A NOVEL CD147 INHIBITOR SP-8356 ATTENUATES PLAQUE PROGRESSION AND STABILIZES VULNERABLE PLAQUE IN APOE-DEFICIENT MICE

초록

Objective: Plaque vulnerability is the crucial pathophysiological feature in atherosclerosis-related cardiovascular event such as myocardial infarction and stroke. CD147 has been suggested to play key roles in plaque vulnerability through interacting with cyclophilin A (CypA) and resultant activation of matrix metalloproteinase-9 (MMP-9). Here we report that the novel synthetic CD147 inhibitor SP-8356 ((1S,5R)-4-(3,4-dihydroxy-5-methoxystyryl)-6,6-dimethylbicyclo[3.1.1]hept-3-en-2-one) inhibits CD147/MMP-9 pathways and reduces plaque progression and stabilizes plaque vulnerability. Design and method: Advanced atherosclerotic plaque was induced in apolipoprotein E-deficient (ApoE KO) mice by partial ligation of the right carotid artery coupled with an atherogenic diet. SP-8356 (50 mg/kg) was orally given daily for 3 weeks. Histomolecular analysis was carried out on harvested carotid arteries. Results: Surface plasmon resonance assay showed the specific binding of SP-8356 with CD147. SP-8356 inhibited CypA-CD147 interaction and MMP-9 activation. In ApoE KO mice model, SP-8356 inhibited plaque formation, reduced the number of macrophages, increased the number of vascular smooth muscle cells, increased the fibrous cap thickness, and increased the collagen type I contents in fibrous cap. SP-8356 also reduced the apoptotic cells in the plaque lesion. Conclusions: Owing to its improvement of plaque stability and inhibitory effect on plaque development, SP-8356 could be a potential therapeutic drug candidate for atherosclerosis and related clinical manifestations.

제목
A NOVEL CD147 INHIBITOR SP-8356 ATTENUATES PLAQUE PROGRESSION AND STABILIZES VULNERABLE PLAQUE IN APOE-DEFICIENT MICE
저자
Pahk, K.; Joung, C.; Song, H. Y.; Kim, S.; Kim, W.
DOI
10.1097/01.hjh.0000571364.28568.f9
발행일
2019-06
학회명
29th European Meeting on Hypertension and Cardiovascular Protection
개최지
Milan, Italy
개최국가
이탈리아
학회 개최일
2019-06-21 ~ 2019-06-24