimicrobial Activity Between the Broad Spectrum Bacteriocin Garvicin KS and Nisin, Farnesol and Polymyxin B Against Gram-Positive and Gram-Negative Bacteria. Current Microbiology 75:3, pages 272-277.
Crossref
D. Łoboda, H. Kozłowski & M. Rowińska-Żyrek. (2018) Antimicrobial peptide–metal ion interactions – a potential way of activity enhancement. New Journal of Chemistry 42:10, pages 7560-7568.
Crossref
Yeon Ha, Sam Kim, Chae Lee, Chang-Hwan Bae, Joo-Hong Yeo, Il-Suk Kim, Sang Gal, Jin Hur, Ho-Kyoung Jung, Min-Ju Kim & Woo Bang. (2017) Anti-Salmonella Activity Modulation of Mastoparan V1—A Wasp Venom Toxin—Using Protease Inhibitors, and Its Efficient Production via an Escherichia coli Secretion System. Toxins 9:10, pages 321.
Crossref
Berthony Deslouches & Y. Peter Di. (2017) Antimicrobial peptides with selective antitumor mechanisms: prospect for anticancer applications. Oncotarget 8:28, pages 46635-46651.
Crossref
Haiyun Xin, Shengyue Ji, Jiayin Peng, Peng Han, Xiaopeng An, Shan Wang & Binyun Cao. (2017) Isolation and characterisation of a novel antibacterial peptide from a native swine intestinal tract-derived bacterium. International Journal of Antimicrobial Agents 49:4, pages 427-436.
Crossref
Rehab Marray NSRELDEN, Hiroyuki HORIUCHI & Shuichi FURUSAWA. (2017) Expression of ayu antimicrobial peptide genes after LPS stimulation. Journal of Veterinary Medical Science 79:6, pages 1072-1080.
Crossref
Yanyan Zhao, Min Zhang, Shuai Qiu, Jiayi Wang, Jinxiu Peng, Ping Zhao, Ranran Zhu, Hailin Wang, Yuan Li, Kairong Wang, Wenjin Yan & Rui Wang. (2016) Antimicrobial activity and stability of the d-amino acid substituted derivatives of antimicrobial peptide polybia-MPI. AMB Express 6:1.
Crossref
Nermina Malanovic & Karl Lohner. (2016) Antimicrobial Peptides Targeting Gram-Positive Bacteria. Pharmaceuticals 9:3, pages 59.
Crossref
Pushpanathan Muthirulan & Arun Richard Chandrasekaran. (2016) Microbial flow cytometry: An ideal tool for prospective antimicrobial drug development. Analytical Biochemistry 509, pages 89-91.
Crossref
Lauren P. Lashua, Jeffrey A. Melvin, Berthony Deslouches, Joseph M. Pilewski, Ronald C. Montelaro & Jennifer M. Bomberger. (2016) Engineered cationic antimicrobial peptide (eCAP) prevents Pseudomonas aeruginosa biofilm growth on airway epithelial cells . Journal of Antimicrobial Chemotherapy 71:8, pages 2200-2207.
Crossref
Jason N. Cole & Victor Nizet. 2016. Virulence Mechanisms of Bacterial Pathogens. Virulence Mechanisms of Bacterial Pathogens 413 443 .
Berthony Deslouches, Mary L. Hasek, Jodi K. Craigo, Jonathan D. Steckbeck & Ronald C. Montelaro. (2016) Comparative functional properties of engineered cationic antimicrobial peptides consisting exclusively of tryptophan and either lysine or arginine. Journal of Medical Microbiology 65:6, pages 554-565.
Crossref
Lirong Li, Fengxia Song, Jin Sun, Xu Tian, Shufang Xia & Guowei Le. (2016) Membrane damage as first and DNA as the secondary target for anti- candidal activity of antimicrobial peptide P7 derived from cell-penetrating peptide ppTG20 against Candida albicans . Journal of Peptide Science 22:6, pages 427-433.
Crossref
Mauricio Arias, Elesha R. Hoffarth, Hiroaki Ishida, James M. Aramini & Hans J. Vogel. (2016) Recombinant expression, antimicrobial activity and mechanism of action of tritrpticin analogs containing fluoro-tryptophan residues. Biochimica et Biophysica Acta (BBA) - Biomembranes 1858:5, pages 1012-1023.
Crossref
Jason N. Cole & Victor Nizet. (2016) Bacterial Evasion of Host Antimicrobial Peptide Defenses. Microbiology Spectrum 4:1.
Crossref
T. M. Postma & R. M. J. Liskamp. (2016) Highly potent antimicrobial peptide derivatives of bovine cateslytin. RSC Advances 6:97, pages 94840-94844.
Crossref
Camila G. Freitas & Octávio L. Franco. 2016. Recent Trends in Antifungal Agents and Antifungal Therapy. Recent Trends in Antifungal Agents and Antifungal Therapy 75 95 .
Yih-Ling Tzeng & David S. Stephens. (2015) Antimicrobial peptide resistance in Neisseria meningitidis. Biochimica et Biophysica Acta (BBA) - Biomembranes 1848:11, pages 3026-3031.
Crossref
Philip Chi Lip Kwok, Adam Grabarek, Michael Y.T. Chow, Yun Lan, Johnny C.W. Li, Luca Casettari, A. James Mason & Jenny K.W. Lam. (2015) Inhalable spray-dried formulation of D-LAK antimicrobial peptides targeting tuberculosis. International Journal of Pharmaceutics 491:1-2, pages 367-374.
Crossref
Walter Magliani, Laura Giovati, Tecla Ciociola, Martina Sperindè, Claudia Santinoli, Giorgio Conti, Stefania Conti & Luciano Polonelli. (2015) Antibodies as a source of anti-infective peptides: an update. Future Microbiology 10:7, pages 1163-1175.
Crossref
He-Xiang Li, Xin-Jiang Lu, Chang-Hong Li & Jiong Chen. (2015) Molecular characterization of the liver-expressed antimicrobial peptide 2 (LEAP-2) in a teleost fish, Plecoglossus altivelis: Antimicrobial activity and molecular mechanism. Molecular Immunology 65:2, pages 406-415.
Crossref
Fábio Trindade, Francisco Amado, João Pinto da Costa, Rita Ferreira, Catarina Maia, Isabel Henriques, Bruno Colaço & Rui Vitorino. (2015) Salivary peptidomic as a tool to disclose new potential antimicrobial peptides. Journal of Proteomics 115, pages 49-57.
Crossref
Anders P. Hakansson. (2015) Protective effects of human milk antimicrobial peptides against bacterial infection. Jornal de Pediatria (Versão em Português) 91:1, pages 4-5.
Crossref
Anders P. Hakansson. (2015) Protective effects of human milk antimicrobial peptides against bacterial infection. Jornal de Pediatria 91:1, pages 4-5.
Crossref
Mauricio Arias, Leonard Nguyen, Andrea Kuczynski, Tore Lejon & Hans Vogel. (2014) Position-Dependent Influence of the Three Trp Residues on the Membrane Activity of the Antimicrobial Peptide, Tritrpticin. Antibiotics 3:4, pages 595-616.
Crossref

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