Key result
First-generation college student status is linked to higher fall systemic inflammation versus continuing-generation students.
Why the study?
Whether first-generation college students are at risk physiologically was unknown, despite the well-established link between greater education and better long-term health.
Does first-generation college student status increase cardiovascular disease risk markers compared to continuing-generation status in emerging adults?
Cohort (n=87)
Does first-generation college student status increase cardiovascular disease risk markers compared to continuing-generation status in emerging adults?
Effect estimate: B = 0.515
p-value: p=.003
First-generation college students exhibit higher levels of systemic inflammation during their initial college transition compared to continuing-generation students, potentially mediated by childhood subjective social status.
May flag elevated early CVD risk in first-generation students; hypothesis-generating for targeted interventions during college transition.
BACKGROUND: First-generation college students ("first-gens") are often at a disadvantage socially and academically; whether they are at risk physiologically is unknown despite the well-established link between greater education and better long-term health. PURPOSE: To examine whether first-gens have higher levels of cardiovascular disease (CVD) risk markers relative to continuing-generation college students ("continuing-gens"). METHODS: A panel of CVD risk markers was assessed among 87 emerging adults (41 first-gens) twice over their first year of college. RESULTS: Compared to continuing-gens, first-gens had greater systemic inflammation (composite of averaged z-scores for C-reactive protein and interleukin-6; B = 0.515, SE = 0.171, p = .003) during the fall but not spring semester (p > .05). Associations were independent of family home ownership and childhood adversity, even though first-gens were more likely to live in rental homes and reported riskier home environments. Lower childhood subjective social status (SSS) accounted for greater systemic inflammation among first-gens as evidenced by an indirect effect of college generation status on systemic inflammation through childhood SSS (a1b1 = 0.261, bootstrapped SE = 0.103, 95% boot CI [0.078, 0.482]). There were no differences in metabolic risk and latent virus regulation by college generation status in either semester (p > .10). CONCLUSIONS: This is the first study to find that first-gens have higher levels of systemic inflammation than continuing-gens following the college transition and that childhood SSS may be one explanatory pathway. First-gens may benefit from university resources that address social class differences, which should be provided early on so that first-gens can reap the health-relevant benefits of higher education, at least in the short term.
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Jones et al. (2022) conducted a cohort in College students (n=87). First-generation college student status vs. Continuing-generation college students was evaluated on Systemic inflammation (composite of averaged z-scores for C-reactive protein and interleukin-6) during the fall semester (B = 0.515, p=.003). First-generation college students had greater systemic inflammation during the fall semester compared to continuing-generation students (B = 0.515, p = .003).
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