佐米曲普坦纳米透皮贴片:通过表观遗传学和内源性大麻素途径防治偏头痛并逆转偏头痛的高凝状态。

IF 5.7 3区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL Drug Delivery and Translational Research Pub Date : 2024-11-05 DOI:10.1007/s13346-024-01731-6
Nancy Abdel Hamid Abou Youssef, Gihan Salah Labib, Abeer Ahmed Kassem, Nesrine S El-Mezayen
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引用次数: 0

摘要

传统的佐米曲普坦(ZOL)口服生物利用度有限,不良反应多,而且膜渗透性差,对其进入位于跨膜的5-HT1B/1D受体结合袋产生负面影响。这项工作旨在制备透皮 ZOL 纳米制剂(niosomes),以突破这些限制,并通过调节表观遗传改变的 chronification 基因(RAMP-1、NPTX-2)或 microRNA,以及影响内源性大麻素 CB-1/MAPK 通路,探索 ZOL 新型抗偏头痛机制。所制备的 ZOL niosomes(Fsp60/6-1:1)具有 57.28% 的 %EE、472.3 nm 的 PS、0.366 的 PDI 和 -26 mV 的 ZP。在硝酸甘油诱发偏头痛的大鼠体内应用 ZOL 贴片后,偏头痛症状和畏光行为明显减轻,三叉神经元活化标志物(c-fos)、偏头痛神经递质(CGRP)和不同偏头痛疼痛标志物(P 物质、一氧化氮和 TNF-α)的血清水平降低。它还能明显降低 RAMP-1、NPTX-2、miR-382-5p 和 CB-1/MAPK 基因的表达,反映出其药效和脑受体传递的改善程度远远超过了传统的 ZOL。此外,这种纳米制剂还能显著抑制偏头痛引起的血小板活化以及中枢和外周循环中的高凝状态,外周和中枢评估的二磷酸腺苷、凝血酶、X因子、CD41和Von-Willebrand因子水平的显著下降就是证明。与传统的ZOL溶液相比,TPFsp60/6-1:1显著提高了ZOL的疗效和脑受体的可及性。
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Zolmitriptan niosomal transdermal patches: combating migraine via epigenetic and endocannabinoid pathways and reversal of migraine hypercoagulability.

Conventional zolmitriptan (ZOL) has limited oral bioavailability, many adverse effects, and poor membrane penetrability that negatively influences its accessibility to its 5-HT1B/1D receptor binding pocket, located transmemberanous. This work aimed at preparing transdermal ZOL-nanoformulation (niosomes) to surpass these limitations and to explore novel antimigraine mechanisms for ZOL via modulation of the epigenetically-altered chronification genes (RAMP-1, NPTX-2) or microRNAs and affecting the endocannabinoid CB-1/MAPK pathway. The prepared ZOL niosomes (Fsp60/6-1:1) exhibited %EE of 57.28%, PS of 472.3 nm, PDI of 0.366, and ZP of -26 mV were cast into patch with content uniformity of 93.12%, maintained endurance after 200-times folding, no interaction between its components (FT-IR), a biphasic release pattern and good stability after storage at 4 °C for 6 months. In-vivo ZOL-patch application in rats with nitroglycerin-induced migraine showed significant management of migraine pain symptoms and photophobia assessed behaviorally, decreased brain levels of the trigeminal neuronal activation marker (c-fos), the migraine pain neurotransmitter (CGRP) and the serum levels of different migraine pain markers (substance P, nitric-oxide, and TNF-α). It also significantly decreased RAMP-1, NPTX-2, miR-382-5p, and CB-1/MAPK gene expression reflecting improved efficacy and brain receptors delivery to a much greater extent than conventional ZOL has done. Additionally, this nanoformulation significantly opposed migraine-induced platelet activation and hypercoagulable status in both central and peripheral circulations as evidenced by the significant decrease in adenosine diphosphate, thrombin, factor X, CD41, and Von-Willebrand factor levels assessed peripherally and centrally. TPFsp60/6-1:1 significantly improved ZOL efficacy and accessibility to brain-receptors to a much greater extent than conventional ZOL-solution.KeywordsEndocannabinoid receptors; Epigenetically-altered genes; Hemostatic pathways; Niosomal patch; Transdermal; Zolmitriptan.

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来源期刊
Drug Delivery and Translational Research
Drug Delivery and Translational Research MEDICINE, RESEARCH & EXPERIMENTALPHARMACOL-PHARMACOLOGY & PHARMACY
CiteScore
11.70
自引率
1.90%
发文量
160
期刊介绍: The journal provides a unique forum for scientific publication of high-quality research that is exclusively focused on translational aspects of drug delivery. Rationally developed, effective delivery systems can potentially affect clinical outcome in different disease conditions. Research focused on the following areas of translational drug delivery research will be considered for publication in the journal. Designing and developing novel drug delivery systems, with a focus on their application to disease conditions; Preclinical and clinical data related to drug delivery systems; Drug distribution, pharmacokinetics, clearance, with drug delivery systems as compared to traditional dosing to demonstrate beneficial outcomes Short-term and long-term biocompatibility of drug delivery systems, host response; Biomaterials with growth factors for stem-cell differentiation in regenerative medicine and tissue engineering; Image-guided drug therapy, Nanomedicine; Devices for drug delivery and drug/device combination products. In addition to original full-length papers, communications, and reviews, the journal includes editorials, reports of future meetings, research highlights, and announcements pertaining to the activities of the Controlled Release Society.
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