Hybrid Nanosystems of Antibiotics with Metal Nanoparticles-Novel Antibacterial Agents

被引:19
作者
Shabatina, Tatyana I. [1 ,2 ]
Vernaya, Olga I. [1 ,2 ]
Melnikov, Mikhail Y. [1 ]
机构
[1] Moscow MV Lomonosov State Univ, Dept Chem, Moscow 119991, Russia
[2] NE Bauman Moscow Tech Univ, Dept Fundamental Sci, Moscow 105005, Russia
来源
MOLECULES | 2023年 / 28卷 / 04期
基金
俄罗斯科学基金会;
关键词
nanometals; metal oxide nanoparticles; antibiotics; resistant bacterial strains; hybrid nanocomposites; antibacterial activity; metal-antibiotic complexes; drug delivery; ZINC-OXIDE NANOPARTICLES; SILVER NANOPARTICLES; ANTIMICROBIAL ACTIVITY; GOLD NANOPARTICLES; COPPER-OXIDE; CRYOCHEMICAL SYNTHESIS; BACTERIAL-RESISTANCE; GENTAMICIN SULFATE; GREEN SYNTHESIS; DRUG-DELIVERY;
D O I
10.3390/molecules28041603
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The appearance and increasing number of microorganisms resistant to the action of antibiotics is one of the global problems of the 21st century. Already, the duration of therapeutic treatment and mortality from infectious diseases caused by pathogenic microorganisms have increased significantly over the last few decades. Nanoscale inorganic materials (metals and metal oxides) with antimicrobial potential are a promising solution to this problem. Here we discuss possible mechanisms of pathogenic microorganisms' resistance to antibiotics, proposed mechanisms of action of inorganic nanoparticles on bacterial cells, and the possibilities and benefits of their combined use with antibacterial drugs. The prospects of using metal and metal oxide nanoparticles as carriers in targeted delivery systems for antibacterial compositions are also discussed.
引用
收藏
页数:20
相关论文
共 131 条
  • [1] Adesina A.O., 2022, MEDCHEMCOMM, V7, P76
  • [2] Comparative Study of Antibiofilm Activity of Copper Oxide and Iron Oxide Nanoparticles Against Multidrug Resistant Biofilm Forming Uropathogens
    Agarwala, Munin
    Choudhury, Bula
    Yadav, R. N. S.
    [J]. INDIAN JOURNAL OF MICROBIOLOGY, 2014, 54 (03) : 365 - 368
  • [3] Zinc oxide nanoparticles conjugated with clinically-approved medicines as potential antibacterial molecules
    Akbar, Noor
    Aslam, Zara
    Siddiqui, Ruqaiyyah
    Shah, Muhammad Raza
    Khan, Naveed Ahmed
    [J]. AMB EXPRESS, 2021, 11 (01)
  • [4] Al Sa'ady A., 2020, Systematic Reviews in Pharmacy, V11, P53, DOI [10.31838/srp.2020.10.11, DOI 10.31838/SRP.2020.10.11]
  • [5] Al-Fahdawi A. G. H., 2021, ANN ROMANIAN SOC CEL, P6814
  • [6] Silver Nanoparticle-Based Combinations with Antimicrobial Agents against Antimicrobial-Resistant Clinical Isolates
    Alotaibi, Areej M.
    Alsaleh, Nasser B.
    Aljasham, Alanoud T.
    Tawfik, Essam A.
    Almutairi, Mohammed M.
    Assiri, Mohammed A.
    Alkholief, Musaed
    Almutairi, Mashal M.
    [J]. ANTIBIOTICS-BASEL, 2022, 11 (09):
  • [7] Antibacterial, antifungal, antiviral, and photocatalytic activities of TiO2 nanoparticles, nanocomposites, and bio-nanocomposites: Recent advances and challenges
    Amiri, Mohammad Reza
    Alavi, Mehran
    Taran, Mojtaba
    Kahrizi, Danial
    [J]. JOURNAL OF PUBLIC HEALTH RESEARCH, 2022, 11 (02)
  • [8] Amirulhusni A.N., 2012, International Journal of Medical, Health, Biomedical, Bioengineering and Pharmaceutical Engineering, V6, P291, DOI DOI 10.5281/ZENODO.1329579
  • [9] Determination of minimum inhibitory concentrations
    Andrews, JM
    [J]. JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY, 2001, 48 : 5 - 16
  • [10] Antibiotic resistance: a rundown of a global crisis
    Aslam, Bilal
    Wang, Wei
    Arshad, Muhammad Imran
    Khurshid, Mohsin
    Muzammil, Saima
    Rasool, Muhammad Hidayat
    Nisar, Muhammad Atif
    Alvi, Ruman Farooq
    Aslam, Muhammad Aamir
    Qamar, Muhammad Usman
    Salamat, Muhammad Khalid Farooq
    Baloch, Zulqarnain
    [J]. INFECTION AND DRUG RESISTANCE, 2018, 11 : 1645 - 1658