神经肽Y受体
药理学
纳米载体
化学
加巴能
癫痫
环糊精
神经肽
药品
医学
生物化学
受体
精神科
作者
Drashti Desai,Pravin Shende
标识
DOI:10.1016/j.nano.2022.102594
摘要
Neuropeptide Y (NPY) is a polypeptide sequence useful in regulating physiological functions like homeostasis, feeding, etc., but its usage is restricted due to its short half-life. β-cyclodextrin-crosslinked nanosponges improve the drug release and stability due to its wide cavity, which is helpful to deliver therapeutics. The present work aimed to formulate synthetic NPY-based nanocarriers as sponges by polymer condensation mechanism using design experiment to improve the peptide release and stability. The validated nanosponges exhibited a particle size of 423.42 ± 5.32 nm, 75.82 ± 7.43 % entrapment efficiency and 83.50 ± 6.54 % NPY release for 24 h. The NPY and β-cyclodextrin interaction was confirmed by X-ray diffraction, Fourier transform infrared and nuclear magnetic resonance spectroscopy. The NPY-loaded nanosponges were found stable for 6 months at two conditions (5 ± 2 °C and 25 ± 2 °C). The cross-linked nanocarriers of synthetic peptide-based nanosponges powder at different doses were administered intranasally using a metered-dose inhaler in the animal model to check its antiepileptic activity. The synthetic NPY-loaded nanosponges at higher doses showed significant antiepileptic effects equivalent to the standard drug (administered orally) in maximal electroshock and chemically-induced seizures with an increase of NPY in the brain directly proportional to GABAergic signalling by increase in GABA levels resulting in convulsions attenuation. Neuropeptide Y-based nanosponges were developed and optimized using central composite design to substantiate stability and controlled peptide release in the treatment of epilepsy using metered-dose inhaler via intranasal delivery. The efficiency of the developed peptide-based nanosponges were evaluated in animal models (Maximal electroshock-induced seizure and pehtylenetetrazole-induced convulsions) and further estimated for the GABA content in blood and brain samples to confirm the antiepileptic activity.
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