Mid-life plasma proteins associated with late-life prefrailty and frailty: a proteomic analysis.
Fangyu LiuJennifer A SchrackJeremy WalstonRasika A MathiasB Gwen WindhamMorgan E GramsJosef CoreshKeenan A WalkerPublished in: GeroScience (2024)
Physical frailty is a syndrome that typically manifests in later life, although the pathogenic process causing physical frailty likely begins decades earlier. To date, few studies have examined the biological signatures in mid-life associated with physical frailty later in life. Among 4,189 middle-aged participants (57.8 ± 5.0 years, 55.8% women) from the Atherosclerosis Risk in Community (ARIC) study, we evaluated the associations of 4,955 plasma proteins (log 2-transformed and standardized) measured using the SomaScan platform with their frailty status approximately 20 years later. Using multinomial logistic regression models adjusting for demographics, health behaviors, kidney function, total cholesterol, and comorbidities, 12 and 221 proteins were associated with prefrailty and frailty in later life, respectively (FDR p < 0.05). Top frailty-associated proteins included neurocan core protein (NCAN, OR = 0.66), fatty acid-binding protein heart (FABP3, OR = 1.62) and adipocyte (FABP4, OR = 1.65), as well proteins involved in the contactin-1 (CNTN1), toll-like receptor 5 (TLR5), and neurogenic locus notch homolog protein 1 (NOTCH1) signaling pathway relevant to skeletal muscle regeneration, myelination, and inflammation. Pathway analyses suggest midlife dysregulation of inflammation, metabolism, extracellular matrix, angiogenesis, and lysosomal autophagy among those at risk for late-life frailty. After further adjusting for midlife body mass index (BMI) - an established frailty risk factor - only CNTN1 (OR = 0.75) remained significantly associated with frailty. Post-hoc analyses demonstrated that the top 41 midlife frailty-associated proteins mediate 32% of the association between mid-life BMI and late-life frailty. Our findings provide new insights into frailty etiology earlier in the life course, enhancing the potential for prevention.
Keyphrases
- community dwelling
- toll like receptor
- body mass index
- binding protein
- signaling pathway
- skeletal muscle
- mental health
- fatty acid
- oxidative stress
- healthcare
- stem cells
- physical activity
- heart failure
- cardiovascular disease
- middle aged
- extracellular matrix
- cell proliferation
- inflammatory response
- adipose tissue
- immune response
- weight gain
- insulin resistance
- risk factors
- metabolic syndrome
- endothelial cells
- polycystic ovary syndrome
- pregnant women
- spinal cord injury
- gene expression
- case report
- protein protein
- small molecule
- high throughput
- nuclear factor