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      Nanofiber-Mediated Sequential Photothermal Antibacteria and Macrophage Polarization for Healing MRSA-Infected Diabetic Wounds

      research Nanofiber-mediated sequential photothermal antibacteria and macrophage polarization for healing MRSA-infected diabetic wounds

      18 citations , December 2021 in “Journal of Nanobiotechnology”
      This study found that nanofibers combining a polydopamine coating and curcumin nanocrystals were effective in treating diabetic wounds infected with methicillin-resistant Staphylococcus aureus by providing sequential photothermal antibacterial action and promoting M2 macrophage polarization, which accelerated wound healing through enhanced angiogenesis and cell proliferation.
      Pulmonary Arterial Aneurysm in Behçet's Disease

      research Pulmonary arterial aneurysm in Behçet's disease

      3 citations , September 1999 in “Journal of the European Academy of Dermatology and Venereology”
      This article reviews pulmonary arterial aneurysms in Behçet's disease and cites previous case reports, but it presents no new data or clinical findings.
      New Drugs: Eculizumab

      research New Drugs: Eculizumab

      August 2009 in “Australian Prescriber”
      This article discusses dutasteride, a new drug for managing benign prostatic hyperplasia, and highlights the need for further experience to confirm its safety and efficacy.

      research Antibacterial quaternary ammonium chitosan/carboxymethyl starch/alginate sponges with enhanced hemostatic property for the prevention of dry socket

      17 citations , January 2023 in “Frontiers in Bioengineering and Biotechnology”
      This study reported that newly developed quaternary ammonium chitosan/carboxymethyl starch/alginate sponges effectively inhibit bacterial growth and promote rapid hemostasis in wound management after tooth extraction in animal models, showing significant promise for clinical use in preventing complications like dry socket.

      research Genetically engineered biomimetic ATP-responsive nanozyme for the treatment of cardiac fibrosis

      2 citations , January 2025 in “Journal of Nanobiotechnology”
      This study demonstrated that genetically engineered, ATP-responsive nanozymes effectively reduce cardiac fibrosis by targeting activated cardiac fibroblasts, resulting in decreased myofibroblast accumulation and improved cardiac function, suggesting that this approach has significant potential for therapeutic applications.

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