日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

A neuro-lymphatic communication guides lymphatic development by CXCL12 and CXCR4 signaling

神经淋巴通讯通过CXCL12和CXCR4信号通路引导淋巴发育

Long Nguyen Hoang Do ,Esteban Delgado ,Casey G Lim ,Meriem Bkhache ,Amanda M Peluzzo ,Yiming Hua ,Manisha Oza ,Sadia Mohsin ,Hong Chen ,Michael V Autieri ,Seonhee Kim ,Xiaolei Liu

FXR1 regulates vascular smooth muscle cell cytoskeleton, VSMC contractility, and blood pressure by multiple mechanisms

FXR1 通过多种机制调节血管平滑肌细胞骨架、VSMC 收缩性和血压

Amanda St Paul, Cali Corbett, Amanda Peluzzo, Sheri Kelemen, Rachael Okune, Dale S Haines, Kyle Preston, Satoru Eguchi, Michael V Autieri

Genetic Deletion of FXR1 Reduces Intimal Hyperplasia and Induces Senescence in Vascular Smooth Muscle Cells

FXR1 基因缺失可减少内膜增生并诱导血管平滑肌细胞衰老

Cali B Corbett, Amanda St Paul, Tani Leigh, Sheri E Kelemen, Amanda M Peluzzo, Rachael N Okune, Satoru Eguchi, Dale S Haines, Michael V Autieri

Differential regulation of lymphatic junctional morphology and the potential effects on cardiovascular diseases

淋巴管连接形态的差异性调控及其对心血管疾病的潜在影响

Peluzzo, Amanda M; Bkhache, Meriem; Do, Long Nguyen Hoang; Autieri, Michael V; Liu, Xiaolei

Challenging the Paradigm: Anti-Inflammatory Interleukins and Angiogenesis

挑战传统观念:抗炎白细胞介素与血管生成

Peluzzo, Amanda M; Autieri, Michael V

Glucose consumption of vascular cell types in culture: toward optimization of experimental conditions

培养中血管细胞类型的葡萄糖消耗:优化实验条件

Keiichi Torimoto, Keisuke Okuno, Ryohei Kuroda, No'Ad Shanas, Stephanie M Cicalese, Kunie Eguchi, Katherine J Elliott, Tatsuo Kawai, Cali B Corbett, Amanda M Peluzzo, Amanda K St Paul, Michael V Autieri, Rosario Scalia, Victor Rizzo, Tomoki Hashimoto, Satoru Eguchi

Deletion of LDLRAP1 Induces Atherosclerotic Plaque Formation, Insulin Resistance, and Dysregulated Insulin Response in Adipose Tissue

LDLRAP1 缺失会诱导动脉粥样硬化斑块形成、胰岛素抵抗和脂肪组织胰岛素反应失调

Tani Leigh, Tatsuo Kawai, Kyle Preston, Sheri Kelemen, Rachael Okune, Amanda St Paul, Cali Corbett, Amanda M Peluzzo, Jun Yu, Rosario G Scalia, Michael V Autieri

A peptide of the N terminus of GRK5 attenuates pressure-overload hypertrophy and heart failure

GRK5 N 端的肽可减轻压力超负荷肥大和心力衰竭

Ryan C Coleman, Akito Eguchi, Melissa Lieu, Rajika Roy, Eric W Barr, Jessica Ibetti, Anna-Maria Lucchese, Amanda M Peluzzo, Kenneth Gresham, J Kurt Chuprun, Walter J Koch