Potential antitumor activity of triptolide and its derivatives: Focused on gynecological and breast cancers

Mengjie Li1, Jiamiao Li2, Qing Tang3

  • 1College of Pharmacy, Qinghai University for Nationalities, Xining, China; Department of Pharmacy, Sichuan Clinical Research Center for Cancer, Sichuan Cancer Hospital & Institute, Sichuan Cancer Center, Affiliated Cancer Hospital of University of Electronic Science and Technology of China, Chengdu, China.

Insights

Triptolide (TPL) derivatives show promise for treating gynecological and breast cancers. Novel delivery systems and combinations with existing drugs enhance TPL

Area of Science:

  • Pharmacology
  • Oncology
  • Natural Products Chemistry

Background:

  • Gynecological and breast cancers are significant global health challenges.
  • Natural products offer unique advantages for cancer treatment.
  • Triptolide (TPL), a terpenoid from Tripterygium wilfordii, has antitumor properties but faces limitations like poor solubility and cytotoxicity.

Purpose of the Study:

  • To review novel drug delivery systems for TPL and its derivatives.
  • To summarize the antitumor activities and molecular mechanisms of TPL against gynecological and breast cancers.
  • To highlight the clinical potential and future prospects of TPL analogs.

Main Methods:

  • Review of preclinical and clinical studies on TPL and its derivatives.
  • Analysis of TPL's targeting of multiple signaling pathways.
  • Evaluation of synergistic effects with existing chemotherapeutic agents.

Main Results:

  • TPL derivatives demonstrate significant antitumor effects by inhibiting tumor growth and metastasis.
  • Nanocarrier-based delivery systems and TPL derivatives overcome solubility and cytotoxicity issues.
  • TPL and derivatives show synergistic effects when combined with carboplatin, cisplatin, and PI3K inhibitors, enhancing drug sensitization in resistant cancers.

Conclusions:

  • TPL and its derivatives hold significant clinical potential for treating gynecological and breast cancers.
  • Further research into TPL analogs and advanced drug delivery systems is warranted.
  • TPL's bench-to-bedside translation offers promising future applications in oncology.

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