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Epidemiology

Lp(a), not apo(a) size, independently predicts unexplained stroke in young white adults, a case-control study of 255 stroke patients (Atherosclerosis 2016)

Original title: Lipoprotein (a) level, apolipoprotein (a) size, and risk of unexplained ischemic stroke in young and middle-aged adults

Atherosclerosis · · 7

Beheshtian A, Shitole SG, Segal AZ, Leifer D, Tracy RP, Rader DJ, Devereux RB, Kizer JR

This case-control study examined Lp(a) and apolipoprotein(a) [apo(a)] isoform size in 255 patients aged 18-64 with unexplained (cryptogenic) ischemic stroke and 390 stroke-free controls. Cases had more hypertension, diabetes, smoking and migraine with aura than controls. In race-specific analyses, Lp(a) was positively associated with cryptogenic stroke in white participants only; after full adjustment, the highest versus lowest Lp(a) quartile in whites was significant for apo(a)-size-independent Lp(a) (odds ratio 2.10, 95% CI 1.04-4.27, P=0.040) and near-significant for apo(a)-size-dependent Lp(a) (odds ratio 1.81, 95% CI 0.95-3.47, P=0.073). Apo(a) size itself was not associated with cryptogenic stroke in any racial or ethnic subgroup. The findings show Lp(a) level, not apo(a) size, independently predicts unexplained ischemic stroke in young and middle-aged white adults, supporting routine Lp(a) testing in this population as effective Lp(a)-lowering therapies emerge.

Read the paper (DOI)PubMed

Original abstract

Background And Aims: Circulating lipoprotein (a) [Lp(a)] level relates inversely to apolipoprotein (a) [apo(a)] size. Both smaller apo(a) isoforms and higher Lp(a) levels have been linked to coronary heart disease and stroke, but their independent contributions are less well defined. We examined the role of Lp(a) in younger adults with cryptogenic stroke.

Methods: Lp(a) and apo(a) isoforms were evaluated in a prospectively designed case-control study of patients with unexplained ischemic stroke and stroke-free controls, ages 18 to 64. Serum Lp(a) was measured among 255 cases and 390 controls with both apo(a)-size independent and dependent assays. Apo(a) size was determined by agarose gel electrophoresis.

Results: Cases and controls were similar in socio-demographic characteristics, but cases had more hypertension, diabetes, smoking, and migraine with aura. In race-specific analyses, Lp(a) levels showed positive associations with cryptogenic stroke in whites, but not in the smaller subgroups of blacks and Hispanics. After full adjustment, comparison of the highest versus lowest quartile in whites was significant for apo(a)-size-independent (OR = 2.10 [95% CI = 1.04, 4.27], p = 0.040), and near-significant for apo(a)-size-dependent Lp(a) (OR = 1.81 [95% CI = 0.95, 3.47], p = 0.073). Apo(a) size was not associated with cryptogenic stroke in any race-ethnic subgroup.

Conclusions: This study underscores the importance of Lp(a) level, but not apo(a) size, as an independent risk factor for unexplained ischemic stroke in young and middle-aged white adults. Given the emergence of effective Lp(a)-lowering therapies, these findings support routine testing for Lp(a) in this setting, along with further research to assess the extent to which such therapies improve outcomes in this population.

ancestryepidemiologystroke

Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.