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Aerosol-stable peptide-coated liposome nanoparticles: A proof-of-concept study with opioid fentanyl in enhancing analgesic effects and reducing plasma drug exposure

机译:气溶胶稳定的肽包衣脂质体纳米颗粒:阿片类药物芬太尼在增强止痛效果和减少血浆药物暴露方面的概念验证研究

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Previously, we reported a novel pressurized olfactory drug (POD) delivery device that deposits aerosolized drug preferentially to upper nasal cavity. This POD device provided sustained central nervous system (CNS) levels of soluble morphine analgesic effects. However, analgesic onset of less soluble fentanyl was more rapid but brief, likely because of hydrophobic fentanyl redistribution readily back to blood. To determine whether fentanyl incorporated into an aerosol-stable liposome that binds to nasal epithelial cells will enhance CNS drug exposure and analgesic effects and reduce plasma exposure, we constructed Arg-Gly-Asp (RGD) liposomes anchored with acylated integrin-binding peptides (palmitoyl-Gly-Arg-Gly-Asp-Ser). The RGD liposomes, which assume gel phase membrane structure at 25C, were stable under the stress of aerosolization as only 2.2 ± 0.5% calcein leakage was detected. The RGD-mediated integrin binding of liposome is also verified to be unaffected by aerosolization. Rats treated with fentanyl in RGD liposome and POD device exhibited greater analgesic effect, as compared with the free drug counterpart (AUCeffect = 1387.1% vs. 760.1% MPEmin), whereas approximately 20% reduced plasma drug exposure was noted (AUC0-120 = 208.2 vs. 284.8 ng min/mL). Collectively, fentanyl incorporated in RGD liposomes is physically and biologically stable under aerosolization, enhanced the overall analgesic effects, and reduced plasma drug exposure for the first 2 h.
机译:以前,我们报道了一种新型的加压嗅觉药物(POD)输送装置,该装置优先将气雾化药物沉积到上鼻腔中。这种POD装置提供了持续的中枢神经系统(CNS)可溶性吗啡镇痛作用水平。然而,难溶性芬太尼的镇痛作用起效较快但短暂,可能是由于疏水性芬太尼容易重新分配回血液。为了确定将芬太尼掺入与鼻上皮细胞结合的气溶胶稳定脂质体中是否会增强中枢神经系统药物的暴露和止痛作用并降低血浆暴露,我们构建了带有酰化整联蛋白结合肽(棕榈酰)的Arg-Gly-Asp(RGD)脂质体。 -Gly-Arg-Gly-Asp-Ser)。 RGD脂质体在25°C时呈现凝胶相膜结构,在雾化应力下稳定,因为仅检测到2.2±0.5%的钙黄绿素泄漏。还证实了RGD介导的脂质体整联蛋白结合不受雾化作用的影响。与游离药物对应物相比,在RGD脂质体和POD装置中用芬太尼处理的大鼠表现出更大的镇痛作用(AUCeffect = 1387.1%对760.1%MPEmin),而注意到血浆药物暴露减少了约20%(AUC0-120 = 208.2) vs. 284.8 ng min / mL)。总的来说,掺入RGD脂质体中的芬太尼在雾化条件下在物理和生物学上是稳定的,增强了总体镇痛作用,并减少了前2小时的血浆药物暴露。

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