Opiorphin: an endogenous human peptide with intriguing application in diverse range of pathologies.

IF 4.6 2区 医学 Q2 IMMUNOLOGY Inflammopharmacology Pub Date : 2024-10-01 Epub Date: 2024-08-20 DOI:10.1007/s10787-024-01526-8
Chanchal Tiwari, Heena Khan, Amarjot Kaur Grewal, Sanchit Dhankhar, Samrat Chauhan, Kamal Dua, Gaurav Gupta, Thakur Gurjeet Singh
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Abstract

Mammalian zinc ectopeptidases have significant functions in deactivating neurological and hormonal peptide signals on the cell surface. The identification of Opiorphin, a physiological inhibitor of zinc ectopeptidases that inactivate enkephalin, has revealed its strong analgesic effects in both chemical and mechanical pain models. Opiorphin achieves this by increasing the transmission of endogenous opioids, which are dependent on the body's own opioid system. The function of opiorphin is closely linked to the rat sialorphin peptide, which inhibits pain perception by enhancing the activity of naturally occurring enkephalinergic pathways that depend on μ- and δ-opioid receptors. Opiorphin is highly intriguing in terms of its physiological implications within the endogenous opioidergic pathways, particularly in its ability to regulate mood-related states and pain perception. Opiorphin can induce antidepressant-like effects by influencing the levels of naturally occurring enkephalin, which are released in response to specific physical and/or psychological stimuli. This effect is achieved through the modulation of delta-opioid receptor-dependent pathways. Furthermore, research has demonstrated that opiorphin's impact on the cardiovascular system is facilitated by the renin-angiotensin system (RAS), sympathetic ganglia, and adrenal medulla, rather than the opioid system. Hence, opiorphin shows great potential as a solitary candidate for the treatment of several illnesses such as neurodegeneration, pain, and mood disorders.

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Opiorphin:一种人类内源性多肽,在多种病症中的应用令人好奇。
哺乳动物的锌外肽酶在使细胞表面的神经和激素肽信号失活方面具有重要功能。Opiorphin是一种锌外肽酶的生理性抑制剂,能使脑啡肽失活,它在化学和机械疼痛模型中都有很强的镇痛效果。阿片肽是通过增加内源性阿片类物质的传递来实现这一效果的,而内源性阿片类物质的传递依赖于人体自身的阿片类物质系统。阿片肽的功能与大鼠的sialorphin肽密切相关,后者通过增强依赖于μ-和δ-阿片受体的天然脑啡肽能通路的活性来抑制痛觉。阿片吗啡在内源性阿片能通路中的生理意义,特别是其调节情绪相关状态和疼痛感知的能力,非常引人关注。阿片肽可以通过影响天然脑啡肽的水平来诱导类似抗抑郁的效果,而脑啡肽是在特定的生理和/或心理刺激下释放的。这种效果是通过调节依赖于δ-阿片受体的途径实现的。此外,研究表明,鸦片啡素对心血管系统的影响是通过肾素-血管紧张素系统(RAS)、交感神经节和肾上腺髓质而非阿片系统来促进的。因此,阿片肽作为治疗神经变性、疼痛和情绪障碍等多种疾病的单独候选药物,显示出巨大的潜力。
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来源期刊
Inflammopharmacology
Inflammopharmacology IMMUNOLOGYTOXICOLOGY-TOXICOLOGY
CiteScore
8.00
自引率
3.40%
发文量
200
期刊介绍: Inflammopharmacology is the official publication of the Gastrointestinal Section of the International Union of Basic and Clinical Pharmacology (IUPHAR) and the Hungarian Experimental and Clinical Pharmacology Society (HECPS). Inflammopharmacology publishes papers on all aspects of inflammation and its pharmacological control emphasizing comparisons of (a) different inflammatory states, and (b) the actions, therapeutic efficacy and safety of drugs employed in the treatment of inflammatory conditions. The comparative aspects of the types of inflammatory conditions include gastrointestinal disease (e.g. ulcerative colitis, Crohn''s disease), parasitic diseases, toxicological manifestations of the effects of drugs and environmental agents, arthritic conditions, and inflammatory effects of injury or aging on skeletal muscle. The journal has seven main interest areas: -Drug-Disease Interactions - Conditional Pharmacology - i.e. where the condition (disease or stress state) influences the therapeutic response and side (adverse) effects from anti-inflammatory drugs. Mechanisms of drug-disease and drug disease interactions and the role of different stress states -Rheumatology - particular emphasis on methods of measurement of clinical response effects of new agents, adverse effects from anti-rheumatic drugs -Gastroenterology - with particular emphasis on animal and human models, mechanisms of mucosal inflammation and ulceration and effects of novel and established anti-ulcer, anti-inflammatory agents, or antiparasitic agents -Neuro-Inflammation and Pain - model systems, pharmacology of new analgesic agents and mechanisms of neuro-inflammation and pain -Novel drugs, natural products and nutraceuticals - and their effects on inflammatory processes, especially where there are indications of novel modes action compared with conventional drugs e.g. NSAIDs -Muscle-immune interactions during inflammation [...]
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