Nanocarrier-mediated drugs targeting cancer stem cells: an emerging delivery approach

Sarandeep Malhi1, Xiaochen Gu

  • 1University of Manitoba, College of Pharmacy, Faculty of Health Sciences , 750 McDermot Avenue Winnipeg, MB R3E 0H5 , Canada.

Abstract

Insights

Targeting cancer stem cells (CSCs) with nanocarriers offers a promising strategy to overcome drug resistance, metastasis, and recurrence. This approach aims to improve cancer therapy by specifically delivering treatments to CSCs, addressing limitations of conventional methods.

Area of Science:

  • Oncology
  • Nanotechnology
  • Drug Delivery

Background:

  • Cancer stem cells (CSCs) are implicated in drug resistance, metastasis, and recurrence.
  • Conventional therapies often fail to target CSCs effectively.
  • Nanocarrier systems represent a new era in cancer treatment, with CSC-specific targeting showing potential for superior outcomes.

Purpose of the Study:

  • To review the role of CSCs in tumor progression and resistance mechanisms.
  • To highlight current and future CSC-targeted therapeutic strategies, focusing on nanocarrier-based delivery systems.
  • To provide a cancer-specific perspective on anti-CSC therapeutics.

Main Methods:

  • Review of literature on CSCs, tumor progression, and resistance.
  • Analysis of nanocarrier-based drug and nucleic acid delivery systems targeting CSCs.
  • Discussion of novel nanocarriers and their potential in cancer treatment.

Main Results:

  • CSCs contribute significantly to therapeutic resistance and disease progression.
  • Nanocarrier systems demonstrate potential for targeted delivery of anti-cancer agents to CSCs.
  • Various nanocarrier platforms are being evaluated for their efficacy in targeting CSCs.

Conclusions:

  • Targeting CSCs is crucial for improving cancer treatment efficacy.
  • Nanocarrier-based delivery systems show significant promise for overcoming CSC-related challenges.
  • Despite technical and clinical hurdles, nanocarrier approaches offer enhanced anticancer treatment and address resistance, metastasis, and recurrence.

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