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Metformin and its Nanoformulations in Cancer Prevention and Therapy
Biswajit Banerjee1, Sabyasachi Banerjee2, Tripti Sharma1,3
1Department of Pharmaceutical Chemistry, School of Pharmaceutical Sciences, Siksha 'O' Anusandhan (Deemed to be University), Bhubaneswar, 751003, Odisha, India.
Abstract:
Currently, the resistance to antineoplastic drugs is an important critical challenge in managing several forms of cancers. An improved prognosis for cancer patients is often associated with increased cell death markers. The objective of the current review article was to discuss how metformin works at the molecular level to fight different types of cancer. This review also discussed the latest developments in metformin nanoformulations and their enhanced anticancer effects and the feasibility of using nanoformulation to deliver metformin with its limitations and challenges. In the current review article, we compiled previously reported studies on metformin's anticancer properties and nanoformulations by searching them in commonly used electronic databases such as Scopus, Google Scholar, PubMed, Medline, Science Direct, etc. In many research investigations, it has been reported that metformin (oral antidiabetic drug commonly employed in the clinical management of type 2 diabetes mellitus), can also help fight cancer by encouraging cell death, mostly through a process called apoptosis. Several previously reported investigations revealed that metformin and its nanoformulations are capable of showing significant anticancer activity against various carcinoma cell lines. From the reported literature, it has been found that there was prominent evidence for anticancer activity of metformin. In addition, a number of studies pointed out that metformin-loaded nanoformulations are capable of showing higher antitumor activity than free metformin, resulting in better efficacy in the therapeutic management of cancer. Metformin-loaded nanoformulations can be employed as potentially useful option for cancer treatment.
Insights
Metformin, an antidiabetic drug, shows significant anticancer activity by promoting apoptosis. Metformin nanoformulations enhance this effect, offering a promising strategy for cancer treatment.
Area of Science:
- Oncology
- Pharmacology
- Nanotechnology
Background:
- Drug resistance is a major challenge in cancer therapy.
- Metformin, a common type 2 diabetes medication, exhibits anticancer properties.
- Enhanced drug delivery systems are crucial for improving cancer treatment efficacy.
Purpose of the Study:
- To review metformin's molecular mechanisms against various cancers.
- To discuss advancements in metformin nanoformulations for cancer treatment.
- To evaluate the feasibility, limitations, and challenges of metformin nanoformulations.
Main Methods:
- Comprehensive literature search of electronic databases (Scopus, Google Scholar, PubMed, Medline, Science Direct).
- Compilation and analysis of previously reported studies on metformin's anticancer properties and nanoformulations.
- Review of research investigating metformin's molecular pathways and nanoformulation efficacy.
Main Results:
- Metformin effectively fights cancer by inducing cell death, primarily apoptosis.
- Metformin and its nanoformulations demonstrate significant anticancer activity against diverse carcinoma cell lines.
- Metformin-loaded nanoformulations exhibit superior antitumor activity compared to free metformin.
Conclusions:
- Metformin possesses notable anticancer properties, supported by extensive research.
- Metformin nanoformulations offer enhanced therapeutic efficacy for cancer management.
- Metformin-loaded nanoformulations represent a potentially valuable option for cancer treatment.
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