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Facile Preparation of Internally Self-assembled Lipid Particles Stabilized by Carbon Nanotubes
Published on: February 19, 2016
Liposomes to Cubosomes: The Evolution of Lipidic Nanocarriers and Their Cutting-Edge Biomedical Applications
Nishtha Attri1, Swarnali Das2, Jhimli Banerjee2
1Amity Institute of Biotechnology, Amity University, Noida 201301, India.
Abstract:
Lipidic nanoparticles have undergone extensive research toward the exploration of their diverse therapeutic applications. Although several liposomal formulations are in the clinic (e.g., DOXIL) for cancer therapy, there are many challenges associated with traditional liposomes. To address these issues, modifications in liposomal structure and further functionalization are desirable, leading to the emergence of solid lipid nanoparticles and the more recent liquid lipid nanoparticles. In this context, "cubosomes", third-generation lipidic nanocarriers, have attracted significant attention due to their numerous advantages, including their porous structure, structural adaptability, high encapsulation efficiency resulting from their extensive internal surface area, enhanced stability, and biocompatibility. Cubosomes offer the potential for both enhanced cellular uptake and controlled release of encapsulated payloads. Beyond cancer therapy, cubosomes have demonstrated effectiveness in wound healing, antibacterial treatments, and various dermatological applications. In this review, the authors provide an overview of the evolution of lipidic nanocarriers, spanning from conventional liposomes to solid lipid nanoparticles, with a special emphasis on the development and application of cubosomes. Additionally, it delves into recent applications and preclinical trials associated with cubosome formulations, which could be of significant interest to readers from backgrounds in nanomedicine and clinicians.
Insights
Cubosomes, advanced lipidic nanocarriers, offer improved cellular uptake and controlled release for diverse therapies. This review highlights their evolution and promising preclinical applications beyond cancer treatment.
Area of Science:
- Nanomedicine
- Biotechnology
- Materials Science
Background:
- Traditional liposomes face challenges in therapeutic applications.
- Advancements led to solid lipid nanoparticles and liquid lipid nanoparticles.
- Cubosomes represent a third-generation lipidic nanocarrier with unique advantages.
Purpose of the Study:
- To review the evolution of lipidic nanocarriers from liposomes to cubosomes.
- To emphasize the development and applications of cubosomes.
- To discuss recent preclinical trials and applications of cubosomes.
Main Methods:
- Literature review of lipidic nanocarrier development.
- Analysis of cubosome properties and advantages.
- Compilation of current and emerging cubosome applications.
Main Results:
- Cubosomes exhibit a porous structure, adaptability, high encapsulation efficiency, stability, and biocompatibility.
- They facilitate enhanced cellular uptake and controlled payload release.
- Cubosomes show potential in cancer therapy, wound healing, antibacterial treatments, and dermatology.
Conclusions:
- Cubosomes are a promising nanocarrier system with significant therapeutic potential.
- Their unique properties address limitations of earlier lipidic systems.
- Further preclinical research supports diverse applications in nanomedicine and clinical practice.

