ArticleBioactive materials2021
Erythrocyte membrane-camouflaged nanoworms with on-demand antibiotic release for eradicating biofilms using near-infrared irradiation.
Article in Bioactive materials, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. An erratum has been issued. Cited by 17 papers.
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The trial behind it
Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.
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Who cites it
17 citing papers in PubMed.
- Cell membrane biomimetic nanoplatforms: a new strategy for immune escape and precision targeted therapy.Materials today. Bio · 2025Review
- Single-Cell Transcriptome Analysis Reveals That Hmga2 Regulates Neuroinflammation and Retinal Function by Modulating Müller Cell Autophagy Through PI3K/AKT Signaling Following MCAO-Induced Retinal Ischemia.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Article
- Development of Cell-Derived Plasma Membrane Vesicles as a Nanoparticle Encapsulation and Delivery System.Cellular and molecular bioengineering · 2025Article
- Graphene Oxide/Black Phosphorus Functionalized Collagen Scaffolds with Enhanced Near-Infrared Controlled In Situ Biomineralization for Promoting Infectious Bone Defect Repair through PI3K/Akt Pathway.ACS applied materials & interfaces · 2024Article
- Photoresponsive Multirole Nanoweapon Camouflaged by Hybrid Cell Membrane Vesicles for Efficient Antibacterial Therapy of Pseudomonas aeruginosa-Infected Pneumonia and Wound.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2024Article
- Long-Circulating Nanoemulsion with Oxygen and Drug Co-Delivery for Potent Photodynamic/Antibiotic Therapy Against Multidrug-Resistant Gram-Negative Bacterial Infection.International journal of nanomedicine · 2024Article
- Engineering Ag-Decorated Graphene Oxide Nano-Photothermal Platforms with Enhanced Antibacterial Properties for Promoting Infectious Wound Healing.International journal of nanomedicine · 2024Article
- Infection-responsive long-term antibacterial bone plates for open fracture therapy.Bioactive materials · 2023Article
- Photothermal Therapy Mediated Hybrid Membrane Derived Nano-formulation for Enhanced Cancer Therapy.AAPS PharmSciTech · 2023Article
- A photoactivatable and phenylboronic acid-functionalized nanoassembly for combating multidrug-resistant gram-negative bacteria and their biofilms.Burns & trauma · 2023Article
- Recent advances of cell membrane-coated nanoparticles for therapy of bacterial infection.Frontiers in microbiology · 2023Review
- Red Blood Cell Inspired Strategies for Drug Delivery: Emerging Concepts and New Advances.Pharmaceutical research · 2022Review
- Erythrocyte membrane-camouflaged nanoparticles as effective and biocompatible platform: Either autologous or allogeneic erythrocyte-derived.Materials today. Bio · 2022Article
- Engineering Robust Ag-Decorated Polydopamine Nano-Photothermal Platforms to Combat Bacterial Infection and Prompt Wound Healing.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2022Article
- Antibacterial Pathways in Transition Metal-Based Nanocomposites: A Mechanistic Overview.International journal of nanomedicine · 2022Review
- Iron oxide nanoparticles with photothermal performance and enhanced nanozyme activity for bacteria-infected wound therapy.Regenerative biomaterials · 2022Article
- Emerging Trends in Nanomaterials for Antibacterial Applications.International journal of nanomedicine · 2021Review
Corrections and comments
- Erratum issued
Authors and funding
8 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
The increase in the number of resistant bacteria caused by the abuse of antibiotics and the emergence of biofilms significantly reduce the effectiveness of antibiotics. Bacterial infections are detrimental to our life and health. To reduce the abuse of antibiotics and treat biofilm-related bacterial infections, a biomimetic nano-antibacterial system, RBCM-NW-G namely, that controls the release of antibiotics through near infrared was prepared. The hollow porous structure and the high surface activity of nanoworms are used to realize antibiotic loading, and then, biomimetics are applied with red blood cell membranes (RBCM). RBCM-NW-G, which retains the performance of RBCM, shows enhanced permeability and retention effects. Fluorescence imaging in mice showed the effective accumulation of RBCM-NW-G at the site of infection. In addition, the biomimetic nanoparticles showed a longer blood circulation time and good biocompatibility. Anti-biofilm test results showed damage to biofilms due to a photothermal effect and a highly efficient antibacterial performance under the synergy of the photothermal effect, silver iron, and antibiotics. Finally, by constructing a mouse infection model, the great potential of RBCM-NW-G in the treatment of in vivo infections was confirmed.
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