Javascript must be enabled to continue!
Zein-Stabilized Nanospheres as Nanocarriers for Boosting the Aphrodisiac Activity of Icariin: Response Surface Optimization and In Vivo Assessment
View through CrossRef
Icariin (ICA), a main active compound of the Epimedium genus, is used as an aphrodisiac in traditional Chinese herbal medicine. Despite its therapeutic efficacy, ICA displays reduced oral absorption, and therefore, low bioavailability hindered its clinical application. Implementing nanotechnology in the field of formulation has been a focus to improve the efficacy of ICA. In this regard, polymeric nanoparticles find a potential application as drug delivery systems. A nanosphere formula was designed, aiming to improve the drug’s efficacy. The proposed ICA nanosphere formula (tocozeinolate) was optimized using D-optimal response surface design. The concentrations of ICA (X1), D-α-tocopherol polyethylene glycol 1000 succinate (TPGS, X2), zein (X3), and sodium deoxycholate (SDC, X4) expressed as percentages were investigated as quantitative independent variables. As per the experimental design, 23 formulations were developed, which were investigated for particle size (PS, nm), zeta potential (ZP, mV), and entrapment efficiency (EE, %) as response parameters. Numerical optimization and desirability approach were employed to predict the optimized variable levels that, upon combination, could result in minimized size and maximized zeta potential and ICA entrapment. The optimized ICA–tocozeinolate nanospheres showed a particle size of 224.45 nm, zeta potential of 0.961 mV, and drug entrapment of 65.29% that coincide well with the predicted values. The optimized ICA–tocozeinolate nanospheres were evaluated for sexual behavior in Wistar male rats compared to raw ICA at equivalent doses (20 mg/kg). In vivo assessment results showed significant sexual behavior enhancement by the optimized formulation, as evidenced by decreased average time of both mount latency (ML) and ejaculation latency (EL) to almost half those of raw ICA. Additionally, intromission latency (IL) time was reduced by 41% compared to the raw ICA. These results highlighted the potential of the proposed ICA–tocozeinolate nanospheres as a promising platform for improving the delivery and efficacy of therapeutic agents.
Title: Zein-Stabilized Nanospheres as Nanocarriers for Boosting the Aphrodisiac Activity of Icariin: Response Surface Optimization and In Vivo Assessment
Description:
Icariin (ICA), a main active compound of the Epimedium genus, is used as an aphrodisiac in traditional Chinese herbal medicine.
Despite its therapeutic efficacy, ICA displays reduced oral absorption, and therefore, low bioavailability hindered its clinical application.
Implementing nanotechnology in the field of formulation has been a focus to improve the efficacy of ICA.
In this regard, polymeric nanoparticles find a potential application as drug delivery systems.
A nanosphere formula was designed, aiming to improve the drug’s efficacy.
The proposed ICA nanosphere formula (tocozeinolate) was optimized using D-optimal response surface design.
The concentrations of ICA (X1), D-α-tocopherol polyethylene glycol 1000 succinate (TPGS, X2), zein (X3), and sodium deoxycholate (SDC, X4) expressed as percentages were investigated as quantitative independent variables.
As per the experimental design, 23 formulations were developed, which were investigated for particle size (PS, nm), zeta potential (ZP, mV), and entrapment efficiency (EE, %) as response parameters.
Numerical optimization and desirability approach were employed to predict the optimized variable levels that, upon combination, could result in minimized size and maximized zeta potential and ICA entrapment.
The optimized ICA–tocozeinolate nanospheres showed a particle size of 224.
45 nm, zeta potential of 0.
961 mV, and drug entrapment of 65.
29% that coincide well with the predicted values.
The optimized ICA–tocozeinolate nanospheres were evaluated for sexual behavior in Wistar male rats compared to raw ICA at equivalent doses (20 mg/kg).
In vivo assessment results showed significant sexual behavior enhancement by the optimized formulation, as evidenced by decreased average time of both mount latency (ML) and ejaculation latency (EL) to almost half those of raw ICA.
Additionally, intromission latency (IL) time was reduced by 41% compared to the raw ICA.
These results highlighted the potential of the proposed ICA–tocozeinolate nanospheres as a promising platform for improving the delivery and efficacy of therapeutic agents.
Related Results
Improving Methionine Content in Transgenic Forage Legumes
Improving Methionine Content in Transgenic Forage Legumes
Leguminous forage crops are high in proteins but deficient in S- amino acids. It has been shown that both wool quality and milk production can be limited by the post-ruminal supply...
Effects of Icariin on Improving Erectile Function in Streptozotocin-Induced Diabetic Rats
Effects of Icariin on Improving Erectile Function in Streptozotocin-Induced Diabetic Rats
Abstract
Introduction
Icariin has been shown to improve penile hemodynamics in animal models of erectile dysfunction from cavern...
HEK 293 cell suspension culture using fibronectin‐adsorbed polymer nanospheres in serum‐free medium
HEK 293 cell suspension culture using fibronectin‐adsorbed polymer nanospheres in serum‐free medium
AbstractPreviously, we reported on suspension culture of anchorage‐dependent animal cells using plain polymer nanospheres in serum‐containing medium. For commercial cell culture, i...
Synthesis and Rheological Properties of Polyacrylamide Nanospheres and SiO
2
/PAM Composite Nanospheres
Synthesis and Rheological Properties of Polyacrylamide Nanospheres and SiO
2
/PAM Composite Nanospheres
Abstract
Polyacrylamide nanospheres are a kind of polymer material that can improve the development effect of oilfield water flooding and rea...
Mesoporous Block‐Copolymer Nanospheres Prepared by Selective Swelling
Mesoporous Block‐Copolymer Nanospheres Prepared by Selective Swelling
AbstractBlock‐copolymer (BCP) nanospheres with hierarchical inner structure are of great interest and importance due to their possible applications in nanotechnology and biomedical...
Encapsulation of Hydrocortisone and Mesalazine in Zein Microparticles
Encapsulation of Hydrocortisone and Mesalazine in Zein Microparticles
Zein was investigated for use as an oral-drug delivery system by loading prednisolone into zein microparticles using coacervation. To investigate the adaptability of this method to...
Effect of Zein Concentration on the Formation of Pectin-Zein Complexes
Effect of Zein Concentration on the Formation of Pectin-Zein Complexes
Biopolymeric particles can be formed by electrostatic complexes of globular proteins and anionic polysaccharides mixtures at pH values above pKa of anionic polysaccharide and under...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...

