Literature DB >> 31004359

Drug delivery systems designed to overcome antimicrobial resistance.

Thanh-Nhat Pham1, Pauline Loupias1, Alexandra Dassonville-Klimpt1, Pascal Sonnet1.   

Abstract

Antimicrobial resistance has emerged as a huge challenge to the effective treatment of infectious diseases. Aside from a modest number of novel anti-infective agents, very few new classes of antibiotics have been successfully developed for therapeutic use. Despite the research efforts of numerous scientists, the fight against antimicrobial (ATB) resistance has been a longstanding continued effort, as pathogens rapidly adapt and evolve through various strategies, to escape the action of ATBs. Among other mechanisms of resistance to antibiotics, the sophisticated envelopes surrounding microbes especially form a major barrier for almost all anti-infective agents. In addition, the mammalian cell membrane presents another obstacle to the ATBs that target intracellular pathogens. To negotiate these biological membranes, scientists have developed drug delivery systems to help drugs traverse the cell wall; these are called "Trojan horse" strategies. Within these delivery systems, ATB molecules can be conjugated with one of many different types of carriers. These carriers could include any of the following: siderophores, antimicrobial peptides, cell-penetrating peptides, antibodies, or even nanoparticles. In recent years, the Trojan horse-inspired delivery systems have been increasingly reported as efficient strategies to expand the arsenal of therapeutic solutions and/or reinforce the effectiveness of conventional ATBs against drug-resistant microbes, while also minimizing the side effects of these drugs. In this paper, we aim to review and report on the recent progress made in these newly prevalent ATB delivery strategies, within the current context of increasing ATB resistance.
© 2019 Wiley Periodicals, Inc.

Entities:  

Keywords:  Trojan horse strategy; antibiotic conjugates; antibodies; antimicrobials; nanocarriers; peptides; siderophores

Mesh:

Substances:

Year:  2019        PMID: 31004359     DOI: 10.1002/med.21588

Source DB:  PubMed          Journal:  Med Res Rev        ISSN: 0198-6325            Impact factor:   12.944


  12 in total

1.  Tetracycline Water Soluble Formulations with Enhanced Antimicrobial Activity.

Authors:  A Meretoudi; C N Banti; P Siafarika; A G Kalampounias; S K Hadjikakou
Journal:  Antibiotics (Basel)       Date:  2020-11-26

2.  Insights into idarubicin antimicrobial activity against methicillin-resistant Staphylococcus aureus.

Authors:  Pengfei She; Shijia Li; Linying Zhou; Zhen Luo; Jinfeng Liao; Lanlan Xu; Xianghai Zeng; Ti Chen; Yaqian Liu; Yong Wu
Journal:  Virulence       Date:  2020-01-01       Impact factor: 5.882

3.  The Effects of Luminescent CdSe Quantum Dot-Functionalized Antimicrobial Peptides Nanoparticles on Antibacterial Activity and Molecular Mechanism.

Authors:  Wanzhen Li; Ping Song; Ying Xin; Zhao Kuang; Qin Liu; Fei Ge; Longbao Zhu; Xuguang Zhang; Yugui Tao; Weiwei Zhang
Journal:  Int J Nanomedicine       Date:  2021-03-05

4.  In Vitro and In Vivo Studies on the Antibacterial Activity and Safety of a New Antimicrobial Peptide Dermaseptin-AC.

Authors:  Jiajia Chen; Doudou Hao; Kai Mei; Xin Li; Tingting Li; Chengbang Ma; Xinping Xi; Lei Li; Lei Wang; Mei Zhou; Tianbao Chen; Jia Liu; Qing Wu
Journal:  Microbiol Spectr       Date:  2021-12-15

5.  Reversion of antibiotic resistance in multidrug-resistant pathogens using non-antibiotic pharmaceutical benzydamine.

Authors:  Yuan Liu; Ziwen Tong; Jingru Shi; Yuqian Jia; Tian Deng; Zhiqiang Wang
Journal:  Commun Biol       Date:  2021-11-25

Review 6.  Progress in Alternative Strategies to Combat Antimicrobial Resistance: Focus on Antibiotics.

Authors:  Jayaseelan Murugaiyan; P Anand Kumar; G Srinivasa Rao; Katia Iskandar; Stephen Hawser; John P Hays; Yara Mohsen; Saranya Adukkadukkam; Wireko Andrew Awuah; Ruiz Alvarez Maria Jose; Nanono Sylvia; Esther Patience Nansubuga; Bruno Tilocca; Paola Roncada; Natalia Roson-Calero; Javier Moreno-Morales; Rohul Amin; Ballamoole Krishna Kumar; Abishek Kumar; Abdul-Rahman Toufik; Thaint Nadi Zaw; Oluwatosin O Akinwotu; Maneesh Paul Satyaseela; Maarten B M van Dongen
Journal:  Antibiotics (Basel)       Date:  2022-02-04

7.  Boron Nitride Nanotube as an Antimicrobial Peptide Carrier: A Theoretical Insight.

Authors:  Maryam Zarghami Dehaghani; Babak Bagheri; Farrokh Yousefi; Abbasali Nasiriasayesh; Amin Hamed Mashhadzadeh; Payam Zarrintaj; Navid Rabiee; Mojtaba Bagherzadeh; Vanessa Fierro; Alain Celzard; Mohammad Reza Saeb; Ebrahim Mostafavi
Journal:  Int J Nanomedicine       Date:  2021-03-04

Review 8.  Recent Advances Toward the Use of Mesoporous Silica Nanoparticles for the Treatment of Bacterial Infections.

Authors:  Rafael R Castillo; María Vallet-Regí
Journal:  Int J Nanomedicine       Date:  2021-06-30

9.  Antibody-Enabled Antimicrobial Nanocapsules for Selective Elimination of Staphylococcus aureus.

Authors:  Kristina Ivanova; Aleksandra Ivanova; Eva Ramon; Javier Hoyo; Susana Sanchez-Gomez; Tzanko Tzanov
Journal:  ACS Appl Mater Interfaces       Date:  2020-07-30       Impact factor: 9.229

10.  Study of Iron Piperazine-Based Chelators as Potential Siderophore Mimetics.

Authors:  Pauline Loupias; Isabelle Dechamps-Olivier; Laurent Dupont; Pierre Vanlemmens; Catherine Mullié; Nicolas Taudon; Anne Bouchut; Alexandra Dassonville-Klimpt; Pascal Sonnet
Journal:  Pharmaceuticals (Basel)       Date:  2019-10-23
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