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Nano-Gels: Recent Advancement in Fabrication Methods for Mitigation of Skin Cancer
Ghallab Alotaibi1, Sitah Alharthi1, Biswajit Basu2
1Department of Pharmaceutical Sciences, College of Pharmacy, Shaqra University, Al-Dawadmi Campus, Al-Dawadmi 11961, Saudi Arabia.
Abstract:
In the 21st century, melanoma and non-melanoma skin cancers have become an epidemic outbreak worldwide. Therefore, the exploration of all potential preventative and therapeutic measures based on either physical or bio-chemical mechanisms is essential via understanding precise pathophysiological pathways (Mitogen-activated protein kinase, Phosphatidylinositol 3-kinase Pathway, and Notch signaling pathway) and other aspects of such skin malignancies. Nano-gel, a three-dimensional polymeric cross-linked porous hydrogel having a diameter of 20-200 nm, possesses dual properties of both hydrogel and nanoparticle. The capacity of high drug entrapment efficiency with greater thermodynamic stability, remarkable solubilization potential, and swelling behavior of nano-gel becomes a promising candidate as a targeted drug delivery system in the treatment of skin cancer. Nano-gel can be either synthetically or architectonically modified for responding to either internal or external stimuli, including radiation, ultrasound, enzyme, magnetic, pH, temperature, and oxidation-reduction to achieve controlled release of pharmaceuticals and several bio-active molecules such as proteins, peptides, genes via amplifying drug aggregation in the active targeted tissue and reducing adverse pharmacological effects. Several drugs, such as anti-neoplastic biomolecules having short biological half-lives and prompt enzyme degradability capacity, must be appropriate for administration employing either chemically bridged or physically constructed nano-gel frameworks. The comprehensive review summarizes the advancement in the preparation and characterization methods of targeted nano-gel with enhanced pharmacological potential and preserved intracellular safety limits for the mitigation of skin malignancies with a special emphasize on skin cancer inducing pathophysiological pathways and prospective research opportunities for skin malignancy targeted nano-gels.
Insights
Skin cancer is a growing global health concern. Targeted nano-gels offer a promising solution for delivering anti-cancer drugs effectively, enhancing treatment and reducing side effects.
Area of Science:
- Biomaterials Science
- Nanotechnology
- Dermatology
Background:
- Melanoma and non-melanoma skin cancers represent a significant global health challenge.
- Understanding skin cancer's pathophysiological pathways (e.g., MAPK, PI3K, Notch) is crucial for developing effective treatments.
- Nano-gels, combining hydrogel and nanoparticle properties, show potential for targeted drug delivery in oncology.
Purpose of the Study:
- To review advancements in targeted nano-gel preparation and characterization for skin cancer treatment.
- To highlight the potential of nano-gels in delivering anti-cancer drugs and bioactive molecules.
- To emphasize the role of nano-gels in mitigating skin malignancies by targeting specific pathways.
Main Methods:
- Review of literature on nano-gel synthesis and characterization techniques.
- Analysis of nano-gel properties relevant to drug delivery (e.g., drug entrapment, stability, swelling).
- Exploration of stimuli-responsive nano-gel systems for controlled drug release.
Main Results:
- Nano-gels exhibit high drug entrapment, stability, and swelling, making them suitable for drug delivery.
- Stimuli-responsive nano-gels enable controlled pharmaceutical release, amplifying drug concentration at the target site.
- Nano-gels can encapsulate various bioactive molecules, including anti-neoplastic agents, for enhanced therapeutic efficacy.
Conclusions:
- Targeted nano-gels represent a promising strategy for improving skin cancer treatment outcomes.
- Further research into nano-gel preparation and characterization can enhance pharmacological potential while maintaining safety.
- Nano-gel technology offers a pathway to more effective and safer interventions for skin malignancies.
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