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Drug Repurposing Hypothesis Generation Using the "RE:fine Drugs" System
Published on: December 11, 2016
Diabetes Driven Oncogenesis and Anticancer Potential of Repurposed Antidiabetic Drug: A Systemic Review
Iqra Khan1, Aisha Kamal2, Salman Akhtar1
1Department of Bioengineering, Integral University, Lucknow, 226026, Uttar Pradesh, India.
Abstract:
Diabetes and cancer are two prevalent disorders, pose significant public health challenges and contribute substantially to global mortality rates, with solely 10 million reported cancer-related deaths in 2020. This review explores the pathological association between diabetes and diverse cancer progressions, examining molecular mechanisms and potential therapeutic intersections. From altered metabolic landscapes to dysregulated signaling pathways, the intricate links are delineated, offering a comprehensive understanding of diabetes as a modulator of tumorigenesis. Cancer cells develop drug resistance through mechanisms like enhanced drug efflux, genetic mutations, and altered drug metabolism, allowing them to survive despite chemotherapeutic agent. Glucose emerges as a pivotal player in diabetes progression, and serving as a crucial energy source for cancer cells, supporting their biosynthetic needs and adaptation to diverse microenvironments. Glycation, a non-enzymatic process that produces advanced glycation end products (AGEs), has been linked to the etiology of cancer and has been shown in a number of tumor forms, such as leiomyosarcomas, adenocarcinomas, and squamous cell carcinomas. Furthermore, in aggressive and metastatic breast cancer, the receptor for AGEs (RAGE) is increased, which may increase the malignancy of the tumor. Reprogramming glucose metabolism manifests as hallmark cancer features, including accelerated cell proliferation, angiogenesis, metastasis, and evasion of apoptosis. This manuscript encapsulates the dual narrative of diabetes as a driver of cancer progression and the potential of repurposed antidiabetic drugs as formidable countermeasures. The amalgamation of mechanistic understanding and clinical trial outcomes establishes a robust foundation for further translational research and therapeutic advancements in the dynamic intersection of diabetes and cancer.
Insights
Diabetes fuels cancer progression by altering metabolism and promoting tumor growth. Repurposing diabetes drugs may offer new cancer treatments by targeting these shared pathways.
Area of Science:
- Oncology
- Endocrinology
- Metabolic Research
Background:
- Diabetes and cancer are leading causes of global mortality.
- Complex pathological links exist between diabetes and various cancer types.
- Cancer cells exhibit drug resistance through multiple mechanisms.
Purpose of the Study:
- To review the pathological association between diabetes and cancer.
- To explore molecular mechanisms linking these two diseases.
- To identify potential therapeutic strategies at their intersection.
Main Methods:
- Literature review of pathological associations.
- Analysis of molecular mechanisms (metabolic, signaling pathways).
- Examination of glucose metabolism, glycation, and AGEs/RAGE axis in tumorigenesis.
Main Results:
- Altered glucose metabolism in diabetes promotes cancer hallmarks like proliferation and metastasis.
- Advanced Glycation End products (AGEs) and their receptor (RAGE) are implicated in cancer etiology and progression.
- Reprogramming of glucose metabolism is a key feature in cancer development.
Conclusions:
- Diabetes acts as a significant modulator of cancer progression.
- Repurposed antidiabetic drugs show potential as cancer countermeasures.
- Further research is needed for therapeutic advancements at the diabetes-cancer intersection.
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