Javascript must be enabled to continue!
Ginsenosides as Promising Therapeutic Agents for Glioma: Mechanisms of Action and Future Perspectives
View through CrossRef
Brain cancers, particularly gliomas, are a significant cause of mortality worldwide. Gliomas
are primary tumors of the central nervous system (CNS) and are characterized by diverse clinical
and biological features. Despite advancements in clinical approaches and surgical techniques,
the treatment of high-grade gliomas still poses multiple challenges. This article focuses on a key active
substance found in <i>Panax ginseng</i> called Ginsenosides. Ginsenosides belong to a specific class
of triterpenoid saponins and have demonstrated various therapeutic effects, including neuroprotective,
anticancer, anti-inflammatory, and neuroprotective functions. These compounds have shown
potential in the treatment of gliomas and other cancers. Several pathways associated with ginsenosides,
such as Rg3, Rh2, Rd, and Rb1, have been extensively studied, and these compounds have
been proposed as potential targets in glioma treatment. The precise mechanisms of action of ginsenosides
in gliomas are still being investigated, but their ability to modulate various signalling
pathways and exert multiple therapeutic effects makes them promising candidates for further research
and development. Clinical trials and additional studies are necessary to validate their therapeutic
benefits and determine the optimal dosage, administration route, and potential combination
with other treatment modalities. In summary, ginsenosides, the active compounds found in <i>Panax
ginseng</i>, exhibit various therapeutic effects, including potential anti-cancer properties in gliomas.
Their ability to modulate multiple pathways makes them promising targets for further research in
the field of glioma treatment. However, more studies are required to establish their effectiveness
and safety in clinical settings.
Bentham Science Publishers Ltd.
Title: Ginsenosides as Promising Therapeutic Agents for Glioma: Mechanisms of Action and Future Perspectives
Description:
Brain cancers, particularly gliomas, are a significant cause of mortality worldwide.
Gliomas
are primary tumors of the central nervous system (CNS) and are characterized by diverse clinical
and biological features.
Despite advancements in clinical approaches and surgical techniques,
the treatment of high-grade gliomas still poses multiple challenges.
This article focuses on a key active
substance found in <i>Panax ginseng</i> called Ginsenosides.
Ginsenosides belong to a specific class
of triterpenoid saponins and have demonstrated various therapeutic effects, including neuroprotective,
anticancer, anti-inflammatory, and neuroprotective functions.
These compounds have shown
potential in the treatment of gliomas and other cancers.
Several pathways associated with ginsenosides,
such as Rg3, Rh2, Rd, and Rb1, have been extensively studied, and these compounds have
been proposed as potential targets in glioma treatment.
The precise mechanisms of action of ginsenosides
in gliomas are still being investigated, but their ability to modulate various signalling
pathways and exert multiple therapeutic effects makes them promising candidates for further research
and development.
Clinical trials and additional studies are necessary to validate their therapeutic
benefits and determine the optimal dosage, administration route, and potential combination
with other treatment modalities.
In summary, ginsenosides, the active compounds found in <i>Panax
ginseng</i>, exhibit various therapeutic effects, including potential anti-cancer properties in gliomas.
Their ability to modulate multiple pathways makes them promising targets for further research in
the field of glioma treatment.
However, more studies are required to establish their effectiveness
and safety in clinical settings.
Related Results
Pharmacokinetic study of five ginsenosides using a sensitive and rapid liquid chromatography–tandem mass spectrometry method following single and multiple oral administration of Shexiang Baoxin pills to rats
Pharmacokinetic study of five ginsenosides using a sensitive and rapid liquid chromatography–tandem mass spectrometry method following single and multiple oral administration of Shexiang Baoxin pills to rats
AbstractShexiang Baoxin pills (SBP) are a traditional Chinese medicine that are used for treating coronary heart disease. Ginsenosides are the main effective components of SBP, but...
PLEKHA4 is a prognostic biomarker and correlated with immune infiltrates in glioma
PLEKHA4 is a prognostic biomarker and correlated with immune infiltrates in glioma
Abstract
Background
Gliomas are the most common and life-threatening intracranial tumors. Immune-infiltration of the tumor microenvironment significantly affects tumor pro...
Effect of glycolysis inhibition by miR-448 on glioma radiosensitivity
Effect of glycolysis inhibition by miR-448 on glioma radiosensitivity
OBJECTIVEAlthough glucose metabolism reengineering is a typical feature of various tumors, including glioma, key regulators of glycolytic reprogramming are still poorly understood....
Evaluation of Ginsenosides and Their Derivatives From
Panax ginseng
as Aromatase Inhibitors for Breast Cancer Treatment—An
in silico
study
Evaluation of Ginsenosides and Their Derivatives From
Panax ginseng
as Aromatase Inhibitors for Breast Cancer Treatment—An
in silico
study
Breast cancer, particularly estrogen receptor‐positive subtypes, is a leading cause of cancer‐related mortality worldwide. Aromatase inhibitors, which target estrogen biosynthesis,...
Comprehensive analysis of Histone deacetylases genes in the prognosis and immune infiltration of glioma patients
Comprehensive analysis of Histone deacetylases genes in the prognosis and immune infiltration of glioma patients
Abstract
The occurrence and development of tumors are closely related to histone deacetylases (HDACs). However, the overall biology and prognosis are still unknown ...
Induction of prostaglandin E2 synthesis and microsomal prostaglandin E synthase–1 expression in murine microglia by glioma-derived soluble factors
Induction of prostaglandin E2 synthesis and microsomal prostaglandin E synthase–1 expression in murine microglia by glioma-derived soluble factors
Object
Microglia are one of the members of monocyte/macrophage lineage in the central nervous system (CNS) and exist as ramified microglia in a normal resting state, but they are a...
1H-MR spectroscopy in grading of cerebral glioma: A new view point, MRS image quality assessment
1H-MR spectroscopy in grading of cerebral glioma: A new view point, MRS image quality assessment
Background Noninvasive preoperative prediction of histological grading is essential for clinical management of cerebral glioma. Purpose This study aimed to investigate the associat...
Neuroprotective Effects of Ginsenosides against Cerebral Ischemia
Neuroprotective Effects of Ginsenosides against Cerebral Ischemia
Ginseng has been used worldwide as traditional medicine for thousands of years, and ginsenosides have been proved to be the main active components for their various pharmacological...

