ArticleBioresources and bioprocessing2025
Green synthesis of silver nanoparticles from Bacillus subtilis-mediated feather hydrolysate: antimicrobial, larvicidal against culex pipiens, and anticancer activities.
Article in Bioresources and bioprocessing, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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7 citing papers in PubMed.
- Mesembryanthemum crystallinum -guided green synthesis of ZnO nanoparticles with selective anticancer activity via ROS-mediated mitochondrial dysfunction.Bioresources and bioprocessing · 2026Article
- Box-Behnken-Optimized Bacterial Nanocellulose-Silver and Zinc Oxide Nanocomposites: Bactericidal Activity, Antioxidant Capacity, Cytotoxicity, and In vitro Wound Healing Assessment.Applied biochemistry and biotechnology · 2026Article
- Eco-friendly-synthesized chitosan-zinc oxide-selenium nanocomposites: characterization and insecticidal activity.AMB Express · 2026Article
- Phyto mediated synthesis of copper oxide nanoparticles with Zingiber officinale: comprehensive bioactivity assessment against bacterial pathogens, cancer, and viruses.BMC biotechnology · 2026Article
- Box-Behnken optimized copper oxide nanoparticles from Thymus vulgaris potentiate efficacy against multidrug-resistant bacterial pathogens and exhibit anticancer activity.Bioresources and bioprocessing · 2026Article
- Berberine-ZnO loaded chitosan nanoparticles inhibits biofilm formation in Pseudomonas aeruginosa PAO1 through targeting extracellular polymeric substances.BMC biotechnology · 2026Article
- Evaluation of antibacterial and cytotoxic effects of silver oxide nanoparticles synthesized from Psidium Guajava.Scientific reports · 2025Article
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9 authors.
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Abstract
This study presents a novel dual-stage bioprocessing approach that transforms poultry feather waste into multifunctional silver nanoparticles (FWH-AgNPs) with enhanced bioactivity. Bacillus subtilis degradation of feather waste produced bioactive hydrolysate (FWH) with dramatically altered chemical composition, generating novel compounds including 9,12,15-octadecatrienoic acid methyl ester (25.66%) and cyclopropaneoctanoic acid methyl ester (23.02%). The FWH effectively synthesized spherical AgNPs (30-69 nm) with strong colloidal stability (-44.5 mV zeta potential) and characteristic surface plasmon resonance (420 nm). FWH-AgNPs demonstrated superior antimicrobial efficacy with 4-eightfold improved minimum inhibitory concentrations against Pseudomonas aeruginosa (125 μg/mL), methicillin-resistant Staphylococcus aureus (250 μg/mL), Aspergillus brasiliensis (275 μg/mL), and Candida albicans (125 μg/mL). Comparable enhancements were also observed for Serratia marcescens (300 μg/mL) and Bacillus cereus (325 μg/mL), further confirming the broad-spectrum antimicrobial potential of FWH-AgNPs. Anticancer evaluation revealed selective cytotoxicity toward MCF-7 breast cancer cells (IC₅₀: 294.7 μg/L) with favorable selectivity index (2.68) over normal fibroblasts. Optimized FWH-AgNPs achieved 87.38% larvicidal mortality against Culex pipiens, validated through Box-Behnken methodology. Mechanistic studies revealed systematic disruption of larval metabolism, including protein depletion, carbohydrate exhaustion, and acetylcholinesterase inhibition, coupled with severe midgut epithelial damage. Molecular docking identified α1-sitosterol as the primary bioactive compound with strong binding affinities to antimicrobial targets (-7.1 to -7.4 kcal/mol) and cancer receptors (-7.0 to -9.5 kcal/mol). This integrated approach successfully addresses environmental waste management while generating high-value nanomaterials for biomedical and vector control applications, establishing a new paradigm for circular bioeconomy applications.
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