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Journal of exploratory research in pharmacology最新文献

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Medical Application of Liposomes 脂质体的医学应用
Pub Date : 2023-09-04 DOI: 10.14218/jerp.2023.00002
Biswajit Basu, B. Prajapati, Ayon Dutta, Himanshu Paliwal
Liposomes are a potential drug delivery system involving encapsulation into a phospholipid-based vesicular carrier system. In comparison with conventional delivery systems, liposomes may be advantageous due to site-specific targeting, controlled release patterns, enhance stability, and reduce associated toxicity, among other processes. Several researchers in the last decade have attempted to develop simple or modified forms of liposomes for the effective delivery of various types of therapeutic agents. This review is focused on a discussion about some of the recent literature on the medical application of liposomes. An account of the mode of action of different types of liposomes as a supporting basis for their superior therapeutic efficiency was provided. The application of liposomes in the delivery of anticancer, anti-bacterial, and anti-fungal drugs, among others, was discussed. Along with this discussion, liposomal carriers for the management of diseases related to the respiratory and nervous system were included along with a special emphasis on the outcomes of current literature. The information gathered through this review will be useful in furnishing ideas about the current status of research studies conducted on the formulation and development of liposomal carriers.
脂质体是一种潜在的药物递送系统,涉及封装到基于磷脂的囊泡载体系统中。与传统的递送系统相比,脂质体可能由于位点特异性靶向、控制释放模式、增强稳定性和降低相关毒性等过程而具有优势。在过去的十年里,一些研究人员试图开发简单或修饰形式的脂质体,用于有效递送各种类型的治疗剂。这篇综述的重点是讨论最近关于脂质体医学应用的一些文献。介绍了不同类型脂质体的作用模式,作为其优越治疗效率的支持基础。讨论了脂质体在递送抗癌、抗菌和抗真菌药物等方面的应用。在讨论的同时,还包括了用于治疗与呼吸和神经系统相关疾病的脂质体载体,并特别强调了当前文献的结果。通过这篇综述收集的信息将有助于提供关于脂质体载体的配方和开发研究现状的想法。
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引用次数: 0
Utilization of Ketamine for Major Depression 氯胺酮在抑郁症中的应用
Pub Date : 2023-08-28 DOI: 10.14218/jerp.2023.00027
Ryan Dao, A. Aggarwal
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引用次数: 0
Efficacy of Ketamine Therapy in the Treatment of Refractory Major Depressive Disorder 氯胺酮治疗难治性重度抑郁症的疗效观察
Pub Date : 2023-07-25 DOI: 10.14218/jerp.2023.00023
H. van Oers
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引用次数: 0
Role of TRPV1 in Health and Disease TRPV1在健康和疾病中的作用
Pub Date : 2023-07-18 DOI: 10.14218/jerp.2023.00013
S. Jaffal
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引用次数: 0
Neuronal Protective Effect of Nosustrophine in Cell Culture Models 鼻营养素对细胞培养模型神经元的保护作用
Pub Date : 2023-07-17 DOI: 10.14218/jerp.2023.00021
Iván Carrera, V. Lombardi, V. Naidoo, Olaia A. Martínez-Iglesias, L. Corzo, R. Cacabelos
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引用次数: 0
Ustekinumab in Dermatology: Approved Indications and Off-label Uses Ustekinumab在皮肤病学:批准适应症和说明书外使用
Pub Date : 2023-07-14 DOI: 10.14218/jerp.2022.00044
A. Chehad, N. Boutrid, H. Rahmoune
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引用次数: 0
Determination of Brain Distribution of Amino Acid Neurotransmitters in Pigs and Rats by HPLC-UV 高效液相色谱-紫外分光光度法测定猪和大鼠脑内氨基酸神经递质分布
Pub Date : 2023-07-13 DOI: 10.14218/jerp.2023.00029
Si Meng, Mo-Huan Tang, Xue-Jiao Zhao, Zhao-Ying Liu
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引用次数: 0
Neurotoxic or Protective Cannabis Components: Delta-9-Tetrahydrocannabinol (Δ9THC) and Cannabidol (CBD) 神经毒性或保护性大麻成分:delta -9-四氢大麻酚(Δ9THC)和大麻酚(CBD)
Pub Date : 2023-07-12 DOI: 10.14218/jerp.2023.00017
Marilyn H. Silva
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引用次数: 0
Nanotechnology-based Therapeutic Strategies for Dry Eye Disease 基于纳米技术的干眼病治疗策略
Pub Date : 2023-07-04 DOI: 10.14218/jerp.2023.00034
A. Philip
Dry eye disease (DED) is a prevalent ocular condition affecting a significant proportion of the global population. Character-ized by disruption of tear film homeostasis, DED results in dryness, discomfort, impaired visual clarity, and potential corneal damage. Despite its severe consequences, consistently effective treatments for DED remain elusive, leaving the majority of patients with persistent symptoms. This review aims to examine recent advancements in DED therapy, emphasizing the role of nanotechnology-based delivery systems in the development of novel treatments. By harnessing the potential of cutting-edge nanotechnology, we aspire to unveil innovative therapeutic strategies that address the unmet needs of patients with DED. Furthermore, we will discuss the current challenges, limitations, and future associated with these novel nanotechnology-based therapies for managing DED.
干眼病(DED)是一种流行的眼部疾病,影响了全球人口的很大一部分。以破坏泪膜平衡为特征,DED会导致干燥、不适、视觉清晰度受损和潜在的角膜损伤。尽管其后果严重,但持续有效的治疗方法仍然难以捉摸,使大多数患者持续出现症状。本文综述了DED治疗的最新进展,强调了基于纳米技术的递送系统在开发新型治疗方法中的作用。通过利用尖端纳米技术的潜力,我们渴望揭示创新的治疗策略,以解决DED患者未满足的需求。此外,我们将讨论当前的挑战,限制和未来与这些新型纳米技术为基础的治疗DED相关的。
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引用次数: 0
New Topical Treatment for Psoriasis 银屑病的新局部治疗方法
Pub Date : 2023-07-04 DOI: 10.14218/jerp.2023.00015
José Miguel Ingelmo Calvo, José Ruiz Cobo, M. Allam
© 2023 The Author(s). This article has been published under the terms of Creative Commons Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0), which permits noncommercial unrestricted use, distribution, and reproduction in any medium, provided that the following statement is provided. “This article has been published in Journal of Exploratory Research in Pharmacology at https://doi.org/10.14218/JERP.2023.00015 and can also be viewed on the Journal’s website at https://www.xiahepublishing.com/journal/jerp ”.
©2023作者。本文是根据知识共享署名非商业4.0国际许可证(CC BY-NC 4.0)的条款发表的,该许可证允许在任何媒体上进行非商业性的无限制使用、分发和复制,前提是提供以下声明。“这篇文章发表在《药理学探索研究杂志》https://doi.org/10.14218/JERP.2023.00015也可以在《华尔街日报》的网站上查看https://www.xiahepublishing.com/journal/jerp”。
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引用次数: 0
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Journal of exploratory research in pharmacology
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