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Updated: Mar 25, 2026

Preparation and Characterization of Lipophilic Doxorubicin Pro-drug Micelles
Published on: August 2, 2016
Nanoemulsion: A Novel Eon in Cancer Chemotherapy
Prashant Sahu1, Debashree Das1, Vikash K Mishra1
1Department of Pharmaceutical Sciences, Dr. H.S. Gour Central University, Sagar, MP. India.
Abstract:
Cancer refers to an assemblage of lethal diseases characterized by abnormal growth of cells. The most celebrated adverse effects accredited to the cytotoxic class of anticancer agents are constructed owing to their inability to differentiate between the abnormally multiplying cancerous cell mass and the rapidly dividing healthy cells of the human body. Consequently, unknown targets chemotherapy for cancer play host to a multitude of adverse effects ranging from nausea, alopecia to torturous ages associated with the current treatment etiquette. Nano-pharmaceuticals constitute the advanced scale drug targeting technologies. Nanoemulsion is an important tool in the nano-technological arena designed for clinical and therapeutic application. Currently among different nano-carriers, nanoemulsions are extensively envisaged as efficient drug delivery systems for the targeted delivery of lipophilic cytotoxic antineoplastic agents. Beauties of nanoemulsion include optical clarity, biocompatibility, non-immunogenic, biodegradable, drug encapsulation, sustained and controlled release, nanometric size, large surface area, ease of preparation and thermodynamic stability. After excessive delving, the research fraternity has acknowledged nanoemulsions as proficient nanocarriers capable of effectively addressing the low bioavailability and noncompliance issues associated with the conventional anticancerous chemotherapeutic dosage forms. This review attempts to shed new light on the current status of nanoemulsion in the cancer therapeutics, and commercial field on the basis of morphology, formulation, characteristics and characterization parameters.
Insights
Nanoemulsions offer advanced drug delivery for cancer, improving chemotherapy effectiveness and reducing side effects. These nano-carriers enhance the bioavailability of anticancer agents, addressing limitations of traditional treatments.
Area of Science:
- Nanotechnology
- Pharmaceutical Sciences
- Oncology
Background:
- Cancer is characterized by abnormal cell growth, and current chemotherapy often harms healthy cells, leading to severe side effects.
- Conventional chemotherapy faces challenges with low bioavailability and patient compliance.
- Nano-pharmaceuticals represent advanced drug targeting technologies.
Purpose of the Study:
- To review the current status of nanoemulsions in cancer therapeutics.
- To explore the morphology, formulation, characteristics, and characterization of nanoemulsions for cancer treatment.
- To highlight nanoemulsions as efficient drug delivery systems for anticancer agents.
Main Methods:
- Review of existing literature on nanoemulsions in cancer therapy.
- Analysis of nanoemulsion properties including optical clarity, biocompatibility, and stability.
- Evaluation of nanoemulsions as drug delivery systems for lipophilic cytotoxic agents.
Main Results:
- Nanoemulsions are thermodynamically stable, biodegradable, and facilitate controlled drug release.
- They offer advantages like nanometric size, large surface area, and ease of preparation.
- Nanoemulsions effectively encapsulate and deliver lipophilic cytotoxic anticancer agents.
Conclusions:
- Nanoemulsions are proficient nanocarriers for targeted cancer therapy.
- They address issues of low bioavailability and noncompliance associated with conventional chemotherapy.
- Nanoemulsions show significant potential in both clinical and commercial cancer treatment fields.
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