Intranasal delivery of liposome encapsulated flavonoids ameliorates l-DOPA induced dyskinesia in hemiparkinsonian mice

IF 12.8 1区 医学 Q1 ENGINEERING, BIOMEDICAL Biomaterials Pub Date : 2024-06-27 DOI:10.1016/j.biomaterials.2024.122680
Mohamed Rafiuddin Ahmed , Mohammed Inayathullah , Mithya Morton , Venkata Raveendra Pothineni , Kwangmin Kim , Mohamed Sohail Ahmed , Mustafeez Mujtaba Babar , Jayakumar Rajadas
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Abstract

In the present study, we explored the development of a novel noninvasive liposomal drug delivery material for use in intranasal drug delivery applications in human diseases. We used drug entrapment into liposomal nanoparticle assembly to efficiently deliver the drugs to the nasal mucosa to be delivered to the brain. The naturally occurring flavonoid 7,8-dihydroxyflavone (7,8-DHF) has previously been shown to have beneficial effects in ameliorating Parkinson's disease (PD). We used both naturally occurring 7,8-DHF and the chemically modified form of DHF, the DHF-ME, to be used as a drug candidate for the treatment of PD and l-DOPA induced dyskinesia (LID), which is the debilitating side effect of l-DOPA therapy in PD. The ligand-protein interaction behavior for 7,8-DHF and 6,7-DHF-ME was found to be more effective with molecular docking and molecular stimulation studies of flavonoid compounds with TrkB receptor. Our study showed that 7,8-DHF delivered via intranasal route using a liposomal formulation ameliorated LID in hemiparkinsonian mice model when these mice were chronically administered with l-DOPA, which is the only current medication for relieving the clinical symptoms of PD. The present study also demonstrated that apart from reducing the LID, 7,8-DHF delivery directly to the brain via the intranasal route also corrected some long-term signaling adaptations involving ΔFosB and α Synuclein in the brain of dopamine (DA) depleted animals.

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脂质体包裹类黄酮的鼻内给药可改善l-DOPA诱发的半帕金森病小鼠运动障碍。
在本研究中,我们探索开发了一种新型非侵入性脂质体给药材料,用于人类疾病的鼻内给药应用。我们利用将药物夹带到脂质体纳米粒子组装物中的方法,将药物有效地输送到鼻粘膜,再输送到大脑。天然黄酮类化合物 7,8-二羟基黄酮(7,8-DHF)曾被证明对改善帕金森病(PD)有益处。我们利用天然存在的 7,8-DHF 和 DHF 的化学修饰形式 DHF-ME,将其作为治疗帕金森病和 l-DOPA 诱导的运动障碍(LID)的候选药物。通过对黄酮类化合物与 TrkB 受体的分子对接和分子刺激研究发现,7,8-DHF 和 6,7-DHF-ME 的配体与蛋白质相互作用行为更为有效。我们的研究表明,当半身帕金森病小鼠长期服用目前唯一能缓解帕金森病临床症状的药物--l-多巴胺时,通过脂质体配方经鼻内途径给药的7,8-DHF能改善这些小鼠的LID。本研究还表明,通过鼻内途径将 7,8-DHF 直接输送到大脑,除了能减轻 LID 外,还能纠正多巴胺(DA)缺失动物大脑中涉及 ΔFosB 和 α Synuclein 的一些长期信号适应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomaterials
Biomaterials 工程技术-材料科学:生物材料
CiteScore
26.00
自引率
2.90%
发文量
565
审稿时长
46 days
期刊介绍: Biomaterials is an international journal covering the science and clinical application of biomaterials. A biomaterial is now defined as a substance that has been engineered to take a form which, alone or as part of a complex system, is used to direct, by control of interactions with components of living systems, the course of any therapeutic or diagnostic procedure. It is the aim of the journal to provide a peer-reviewed forum for the publication of original papers and authoritative review and opinion papers dealing with the most important issues facing the use of biomaterials in clinical practice. The scope of the journal covers the wide range of physical, biological and chemical sciences that underpin the design of biomaterials and the clinical disciplines in which they are used. These sciences include polymer synthesis and characterization, drug and gene vector design, the biology of the host response, immunology and toxicology and self assembly at the nanoscale. Clinical applications include the therapies of medical technology and regenerative medicine in all clinical disciplines, and diagnostic systems that reply on innovative contrast and sensing agents. The journal is relevant to areas such as cancer diagnosis and therapy, implantable devices, drug delivery systems, gene vectors, bionanotechnology and tissue engineering.
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