Heekyoung Kang, Hyemin Jang, Jehyun Ahn, Duk L Na, Jae-Hong Lee, Eun-Joo Kim, Min Young Chun, Soo Hyun Cho, Byeong C Kim, Si Eun Kim, Gyeongmo Sohn, Jihwan Yun, Jin San Lee, Key-Chung Park, Hee Kyung Park, Young Ju Kim, Kyungbok Lee, Sohyun Yim, Seonghyeon Kim, Jun Pyo Kim, Hee Jin Kim, Jae-Sung Lim, Sang Won Seo
ARIA-E incidence was 2.0% in non-carriers and 6.2% in εε4/εε4 homozygotes (εε4/εε4-versus-non-carrier OR 3.25, versus 8.49 in Clarity AD and 8.32 in Japan post-marketing surveillance). Any ARIA-H was independently predicted by baseline cerebral microbleeds, white matter hyperintensity (WMH), age, and APOE εε4 allele dose (aORs 1.23, 1.50, 1.04, 1.75).
INTRODUCTION: We evaluated whether apolipoprotein E (APOE εε4) genotype-guided lecanemab escalation mitigates the APOE εε4-driven amyloid-related imaging abnormalities (ARIA) with edema (ARIA-E) gradient and whether ARIA-E and ARIA with hemosiderin deposition (ARIA-H) are mechanistically distinct.
METHODS: Five hundred eight patients with early Alzheimer's disease received APOE genotype-guided lecanemab escalation (target maximum plasma concentration [Cmax] thresholds: 118, 308, and 404 µg/mL for εε4/εε4, heterozygote, and non-carrier) across eight Korean centers, with magnetic resonance imaging-based ARIA surveillance.
RESULTS: ARIA-E incidence was 2.0% in non-carriers and 6.2% in εε4/εε4 homozygotes (εε4/εε4-versus-non-carrier OR 3.25, versus 8.49 in Clarity AD and 8.32 in Japan post-marketing surveillance). Any ARIA-H was independently predicted by baseline cerebral microbleeds, white matter hyperintensity (WMH), age, and APOE εε4 allele dose (aORs 1.23, 1.50, 1.04, 1.75).
DISCUSSION: Under genotype-guided escalation, observations are compatible with - but do not establish - attenuation of the APOE εε4-driven ARIA-E gradient, whereas ARIA-H risk reflected baseline cerebrovascular burden. These findings raise the hypothesis of a dual-axis safety framework requiring randomized confirmation.