Biointerface-Engineered Gold and Silver Nanoparticles for Skin Cancer Therapy: Linking Nano–Biointerface Design to Therapeutic Function and Clinical Translation

Skin cancer therapy continues to face challenges in achieving selective tumour targeting while limiting damage to healthy tissue. Gold nanoparticles (AuNPs) and silver nanoparticles (AgNPs) have emerged as versatile platforms for skin cancer treatment, but their therapeutic behaviour is strongly influenced by the nano-biointerface. This review critically examines how particle size, morphology, surface chemistry, ligand functionalization, and biomimetic coatings influence skin penetration, cellular uptake, tumour localization, and therapeutic activity. The reviewed evidence indicates that AuNPs are particularly suited to photothermal and photodynamic therapies because their plasmonic properties enable localized light-mediated effects, whereas AgNPs exhibit prominent cytotoxic activity associated with reactive oxygen species generation and modulation of the tumour microenvironment. Biointerface engineering can further enable active targeting, improve colloidal stability, alter biodistribution, and integrate multiple therapeutic functions. However, reported improvements in therapeutic efficacy are accompanied by unresolved concerns regarding nanoparticle stability, reproducibility, long-term toxicity, biodistribution, and standardization. Overall, the evidence indicates that nanoparticle performance cannot be considered independently of the nano-biointerface. Rational control of interfacial properties is therefore central to improving targeting precision and therapeutic performance, while standardized characterization, mechanistic understanding, and systematic safety evaluation remain essential for clinical translation.

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Publication Details

Journal
Journal of drug targeting
Published
2026-09-18
DOI
https://doi.org/10.1080/1061186x.2026.2737278
Primary Topic
Graphene and Nanomaterials Applications
Type
article
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article

Biointerface-Engineered Gold and Silver Nanoparticles for Skin Cancer Therapy: Linking Nano–Biointerface Design to Therapeutic Function and Clinical Translation

Mohammed A. S. Abourehab, Urushi Rehman, Prashant Kesharwani, Garima Gupta et al.
Journal of drug targeting
Graphene and Nanomaterials Applications
article

Biointerface-Engineered Gold and Silver Nanoparticles for Skin Cancer Therapy: Linking Nano–Biointerface Design to Therapeutic Function and Clinical Translation

Mohammed A. S. Abourehab, Urushi Rehman, Prashant Kesharwani, Garima Gupta, Aishani Vadi, Khang Wen Goh, Asiya Jahan
article en

Abstract

Skin cancer therapy continues to face challenges in achieving selective tumour targeting while limiting damage to healthy tissue. Gold nanoparticles (AuNPs) and silver nanoparticles (AgNPs) have emerged as versatile platforms for skin cancer treatment, but their therapeutic behaviour is strongly influenced by the nano-biointerface. This review critically examines how particle size, morphology, surface chemistry, ligand functionalization, and biomimetic coatings influence skin penetration, cellular uptake, tumour localization, and therapeutic activity. The reviewed evidence indicates that AuNPs are particularly suited to photothermal and photodynamic therapies because their plasmonic properties enable localized light-mediated effects, whereas AgNPs exhibit prominent cytotoxic activity associated with reactive oxygen species generation and modulation of the tumour microenvironment. Biointerface engineering can further enable active targeting, improve colloidal stability, alter biodistribution, and integrate multiple therapeutic functions. However, reported improvements in therapeutic efficacy are accompanied by unresolved concerns regarding nanoparticle stability, reproducibility, long-term toxicity, biodistribution, and standardization. Overall, the evidence indicates that nanoparticle performance cannot be considered independently of the nano-biointerface. Rational control of interfacial properties is therefore central to improving targeting precision and therapeutic performance, while standardized characterization, mechanistic understanding, and systematic safety evaluation remain essential for clinical translation.

Journal of drug targeting
Lovely Professional University (IN), INTI International University (MY), Asia University (TW), Umm al-Qura University (SA), Dr. D. Y. Patil Medical College, Hospital and Research Centre (IN), Dr. D.Y. Patil Vidyapeeth, Pune (IN), East Asia Research (SG), Dr. Hari Singh Gour University (IN)
Openalex Percentile: Top 21%
Graphene and Nanomaterials Applications
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