The Brain-Derived Neurotrophic Factor Functional Polymorphism and Hand Grip Strength Impact the Association between Brain-Derived Neurotrophic Factor Levels and Cognition in Older Adults in the United States.

IF 1.9 4区 医学 Q2 NURSING Biological research for nursing Pub Date : 2022-04-01 Epub Date: 2022-01-03 DOI:10.1177/10998004211065151
Tingting Liu, Hongjin Li, Yvette P Conley, Brian A Primack, Jing Wang, Changwei Li
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引用次数: 4

Abstract

Introduction: Aging is associated with subtle cognitive decline in attention, memory, executive function, processing speed, and reasoning. Although lower brain-derived neurotrophic factor (BDNF) has been linked to cognitive decline among older adults, it is not known if the association differs among individuals with various BDNF Val66Met (rs6265) genotypes. In addition, it is not clear whether these associations vary by hand grip strength or physical activity (PA).

Methods: A total of 2904 older adults were included in this study using data from the Health and Retirement Study. Associations between serum BDNF and measures of cognitive function were evaluated using multivariable linear regression models stratified by Met allele status. PA and hand grip strength were added to the model to evaluate whether including these variables altered associations between serum BDNF and cognition.

Results: Mean age was 71.4 years old, and mean body mass index was 28.3 kg/m2. Serum BDNF levels were positively associated with higher total cognitive score (beta = 0.34, p = .07), mental status (beta = 0.16, p = .07), and word recall (beta = 0.22, p =.04) among Met carriers, while serum BDNF levels were negatively associated with mental status (beta = -0.09, p = .07) among non-Met carriers. Furthermore, associations changed when hand grip strength was added to the model but not when PA was added to the model.

Conclusions: The BDNF Val66Met variant may moderate the association between serum BDNF levels and cognitive function in older adults. Furthermore, such associations differ according to hand grip strength but not PA.

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脑源性神经营养因子功能多态性和握力影响美国老年人脑源性神经营养因子水平与认知之间的关系。
衰老与注意力、记忆力、执行功能、处理速度和推理能力的微妙认知能力下降有关。尽管较低的脑源性神经营养因子(BDNF)与老年人的认知能力下降有关,但尚不清楚不同BDNF Val66Met (rs6265)基因型的个体之间是否存在差异。此外,尚不清楚这些关联是否因握力或体力活动(PA)而异。方法:本研究采用健康与退休研究的数据,共纳入2904名老年人。血清BDNF与认知功能测量之间的关系通过Met等位基因状态分层的多变量线性回归模型进行评估。将PA和握力添加到模型中,以评估包括这些变量是否会改变血清BDNF与认知之间的关联。结果:平均年龄71.4岁,平均体重指数28.3 kg/m2。血清BDNF水平与Met携带者较高的总认知评分(β = 0.34, p =. 07)、精神状态(β = 0.16, p =. 07)和单词回忆(β = 0.22, p =.04)呈正相关,而非Met携带者血清BDNF水平与精神状态(β = -0.09, p =. 07)呈负相关。此外,当模型中加入握力时,关联发生了变化,而当模型中加入PA时则没有变化。结论:BDNF Val66Met变异可能调节老年人血清BDNF水平与认知功能之间的关系。此外,这种联系因手握力而异,但PA没有。
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来源期刊
CiteScore
5.10
自引率
4.00%
发文量
58
审稿时长
>12 weeks
期刊介绍: Biological Research For Nursing (BRN) is a peer-reviewed quarterly journal that helps nurse researchers, educators, and practitioners integrate information from many basic disciplines; biology, physiology, chemistry, health policy, business, engineering, education, communication and the social sciences into nursing research, theory and clinical practice. This journal is a member of the Committee on Publication Ethics (COPE)
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