Advances of Green‐Synthesized Nanoparticles for Biomedical Applications.

In biomedical nanotechnology, plant‐mediated production of metallic nanoparticles has become a viable and physiologically adaptable method that offers decreased toxicity, enhanced biocompatibility, and functional surface modification by phytochemical capping. In addition to altering physicochemical...

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Publicado en:BioMed Research International Vol. 2026; pp. 1 - 23
Autores principales: Mobarak, Md Hosne, Al Mahmud, Md. Zobair, Hossain, Amran, Abir, Md. Arman Hossain, Hossain, Nayem, Chowdhury, Mohammad Asaduzzaman, Banerjee, Baisakhi
Formato: pictorial review tables/charts Journal Article
Publicado: Wiley-Blackwell 4/2/2026
Acceso en línea:Ver este registro en EBSCOhost
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      pub: Wiley-Blackwell
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          Mobarak, Md Hosne
          Al Mahmud, Md. Zobair
          Hossain, Amran
          Abir, Md. Arman Hossain
          Hossain, Nayem
          Chowdhury, Mohammad Asaduzzaman
          Banerjee, Baisakhi
        affil: Department of Mechanical Engineering,, IUBAT-International University of Business Agriculture and Technology,, Dhaka, Bangladesh, iubat.edu
      sug:
        subj:
          Nanoparticles Evaluation
          Plant Extracts Analysis
          Plant Extracts Pharmacodynamics
          Nanomedicine Therapeutic Use
          Conservation of Natural Resources Methods
          Biomedical Engineering Methods
          Antiinfective Agents Analysis
          Antioxidants Analysis
          Drug Delivery Systems
          Wound Healing Drug Effects
          Nanostructures
          Nanotechnology
          Plants, Medicinal Analysis
          Materials Testing
          Microscopy
          Antineoplastic Agents Analysis
          Metals Analysis
          Metals Therapeutic Use
          Dental Implants
          Plant Extracts Pharmacokinetics
          Plant Extracts Adverse Effects
      ab: In biomedical nanotechnology, plant‐mediated production of metallic nanoparticles has become a viable and physiologically adaptable method that offers decreased toxicity, enhanced biocompatibility, and functional surface modification by phytochemical capping. In addition to altering physicochemical characteristics, including size, shape, crystallinity, and surface charge, plant extracts also function as reducing, stabilizing, and capping agents, allowing for controlled nanoparticle production. Antimicrobial efficacy, cytotoxic selectivity, antioxidant activity, and interactions with mammalian cells are among the properties that significantly influence biological performance. The mechanistic knowledge of nanoparticle production and structure–activity correlations has been made easier by developments in spectroscopic, microscopic, and surface analytical methods. When taken as a whole, plant‐derived nanoparticles show encouraging biomedical potential in antimicrobial therapy, anticancer applications, wound healing, and drug delivery assisted by nanocarriers. However, they also pose issues with standardization, reproducibility, and translational scalability. This semisystematic review summarizes recent advancements in the synthesis, characterization, and biomedical applications of plant‐derived nanoparticles, highlighting quantitative trends, mechanistic insights, and important knowledge gaps pertinent to future clinical translation. It covers literature from 2015 to 2024 and analyzes over 120 studies.
      pubtype: Academic Journal
      doctype:
        pictorial
        review
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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