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Studying Pancreatic Cancer Stem Cell Characteristics for Developing New Treatment Strategies
Published on: June 20, 2015
Targeting mitochondrial dysfunctions in pancreatic cancer evokes new therapeutic opportunities
Ammar Sarwar1, Man Zhu2, Qi Su2
1School of Pharmacy, Health Science Center, Xi'an Jiaotong University, Xi'an 710061, PR China; Institute of Pharmaceutical Sciences, University of Veterinary & Animal Sciences, Lahore, Pakistan; State Key Laboratory of Shaanxi for Natural Medicines Research and Engineering, Xi'an 710061, PR China.
Abstract:
Pancreatic cancer (PC) is a highly devastating neoplasm due to its irrepressible characteristics and propensity to override the available treatment strategies. Rapid prevalence and enormous severity of this cancer urgently demand the exploration of novel approaches for the development of effective therapeutic measures. Metabolic derangement is one of the hallmarks of cancers which restructures mitochondrial activities and biological pathways. Apart from their bioenergetic and biosynthetic functions, mitochondria are also implicated in a myriad of cellular functions including proliferation, differentiation, apoptosis, senescence, homeostasis, and other cell regulatory mechanisms. It has been noted that PC, like other types of cancers, exploits these activities in favor of tumor growth and survival by inducing mitochondrial dysfunctions such as mitochondrial-DNA mutation, metabolic enzyme modification, ROS generation, mitophagy, evasion of apoptosis, and mitochondrial biogenesis. During pancreatic carcinogenesis, a large number of onco-factors including Bcl-2 family proteins, NF-κB, HIFs, NRF2, NOX, MFNs, DRP1, DUSP6, Cyp-D, PARKIN, and others are dysregulated, resulting into reprogramming of metabolic pathways and cellular kinetics. Hence, targeted interventions in these metabolic derangements may present some effective anticancer approaches. The current review gives an insight into various mitochondrial disorders and their targetable molecules in PC which may provide certain novel opportunities in the pursuit of therapeutic development. Furthermore, we have also discussed certain treatment perspectives in PC based on specific mitochondrial activities.
Insights
Pancreatic cancer (PC) exploits mitochondrial dysfunction for survival. Targeting these metabolic derangements offers novel therapeutic strategies for this devastating neoplasm.
Area of Science:
- Mitochondrial biology and cancer metabolism.
- Oncology and therapeutic development.
Background:
- Pancreatic cancer (PC) is a severe malignancy with limited treatment options.
- Mitochondria play crucial roles in cellular functions beyond energy production.
- Cancer cells, including PC, hijack mitochondrial activities for growth and survival.
Purpose of the Study:
- To review mitochondrial disorders in pancreatic cancer.
- To identify targetable molecules within these disorders.
- To explore novel therapeutic strategies based on mitochondrial functions.
Main Methods:
- Review of scientific literature on pancreatic cancer and mitochondrial biology.
- Analysis of dysregulated onco-factors and metabolic pathways in PC.
- Identification of specific mitochondrial dysfunctions and their implications.
Main Results:
- PC exhibits mitochondrial dysfunctions including DNA mutations, altered enzyme activity, ROS generation, and apoptosis evasion.
- Numerous onco-factors (e.g., Bcl-2, NF-κB, HIFs) are dysregulated, reprogramming cellular metabolism and kinetics.
- Targeting metabolic derangements presents promising anticancer approaches.
Conclusions:
- Mitochondrial disorders are key drivers of pancreatic cancer progression.
- Targeting specific mitochondrial molecules and pathways offers new therapeutic avenues.
- Further research into mitochondrial-based therapies is crucial for effective PC treatment.
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