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March 26, 2026Nano Trends12 citationsOpen Access

Nanocarrier-Based Strategies for Advanced Cancer Drug Delivery and Therapeutics: Design Principles, Biological Interactions, and Clinical Potential

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SJSujaritha JayarajNJNandhini JayaprakashMDMahalakshmi Devaraji

Key Points

  • The aim is to explore the design principles, biological interactions, and clinical applications of nanocarrier-based drug delivery systems for cancer treatment.
  • Reviewed various nanocarrier types, including liposomes, nanoparticles, and micelles.
  • Assessed their effectiveness in targeted drug delivery and reduction of systemic toxicity.
  • Evaluated recent clinical advancements and therapeutic applications.
  • Highlighted the unique properties of nanocarriers that enhance tumor permeability.
  • Noted the successful integration of therapeutic and diagnostic functions in theranostic nanoparticles.
  • Documented recent advances, including clinical use of liposomal chemotherapies and immunotherapeutic nanoparticles.

Abstract

Cancer continues to pose a significant challenge owing to its biological heterogeneity, drug resistance, and the toxicity of conventional treatments. Nanotechnology has emerged as a transformative approach in oncology, offering advanced platforms for targeted drug delivery, imaging, and multimodal therapy. Diverse nanocarriers—including liposomes, polymeric nanoparticles, dendrimers, micelles, solid lipid nanoparticles, and inorganic systems—possess unique physicochemical properties that enhance tumor permeability, enable controlled or stimuli-responsive drug release, and reduce systemic toxicity. Theranostic nanoparticles further integrate diagnostic and therapeutic functions, supporting the shift toward personalized cancer treatment. Recent clinical progress, including liposomal chemotherapies, mRNA-based immunotherapeutic nanoparticles, and inorganic radiosensitizers, underscores their translational potential. This review critically evaluates the mechanisms, therapeutic applications, recent advances, and limitations of nanoparticle-based cancer therapies and highlights future directions to facilitate their clinical translation.

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Cite This Study

Jayaraj et al. (2026) studied this question.

synapsesocial.com/papers/69c4cd80fdc3bde448919dedhttps://doi.org/10.1016/j.nwnano.2026.100203
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Also Consider

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  1. 1NANOCARRIER-BASED APPROACHES FOR ENHANCED ANTICANCER DRUG DELIVERY2026
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  4. 4Nanotechnology in Cancer Therapy: How Nanoparticles Are Shaping the Future of Personalized Treatment2026 · 8 citations
  5. 5Nanoparticles In Cancer Drug Delivery: Recent Advances, Therapeutic Applications And Challenges2026