Javascript must be enabled to continue!
Biological Role of AKT and Regulation of AKT Signaling Pathway by Thymoquinone: Perspectives in Cancer Therapeutics
View through CrossRef
Background:
AKT/PKB is an important enzyme with numerous biological functions, and
its overexpression is related to carcinogenesis. AKT stimulates different signaling pathways that are
downstream of activated tyrosine kinases and phosphatidylinositol 3-kinase, hence functions as an
important target for anti-cancer drugs.
Objective:
In this review article, we have interpreted the role of AKT signaling pathway in cancer and
the natural inhibitory effect of Thymoquinone (TQ) in AKT and its possible mechanisms.
Method:
We have collected the updated information and data on AKT, its role in cancer and the inhibitory
effect of TQ in AKT signaling pathway from Google Scholar, PubMed, Web of Science,
Elsevier, Scopus, and many more.
Results:
Many drugs are already developed, which can target AKT, but very few among them have
passed clinical trials. TQ is a natural compound, mainly found in black cumin, which has been found
to have potential anti-cancer activities. TQ targets numerous signaling pathways, including AKT, in
different cancers. In fact, many studies revealed that AKT is one of the major targets of TQ. The preclinical
success of TQ suggests its clinical studies on cancer.
Conclusion:
This review article summarizes the role of AKT in carcinogenesis, its potent inhibitors in
clinical trials, and how TQ acts as an inhibitor of AKT and TQ’s future as a cancer therapeutic drug.
Bentham Science Publishers Ltd.
Title: Biological Role of AKT and Regulation of AKT Signaling Pathway by Thymoquinone: Perspectives in Cancer Therapeutics
Description:
Background:
AKT/PKB is an important enzyme with numerous biological functions, and
its overexpression is related to carcinogenesis.
AKT stimulates different signaling pathways that are
downstream of activated tyrosine kinases and phosphatidylinositol 3-kinase, hence functions as an
important target for anti-cancer drugs.
Objective:
In this review article, we have interpreted the role of AKT signaling pathway in cancer and
the natural inhibitory effect of Thymoquinone (TQ) in AKT and its possible mechanisms.
Method:
We have collected the updated information and data on AKT, its role in cancer and the inhibitory
effect of TQ in AKT signaling pathway from Google Scholar, PubMed, Web of Science,
Elsevier, Scopus, and many more.
Results:
Many drugs are already developed, which can target AKT, but very few among them have
passed clinical trials.
TQ is a natural compound, mainly found in black cumin, which has been found
to have potential anti-cancer activities.
TQ targets numerous signaling pathways, including AKT, in
different cancers.
In fact, many studies revealed that AKT is one of the major targets of TQ.
The preclinical
success of TQ suggests its clinical studies on cancer.
Conclusion:
This review article summarizes the role of AKT in carcinogenesis, its potent inhibitors in
clinical trials, and how TQ acts as an inhibitor of AKT and TQ’s future as a cancer therapeutic drug.
Related Results
Antitumor Activity of Gemcitabine and Oxaliplatin Is Augmented by Thymoquinone in Pancreatic Cancer
Antitumor Activity of Gemcitabine and Oxaliplatin Is Augmented by Thymoquinone in Pancreatic Cancer
Abstract
Previous studies have shown biological activity of thymoquinone, an active compound extracted from Nigella sativa, in pancreatic cancer cells; however, prec...
Targeting Inflammatory Mediators: An Anticancer Mechanism of Thymoquinone Action
Targeting Inflammatory Mediators: An Anticancer Mechanism of Thymoquinone Action
Background:Thymoquinone is a promising anticancer molecule, the chemopreventive role of which is well-known at least in vitro and in the animal model. In this review article, we fo...
Abstract 1430: CaMKK2 regulates EGF-dependent activation of oncogenic Akt in ovarian cancer cells
Abstract 1430: CaMKK2 regulates EGF-dependent activation of oncogenic Akt in ovarian cancer cells
Abstract
Background-The canonical PI3K/Akt pathway is hyperactive in a variety of cancers including ovarian cancer (OVCa). Using baculovirus-expressed, FPLC-purified...
Cometary Physics Laboratory: spectrophotometric experiments
Cometary Physics Laboratory: spectrophotometric experiments
<p><strong><span dir="ltr" role="presentation">1. Introduction</span></strong&...
Abstract 3595: Abrogation of Akt signaling by Isobavachalcone contributes to its antiproliferative effect towards human cancer cells
Abstract 3595: Abrogation of Akt signaling by Isobavachalcone contributes to its antiproliferative effect towards human cancer cells
Abstract
The Akt (Protein kinase B, PKB) kinase is a key intermediate of many cellular processes and plays a critical role in cancer promotion and progression. Akt s...
Patterns and Prognostic Impact of PI3K-AKT Pathway Activation, Regulation and Downstream Activity in AML Using Reverse Phase Proteins Arrays (RPPA).
Patterns and Prognostic Impact of PI3K-AKT Pathway Activation, Regulation and Downstream Activity in AML Using Reverse Phase Proteins Arrays (RPPA).
Abstract
Functional activation of the PI3K/AKT signaling pathway provides survival signals to leukemic cells and pathway blockade may facilitate cell death. We have ...
THYMOQUINONE RELAXES INTESTINAL SMOOTH MUSCLES THROUGH MUSCARINIC RECEPTOR AND Ca-CHANNEL BLOCKADE
THYMOQUINONE RELAXES INTESTINAL SMOOTH MUSCLES THROUGH MUSCARINIC RECEPTOR AND Ca-CHANNEL BLOCKADE
Background: Functional bowel disorders are common clinical disorders with poorly understood pathophysiology and no gold standard treatment yet. Nigella sativa and its active compon...
Effect of Thymoquinone on Reproductive Parameter in Morphine-treated Male Mice
Effect of Thymoquinone on Reproductive Parameter in Morphine-treated Male Mice
Background:
Thymoquinone as the main active component of Nigella sativa might have a various pharmacological effects such as antiapoptotic and antioxidant. Morphine is ...

