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Antigenic Liposomes for Generation of Disease-specific Antibodies
Published on: October 25, 2018
Immunoliposomes: A Targeted Drug Delivery System for Cancer Therapeutics and Vaccination
Reena Gupta1, Jitendra Gupta1, Abhishek Pathak1
1Institute of Pharmaceutical Research, GLA University, Mathura, 281406, Uttar Pradesh, India.
Abstract:
Cancer has become one of the world's most lethal and life-threatening disorders, resulting in many deaths. Drug targeting and managing drug delivery are concepts that are implemented to increase a drug's therapeutic index by enhancing its specificity to particular cells, tissues, or organs and reducing its action and harmful side effects. Liposomes have proven to be one of the most innovative drug delivery systems in medicine. Immunoliposomes, also known as antibody-coupled liposomes, have gained a lot of attention as a homing device for targeted therapies. Monoclonal antibodies or antibody fragments that combine with liposomes to create immunoliposomes have been considered a leading technique for targeted delivery. Various functionalization strategies are adopted for the non-covalent and covalent binding of monoclonal antibodies and their components to liposomal surfaces, such as thiolation, amide bonds, hydrazone bonds, and electrostatic interactions, hydrophobic interactions, hydrogen bonding, etc. for cancer-specific targeting. This provides an overview of various stimulus-responsive immunoliposomes capable of regulating drug release in response to an exogenous magnetic field, changes in temperature or pH, enzyme concentration, endogenous stimuli, and applications of immunoliposomes in vaccination and cancer therapeutics and endogenous immune response stimulation.
Insights
Immunoliposomes, antibody-coupled vesicles, offer targeted cancer therapy by enhancing drug specificity and reducing side effects. These advanced drug delivery systems utilize various binding strategies for precise cancer cell targeting and controlled release.
Area of Science:
- Nanotechnology
- Biomedical Engineering
- Oncology
Background:
- Cancer remains a leading cause of mortality worldwide.
- Effective drug delivery is crucial for improving cancer treatment outcomes.
- Liposomes represent a significant advancement in drug delivery systems.
Purpose of the Study:
- To provide an overview of immunoliposomes as targeted drug delivery vehicles for cancer therapy.
- To discuss strategies for functionalizing liposomes with antibodies for enhanced specificity.
- To explore the applications of stimulus-responsive immunoliposomes in cancer treatment and beyond.
Main Methods:
- Review of current literature on immunoliposome technology.
- Analysis of various antibody-liposome conjugation techniques (e.g., covalent, non-covalent).
- Examination of stimulus-responsive mechanisms for controlled drug release.
Main Results:
- Immunoliposomes demonstrate potential for targeted delivery of therapeutics to cancer cells.
- Functionalization strategies enable specific binding to cancer cells, improving efficacy.
- Stimulus-responsive immunoliposomes allow for controlled drug release based on internal or external cues.
Conclusions:
- Immunoliposomes are a promising platform for targeted cancer therapy.
- Advanced conjugation and stimulus-responsive designs enhance therapeutic potential.
- Applications extend to vaccination and immune response stimulation.
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