scispace - formally typeset
Open AccessJournal ArticleDOI

Curcumin and cancer cells: how many ways can curry kill tumor cells selectively?

Reads0
Chats0
TLDR
Curcumin modulates growth of tumor cells through regulation of multiple cell signaling pathways including cell proliferation pathway, cell survival pathway, and protein kinase pathway.
Abstract
Cancer is a hyperproliferative disorder that is usually treated by chemotherapeutic agents that are toxic not only to tumor cells but also to normal cells, so these agents produce major side effects. In addition, these agents are highly expensive and thus not affordable for most. Moreover, such agents cannot be used for cancer prevention. Traditional medicines are generally free of the deleterious side effects and usually inexpensive. Curcumin, a component of turmeric (Curcuma longa), is one such agent that is safe, affordable, and efficacious. How curcumin kills tumor cells is the focus of this review. We show that curcumin modulates growth of tumor cells through regulation of multiple cell signaling pathways including cell proliferation pathway (cyclin D1, c-myc), cell survival pathway (Bcl-2, Bcl-xL, cFLIP, XIAP, c-IAP1), caspase activation pathway (caspase-8, 3, 9), tumor suppressor pathway (p53, p21) death receptor pathway (DR4, DR5), mitochondrial pathways, and protein kinase pathway (JNK, Akt, and AMPK). How curcumin selectively kills tumor cells, and not normal cells, is also described in detail.

read more

Content maybe subject to copyright    Report

Citations
More filters
Journal ArticleDOI

A Novel Nanoparticle Drug Delivery System: The Anti-inflammatory Activity of Curcumin Is Enhanced When Encapsulated in Exosomes

TL;DR: It is reported that exosomes can deliver anti-inflammatory agents, such as curcumin, to activated myeloid cells in vivo, and the therapeutic relevance of this technique is validated in a lipopolysaccharide (LPS)-induced septic shock mouse model.
Journal ArticleDOI

Treatment of Brain Inflammatory Diseases by Delivering Exosome Encapsulated Anti-inflammatory Drugs From the Nasal Region to the Brain

TL;DR: Exosomes used to encapsulate curcumin or a signal transducer and activator of transcription 3 (Stat3) inhibitor were delivered noninvasively to microglia cells via an intranasal route and demonstrated that this strategy may provide a noninvasive and novel therapeutic approach for treating brain inflammatory-related diseases.
Journal ArticleDOI

Selective killing of cancer cells by a small molecule targeting the stress response to ROS

TL;DR: The ability of a small molecule to induce apoptosis selectively in cells that have a cancer genotypes is demonstrated, by targeting a non-oncogene co-dependency acquired through the expression of the cancer genotype in response to transformation-induced oxidative stress.
Journal ArticleDOI

Exosomes as therapeutic drug carriers and delivery vehicles across biological membranes: current perspectives and future challenges

TL;DR: The origin and structure of exosomes as well as their biological functions are outlined and specific applications of exOSomes as drug delivery systems in pharmaceutical drug development are focused on.
Journal ArticleDOI

Apoptosis: A Target for Anticancer Therapy

TL;DR: Promising new anticancer therapies are plant-derived compounds that exhibit anticancer activity through activating the apoptotic pathway, the cell’s natural mechanism for death.
References
More filters
Journal ArticleDOI

The hallmarks of cancer.

TL;DR: This work has been supported by the Department of the Army and the National Institutes of Health, and the author acknowledges the support and encouragement of the National Cancer Institute.
Journal ArticleDOI

Apoptosis: a basic biological phenomenon with wide-ranging implications in tissue kinetics.

TL;DR: Apoptosis seems to be involved in cell turnover in many healthy adult tissues and is responsible for focal elimination of cells during normal embryonic development, and participates in at least some types of therapeutically induced tumour regression.
Journal ArticleDOI

p53, the Cellular Gatekeeper for Growth and Division

TL;DR: The author regrets the lack of citations for many important observations mentioned in the text, but their omission is made necessary by restrictions in the preparation of review manuscripts.
Book ChapterDOI

Cell death : the significance of apoptosis

TL;DR: It has proved feasible to categorize most if not all dying cells into one or the other of two discrete and distinctive patterns of morphological change, which have, generally, been found to occur under disparate but individually characteristic circumstances.
Journal ArticleDOI

Apoptosis in the pathogenesis and treatment of disease

TL;DR: In multicellular organisms, homeostasis is maintained through a balance between cell proliferation and cell death, and recent evidence suggests that alterations in cell survival contribute to the pathogenesis of a number of human diseases.
Related Papers (5)