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Published on: May 11, 2015
Trends of nanotechnology in type 2 diabetes mellitus treatment
Yannis V Simos1,2, Konstantinos Spyrou3,2, Michaela Patila4,2
1Department of Physiology, Faculty of Medicine, School of Health Sciences, University of Ioannina, Ioannina 45110, Greece.
Abstract:
There are several therapeutic approaches in type 2 diabetes mellitus (T2DM). When diet and exercise fail to control hyperglycemia, patients are forced to start therapy with antidiabetic agents. However, these drugs present several drawbacks that can affect the course of treatment. The major disadvantages of current oral modalities for the treatment of T2DM are mainly depicted in the low bioavailability and the immediate release of the drug, generating the need for an increase in frequency of dosing. In conjugation with the manifestation of adverse side effects, patient compliance to therapy is reduced. Over the past few years nanotechnology has found fertile ground in the development of novel delivery modalities that can potentially enhance anti-diabetic regimes efficacy. All efforts have been targeted towards two main vital steps: (a) to protect the drug by encapsulating it into a nano-carrier system and (b) efficiently release the drug in a gradual as well as controllable manner. However, only a limited number of studies published in the literature used in vivo techniques in order to support findings. Here we discuss the current disadvantages of modern T2DM marketed drugs, and the nanotechnology advances supported by in vivo in mouse/rat models of glucose homeostasis. The generation of drug nanocarriers may increase bioavailability, prolong release and therefore reduce dosing and thus, improve patient compliance. This novel approach might substantially improve quality of life for diabetics. Application of metal nanoformulations as indirect hypoglycemic agents is also discussed.
Insights
Nanotechnology enhances antidiabetic drug delivery for type 2 diabetes mellitus (T2DM) by improving bioavailability and controlling release. This approach aims to reduce dosing frequency and improve patient compliance for better glucose homeostasis.
Area of Science:
- Pharmacology and Nanomedicine
- Endocrinology and Metabolism
Background:
- Current oral antidiabetic agents for type 2 diabetes mellitus (T2DM) suffer from low bioavailability and rapid drug release.
- These limitations necessitate frequent dosing and can lead to adverse effects, reducing patient compliance.
- Existing treatments often fail to adequately control hyperglycemia when lifestyle modifications are insufficient.
Purpose of the Study:
- To review the disadvantages of current T2DM oral therapies.
- To explore advancements in nanotechnology for developing novel antidiabetic drug delivery systems.
- To discuss the potential of nanocarriers to improve drug bioavailability, control release, and enhance patient compliance.
Main Methods:
- Review of current literature on T2DM therapies and nanotechnology applications.
- Discussion of *in vivo* studies in mouse/rat models assessing glucose homeostasis.
- Analysis of drug encapsulation and controlled-release strategies using nanocarriers.
Main Results:
- Nanotechnology offers potential solutions to overcome the limitations of conventional T2DM drugs.
- Drug nanocarriers can increase bioavailability and enable prolonged, controlled drug release.
- *In vivo* studies support the efficacy of nanocarrier systems in managing glucose homeostasis.
Conclusions:
- Nanotechnology-based drug delivery systems show promise for improving T2DM management.
- Enhanced bioavailability and controlled release via nanocarriers can reduce dosing frequency and improve patient adherence.
- Metal nanoformulations are also being investigated as potential indirect hypoglycemic agents.
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