Measuring Pathology in Patients with Multiple Sclerosis Using Positron Emission Tomography.

IF 4.8 2区 医学 Q1 CLINICAL NEUROLOGY Current Neurology and Neuroscience Reports Pub Date : 2023-09-01 DOI:10.1007/s11910-023-01285-z
Matthew R Brier, Farris Taha
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Abstract

Purpose of review: Multiple sclerosis is characterized by a diverse and complex pathology. Clinical relapses, the hallmark of the disease, are accompanied by focal white matter lesions with intense inflammatory and demyelinating activity. Prevention of these relapses has been the major focus of pharmaceutical development, and it is now possible to dramatically reduce this inflammatory activity. Unfortunately, disability accumulation persists for many people living with multiple sclerosis owing to ongoing damage within existing lesions, pathology outside of discrete lesions, and other yet unknown factors. Understanding this complex pathological cascade will be critical to stopping progressive multiple sclerosis. Positron emission tomography uses biochemically specific radioligands to quantitatively measure pathological processes with molecular specificity. This review examines recent advances in the understanding of multiple sclerosis facilitated by positron emission tomography and identifies future avenues to expand understanding and treatment options.

Recent findings: An increasing number of radiotracers allow for the quantitative measurement of inflammatory abnormalities, de- and re-myelination, and metabolic disruption associated with multiple sclerosis. The studies have identified contributions of ongoing, smoldering inflammation to accumulating tissue injury and clinical worsening. Myelin studies have quantified the dynamics of myelin loss and recovery. Lastly, metabolic changes have been found to contribute to symptom worsening. The molecular specificity facilitated by positron emission tomography in people living with multiple sclerosis will critically inform efforts to modulate the pathology leading to progressive disability accumulation. Existing studies show the power of this approach applied to multiple sclerosis. This armamentarium of radioligands allows for new understanding of how the brain and spinal cord of people is impacted by multiple sclerosis.

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使用正电子发射断层扫描测量多发性硬化症患者的病理。
综述目的:多发性硬化症的特点是多样和复杂的病理。临床复发是该病的标志,伴有局灶性白质病变,伴有强烈的炎症和脱髓鞘活动。预防这些复发一直是药物开发的主要焦点,现在有可能显著减少这种炎症活动。不幸的是,许多多发性硬化症患者由于现有病变内的持续损伤、离散病变外的病理以及其他未知因素,残疾积累持续存在。了解这种复杂的病理级联将是阻止进展性多发性硬化症的关键。正电子发射断层扫描使用生化特异性放射配体来定量测量具有分子特异性的病理过程。本文回顾了近年来通过正电子发射断层扫描对多发性硬化症的理解,并确定了未来扩大理解和治疗选择的途径。最近发现:越来越多的放射性示踪剂可以定量测量炎症异常、髓鞘脱髓和再髓鞘形成以及与多发性硬化症相关的代谢紊乱。这些研究已经确定了持续的、阴燃的炎症对积累的组织损伤和临床恶化的贡献。髓磷脂研究量化了髓磷脂损失和恢复的动态。最后,已发现代谢变化有助于症状恶化。在多发性硬化症患者中,正电子发射断层扫描所促进的分子特异性将为调节导致进行性残疾积累的病理提供重要信息。现有的研究表明,这种方法适用于多发性硬化症。这种放射性配体的装备使人们对多发性硬化症如何影响人的大脑和脊髓有了新的认识。
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来源期刊
CiteScore
9.20
自引率
0.00%
发文量
73
审稿时长
6-12 weeks
期刊介绍: Current Neurology and Neuroscience Reports provides in-depth review articles contributed by international experts on the most significant developments in the field. By presenting clear, insightful, balanced reviews that emphasize recently published papers of major importance, the journal elucidates current and emerging approaches to the diagnosis, treatment, management, and prevention of neurological disease and disorders. Presents the views of experts on current advances in neurology and neuroscience Gathers and synthesizes important recent papers on the topic Includes reviews of recently published clinical trials, valuable web sites, and commentaries from well-known figures in the field.
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