Nanocarriers for the delivery of antibiotics into cells against intracellular bacterial infection

The barrier function of host cells enables intracellular bacteria to evade the lethality of the host immune system and antibiotics, thereby causing chronic and recurrent infections that seriously threaten human health. Currently, the main clinical strategy for the treatment of intracellular bacteria...

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Veröffentlicht in:Biomaterials science 2023-01, Vol.11 (2), p.432-444
Hauptverfasser: Wang, Chao, Yang, Yi, Cao, Yuanyuan, Liu, Kaixin, Shi, Hua, Guo, Xudong, Liu, Wanying, Hao, Rongzhang, Song, Hongbin, Zhao, Rongtao
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container_end_page 444
container_issue 2
container_start_page 432
container_title Biomaterials science
container_volume 11
creator Wang, Chao
Yang, Yi
Cao, Yuanyuan
Liu, Kaixin
Shi, Hua
Guo, Xudong
Liu, Wanying
Hao, Rongzhang
Song, Hongbin
Zhao, Rongtao
description The barrier function of host cells enables intracellular bacteria to evade the lethality of the host immune system and antibiotics, thereby causing chronic and recurrent infections that seriously threaten human health. Currently, the main clinical strategy for the treatment of intracellular bacterial infections involves the use of long-term and high-dose antibiotics. However, insufficient intracellular delivery of antibiotics along with various resistance mechanisms not only weakens the efficacy of current therapies but also causes serious adverse drug reactions, further increasing the disease and economic burden. Improving the delivery efficiency, intracellular accumulation, and action time of antibiotics remains the most economical and effective way to treat intracellular bacterial infections. The rapid development of nanotechnology provides a strategy to efficiently deliver antibiotics against intracellular bacterial infections into cells. In this review, we summarize the types of common intracellular pathogens, the difficulties faced by antibiotics in the treatment of intracellular bacterial infections, and the research progress of several types of representative nanocarriers for the delivery of antibiotics against intracellular bacterial infections that have emerged in recent years. This review is expected to provide a reference for further elucidating the intracellular transport mechanism of nanocarrier-drug complexes, designing safer and more effective nanocarriers and establishing new strategies against intracellular bacterial infection. Nanocarrier systems provide a strategy to efficiently deliver antibiotics into cells against intracellular bacterial infections.
doi_str_mv 10.1039/d2bm01489k
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In this review, we summarize the types of common intracellular pathogens, the difficulties faced by antibiotics in the treatment of intracellular bacterial infections, and the research progress of several types of representative nanocarriers for the delivery of antibiotics against intracellular bacterial infections that have emerged in recent years. This review is expected to provide a reference for further elucidating the intracellular transport mechanism of nanocarrier-drug complexes, designing safer and more effective nanocarriers and establishing new strategies against intracellular bacterial infection. 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source MEDLINE; Royal Society Of Chemistry Journals 2008-
subjects Anti-Bacterial Agents - pharmacology
Anti-Bacterial Agents - therapeutic use
Antibiotics
Bacteria
Bacterial infections
Bacterial Infections - drug therapy
Health services
Humans
Immune system
Infections
Lethality
title Nanocarriers for the delivery of antibiotics into cells against intracellular bacterial infection
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