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Modulation of apoptosis-related cell signalling pathways by curcumin as a strategy to inhibit tumor progression
Jin Chen1, Feng-Ling Wang, Wei-Dong Chen
1Department of Pharmacy, The Second People's Hospital of Hefei, Hefei, 230011, Anhui, People's Republic of China, eyyxs2013@aliyun.com.
Abstract:
A hallmark of cancer is resistance to apoptosis, with both the loss of proapoptotic signals and the gain of anti-apoptotic mechanisms contributing to tumorigenesis. As inducing apoptosis in malignant cells is one of the most challenging tasks regarding cancer, researchers increasingly focus on natural products to regulate apoptotic signaling pathways. Curcumin, a polyphenolic derivative of turmeric, is a natural compound derived from Curcuma longa, has attracted great interest in the research of cancer during the last half century. Extensive studies revealed that curcumin has chemopreventive properties, which are mainly due to its ability to arrest cell cycle and to induce apoptosis in cancer cells either alone or in combination with chemotherapeutic agents or radiation. The underlying action mechanisms of curcumin are diverse and has not been elucidated so far. By regulating multiple important cellular signalling pathways including NF-κB, TRAIL, PI3 K/Akt, JAK/STAT, Notch-1, JNK, etc., curcumin are known to activate cell death signals and induce apoptosis in pre-cancerous or cancer cells without affecting normal cells, thereby inhibiting tumor progression. Several phase I and phase II clinical trials indicate that curcumin is quite safe and may exhibit therapeutic efficacy. This article reviews the main effects of curcumin on the different apoptotic signaling pathways involved in curcumin induced apoptosis in cancer cells via cellular transduction pathways and provides an in depth assessment of its pharmacological activity in the management of tumor progression.
Insights
Curcumin, a natural compound from turmeric, effectively induces apoptosis in cancer cells by targeting multiple cell signaling pathways. It shows promise in cancer treatment by inhibiting tumor progression with minimal effects on normal cells.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Cancer's hallmark is apoptosis resistance, hindering effective treatment.
- Natural products are explored for regulating apoptotic signaling pathways.
- Curcumin, from turmeric, is a natural compound with significant anticancer research interest.
Purpose of the Study:
- To review curcumin's effects on apoptotic signaling pathways in cancer cells.
- To assess curcumin's pharmacological activity in tumor progression management.
- To elucidate the diverse mechanisms underlying curcumin-induced apoptosis.
Main Methods:
- Literature review of studies on curcumin and apoptosis.
- Analysis of curcumin's impact on cellular transduction pathways.
- Assessment of clinical trial data regarding curcumin's safety and efficacy.
Main Results:
- Curcumin induces apoptosis in cancer cells by regulating pathways like NF-κB, TRAIL, PI3K/Akt, JAK/STAT, Notch-1, and JNK.
- Curcumin inhibits tumor progression by activating cell death signals in pre-cancerous/cancer cells without harming normal cells.
- Phase I and II clinical trials suggest curcumin is safe and potentially therapeutic.
Conclusions:
- Curcumin demonstrates significant potential as an anticancer agent by inducing apoptosis through multiple signaling pathways.
- Its ability to selectively target cancer cells offers a promising therapeutic strategy for tumor management.
- Further research and clinical application of curcumin warrant consideration for cancer therapy.
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