Lipid-Based Nanotechnologies for Delivery of Green Tea Cat-echins: Advances, Challenges, and Therapeutic Potential

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Abstract

Knowing the superior biochemical defense mechanisms of sessile organisms, it is not hard to believe the cure for any human sickness might be hidden in nature – we “just” have to identify it and make it safely available in the right dose to our organs and cells in need. For decades, green tea catechins (GTCs) have been a case in point. Because of their low redox potential and favorable positioning of hydroxyl groups, these flavonoid representatives (namely, catechin—C, epicatechin—EC, epicatechin gallate—ECG, ep-igallocatechin—EGC, epigallocatechin gallate—EGCG) are among the most potent plant-derived (and not only) antioxidants. The proven anti-inflammatory, neuropro-tective, antimicrobial, and anticarcinogenic properties of these phytochemicals further contribute to their favorable pharmacological profile. Doubtlessly, GTCs hold the po-tential to “cope” with the majority of today‘s socially significant diseases, yet their mass use in clinical practice is still limited. Several factors related to the compounds’ membrane penetrability, chemical stability, and solubility overall determine their low bioavailability. Moreover, the antioxidant-to-prooxidant transitioning behavior of GTCs is highly conditional and, to a certain degree, unpredictable. The nanoparticulate delivery systems represent a logical approach to overcoming one or more of these therapeutic challenges. This review particularly focuses on the lipid-based nanotech-nologies known to be a leading choice when it comes to drug permeation enhancement and not drug release modification or drug stabilization solely. It is our goal to present the privileges of encapsulating green tea catechins in either vesicular or particulate li-pid carriers with respect to the increasingly popular trends of advanced phytotherapy and functional nutrition.

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