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Published on: January 2, 2014
Lymphatic system: a prospective area for advanced targeting of particulate drug carriers
Indu Singh1, Rajan Swami, Wahid Khan
1National Institute of Pharmaceutical Education & Research (NIPER), Department of Pharmaceutics , Hyderabad 500037 , India +91 40 27193004, +91 40 23073741 ; +91 40 27193753, +91 40 23073751 ; sistla@iict.res.in ; wahid@niperhyd.ac.in.
Introduction:
The lymphatic system has a critical role in the immune system's recognition and response to disease and it is an additional circulatory system throughout the entire body. Extensive multidisciplinary investigations have been carried out in the area of lymphatic delivery, and lymphatic targeting has attracted a lot of attention for providing preferential chemotherapy and improving bioavailability of drugs that undergo hepatic first-pass metabolism.
Areas Covered:
This review focuses on progress in the field of lymphatic therapeutics and diagnosis. Moreover, the anatomy and physiology of the lymphatic system, particulate drug carriers and different physicochemical parameters of both modified and unmodified particulate drug carriers and their effect on lymphatic targeting are addressed.
Expert Opinion:
Particulate drug carriers have encouraged lymphatic targeting, but there are still challenges in targeting drugs and bioactives to specific sites, maintaining desired action and crossing all the physiological barriers. Lymphatic therapy using drug-encapsulated lipid carriers, especially liposomes and solid lipid nanoparticles, emerges as a new technology to provide better penetration into the lymphatics where residual disease exists. Size is the most important criteria when designing nanocarriers for targeting lymphatic vessels as the transportation of these particles into lymphatic vessels is size dependent. By increasing our understanding of lymphatic transport and uptake, and the role of lymphatics in various diseases, we can design new therapeutics for effective disease control.
Insights
Particulate drug carriers show promise for lymphatic targeting, but challenges remain in precise delivery and barrier crossing. Lipid-based nanocarriers like liposomes offer new avenues for lymphatic therapy, with particle size being crucial for vessel penetration.
Area of Science:
- Lymphatic system research
- Drug delivery systems
- Nanomedicine
Background:
- The lymphatic system is integral to immune response and drug distribution.
- Lymphatic targeting offers potential for improved chemotherapy and drug bioavailability.
- Hepatic first-pass metabolism can be overcome via lymphatic drug delivery.
Purpose of the Study:
- To review advancements in lymphatic therapeutics and diagnosis.
- To discuss the anatomy and physiology of the lymphatic system.
- To explore particulate drug carriers and their impact on lymphatic targeting.
Main Methods:
- Review of current literature on lymphatic therapeutics.
- Analysis of lymphatic system anatomy and physiology.
- Examination of physicochemical properties of particulate drug carriers.
Main Results:
- Particulate carriers have advanced lymphatic targeting, yet site-specific delivery and barrier penetration remain challenging.
- Liposomes and solid lipid nanoparticles show potential for lymphatic therapy, especially for residual disease.
- Particle size is a critical factor for lymphatic vessel uptake and transport.
Conclusions:
- Understanding lymphatic transport is key to designing effective therapeutics.
- Lipid-based nanocarriers represent a promising frontier in lymphatic disease management.
- Further research is needed to overcome barriers in targeting drugs to specific lymphatic sites.
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