Smart Stimuli-responsive Nanocarriers in Nanotechnology-based Cancer Diagnosis and Treatment

Soham Joshi, Ganesh Muleva, Laxmikant Borse, Kuldeep Vinchurkar, Sudarshan Singh · Bentham Science Publishers Ltd. · 2026

Smart stimuli-responsive nanocarriers enhance cancer treatment by enabling targeted drug delivery and reducing side effects.

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Plain English summary

This chapter discusses the challenges of current cancer therapies, such as drug resistance and toxicity, and introduces intelligent nanocarriers that can deliver drugs more effectively. These nanocarriers respond to various internal and external stimuli, improving drug targeting and reducing side effects.

Why this matters

The research addresses significant issues in cancer treatment, such as the need for more effective and less toxic therapies. By improving drug delivery systems, this work has the potential to enhance patient outcomes and advance the field of precision oncology.

Key findings

  • Smart nanocarriers can deliver drugs in a controlled manner.
  • They respond to internal and external stimuli for targeted delivery.
  • Functional biomaterials enhance stability and targeting.
  • Theragnostic applications allow for real-time monitoring.
  • Challenges include stability in biological fluids and regulatory hurdles.

What's new

The chapter highlights new approaches like biomimetic engineering and AI-assisted design for nanocarriers in cancer treatment.

Limitations

The abstract notes ongoing challenges such as tumor heterogeneity and immunogenicity that remain despite advancements.

Commercial context

The abstract does not provide information on the commercial status of the technologies discussed.

Publication

Publisher
Bentham Science Publishers Ltd.
Publication date
May 25, 2026
Research type
Paper

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Method note: Summaries and ratings on this page are generated by AI from the abstract only. Read the original paper for full context. · Model: gpt-4o-mini-2024-07-18