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Plant-Derived Diterpenoids as Potential Chemotherapeutics for Gastric Cancer
Chengu Niu1, Jing Zhang2, Patrick I Okolo3
1Gastroenterology/Hepatology, University of Nebraska Medical Center, S 42nd &, Emile St, Omaha, NE, 68198, USA. chenguniu@gmail.com.
Purpose Of Review:
Gastric cancer remains a leading contributor to cancer-related mortality worldwide despite its declining incidence, with poor survival rates. Standard treatments, such as surgical resection, radiotherapy, chemotherapy, and immunotherapy, often achieve limited success, underscoring an urgent need for the development of novel and effective treatment strategies. Plant-derived diterpenoids demonstrate a wide range of bioactivities including antitumor activity. The aim of this review is to compile, integrate, and discuss the latest information concerning plant-derived diterpenoids with anti-gastric-cancer activities.
Recent Findings:
In this review, we mainly summarize current knowledge on the anticancer effects of plant-derived diterpenoids against gastric cancer, with a focus on their underlying molecular mechanisms, such as induction of apoptosis, modulation of reactive oxygen species, inhibition of metastasis, and chemotherapy sensitization, based primarily on preclinical evidence from in vitro and in vivo experimental evidence, with human clinical data available only for paclitaxel. Among the diterpenoids reviewed, carnosol, triptolide, and paclitaxel demonstrate the most robust preclinical evidence, supported by patient-derived xenograft models, direct target identification, or clinical validation. We also analyze the realistic challenges in translating these plant-derived diterpenoids into clinical practice. We conclude from this review that plant-derived diterpenoids demonstrate anticancer activity against gastric cancer in preclinical models through various pharmacological mechanisms. This review highlights that these key mechanisms are mediated by distinct pharmacological pathways, that most evidence is derived from in vitro and animal studies, and that clinical relevance remains limited. These insights may inform future research aimed at therapeutic development.
Insights
Plant-derived diterpenoids show promise as anticancer agents for gastric cancer, exhibiting antitumor effects through apoptosis induction and metastasis inhibition in preclinical studies. Further research is needed to overcome challenges in clinical translation.
Area of Science:
- Pharmacology
- Natural Products Chemistry
- Oncology
Background:
- Gastric cancer is a major cause of cancer mortality globally, with limited success from standard treatments.
- Novel therapeutic strategies are urgently needed due to poor survival rates in gastric cancer patients.
- Plant-derived diterpenoids possess diverse bioactivities, including potential antitumor effects.
Purpose of the Study:
- To review and discuss the latest findings on plant-derived diterpenoids with anti-gastric-cancer activities.
- To focus on the molecular mechanisms underlying the anticancer effects of these compounds.
- To analyze challenges in translating preclinical findings into clinical applications.
Main Methods:
- Comprehensive literature review of preclinical (in vitro and in vivo) studies.
- Focus on molecular mechanisms: apoptosis induction, reactive oxygen species modulation, metastasis inhibition, and chemotherapy sensitization.
- Analysis of clinical data, primarily for paclitaxel, and evaluation of translation challenges.
Main Results:
- Plant-derived diterpenoids exhibit anticancer activity against gastric cancer in preclinical models.
- Key mechanisms include apoptosis induction, ROS modulation, metastasis inhibition, and chemosensitization.
- Carnosol, triptolide, and paclitaxel show the strongest preclinical evidence, with limited human clinical data.
Conclusions:
- Plant-derived diterpenoids demonstrate significant anticancer potential against gastric cancer via various pharmacological pathways.
- Most evidence is preclinical, highlighting a gap in clinical relevance and translation.
- Future research should focus on overcoming translation challenges to develop effective gastric cancer therapies.
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