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The BDNF Val66Met Polymorphism Has Opposite Effects on Memory Circuits of Multiple Sclerosis Patients and Controls

机译:BDNF Val66Met多态性对多发性硬化症患者和对照的记忆回路有相反的影响

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摘要

Episodic memory deficits are frequent symptoms in Multiple Sclerosis and have been associated with dysfunctions of the hippocampus, a key region for learning. However, it is unclear whether genetic factors that influence neural plasticity modulate episodic memory in MS. We thus studied how the Brain Derived Neurotrophic Factor Val66Met genotype, a common polymorphism influencing the hippocampal function in healthy controls, impacted on brain networks underlying episodic memory in patients with Multiple Sclerosis. Functional magnetic resonance imaging was used to assess how the Brain Derived Neurotrophic Factor Val66Met polymorphism modulated brain regional activity and functional connectivity in 26 cognitively unimpaired Multiple Sclerosis patients and 25 age- and education-matched healthy controls while performing an episodic memory task that included encoding and retrieving visual scenes. We found a highly significant group by genotype interaction in the left posterior hippocampus, bilateral parahippocampus, and left posterior cingulate cortex. In particular, Multiple Sclerosis patients homozygous for the Val66 allele, relative to Met66 carriers, showed greater brain responses during both encoding and retrieval while the opposite was true for healthy controls. Furthermore, a robust group by genotype by task interaction was detected for the functional connectivity between the left posterior hippocampus and the ipsilateral posterior cingulate cortex. Here, greater hippocampus-posterior cingulate cortex connectivity was observed in Multiple Sclerosis Met66 carriers relative to Val66 homozygous during retrieval (but not encoding) while, again, the reverse was true for healthy controls. The Val66Met polymorphism has opposite effects on hippocampal circuitry underlying episodic memory in Multiple Sclerosis patients and healthy controls. Enhancing the knowledge of how genetic factors influence cognitive functions may improve the clinical management of memory deficits in patients with Multiple Sclerosis.
机译:发作性记忆缺陷是多发性硬化症的常见症状,并与海马功能障碍有关,海马功能障碍是学习的关键区域。但是,尚不清楚影响神经可塑性的遗传因素是否会调节MS的情节记忆。因此,我们研究了脑源性神经营养因子Val 66 Met基因型如何影响健康对照中海马功能的常见多态性,如何影响多发性硬化症患者发作性记忆的脑网络。功能磁共振成像用于评估脑源性神经营养因子Val 66 Met多态性如何调节26名认知功能受损的多发性硬化症患者和25个年龄和教育程度相匹配的健康对照者的大脑区域活动和功能连接执行情景记忆任务,包括编码和检索视觉场景。我们发现基因型相互作用在左后海马,双侧海马和左后扣带回皮层中具有重要意义。尤其是,相对于Met 66 携带者,Val 66 等位基因纯合的多发性硬化症患者在编码和检索过程中均表现出更大的大脑反应,而健康对照则相反。此外,通过任务交互作用按基因型分组的强大分组被检测到左后海马体和同侧后扣带回皮层之间的功能连接。在这里,相对于Val 66 纯合子,在多发性硬化Met 66 携带者中海马-后扣带回皮层的连接性更高(但未编码),而相反适用于健康对照。 Val 66 Met多态性对多发性硬化症患者和健康对照组的情景记忆中的海马回路具有相反的影响。增强对遗传因素如何影响认知功能的认识可能会改善多发性硬化症患者记忆力不足的临床管理。

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