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

BET inhibitors (BETi) influence oxidative phosphorylation metabolism by affecting mitochondrial dynamics leading to alterations in apoptotic pathways in triple-negative breast cancer (TNBC) cells

BET 抑制剂 (BETi) 通过影响线粒体动力学来影响氧化磷酸化代谢,从而导致三阴性乳腺癌 (TNBC) 细胞凋亡途径发生改变

Teresa Rossi, Egidio Iorio, Mattea Chirico, Maria Elena Pisanu, Nicola Amodio, Maria Eugenia Gallo Cantafio, Ida Perrotta, Francesca Colciaghi, Marco Fiorillo, Alessia Gianferrari, Noemi Puccio, Antonino Neri, Alessia Ciarrocchi, Mariaelena Pistoni

BETi enhance ATGL expression and its lipase activity to exert their antitumoral effects in triple-negative breast cancer (TNBC) cells

BETi 增强 ATGL 表达及其脂肪酶活性,在三阴性乳腺癌 (TNBC) 细胞中发挥抗肿瘤作用

Teresa Rossi, Raffaella Zamponi, Mattea Chirico, Maria Elena Pisanu, Egidio Iorio, Federica Torricelli, Mila Gugnoni, Alessia Ciarrocchi, Mariaelena Pistoni

AKT-driven epithelial-mesenchymal transition is affected by copper bioavailability in HER2 negative breast cancer cells via a LOXL2-independent mechanism

AKT 驱动的上皮-间质转化通过 LOXL2 独立的机制受到 HER2 阴性乳腺癌细胞中铜生物利用度的影响

Alessandra Vitaliti, Ilenia Roccatani, Egidio Iorio, Nunzio Perta, Angelo Gismondi, Mattea Chirico, Maria Elena Pisanu, Daniele Di Marino, Antonella Canini, Anastasia De Luca #, Luisa Rossi #

A multi-marker integrative analysis reveals benefits and risks of bariatric surgery

多标志物综合分析揭示减肥手术的益处和风险

Simonetta Palleschi #, Valeria Guglielmi #, Lorenza Nisticò #, Carla Ferreri, Claudio Tabolacci, Francesco Facchiano, Egidio Iorio, Alessandro Giuliani, Sonia Brescianini, Emanuela Medda, Corrado Fagnani, Barbara Rossi, Anna Minoprio, Mattea Chirico, Maria Elena Pisanu, Federica Di Nolfo, Paola Fort

MALAT1 as a Regulator of the Androgen-Dependent Choline Kinase A Gene in the Metabolic Rewiring of Prostate Cancer

MALAT1 作为前列腺癌代谢重组中雄激素依赖性胆碱激酶 A 基因的调节剂

Sara De Martino, Egidio Iorio, Chiara Cencioni, Aurora Aiello, Francesco Spallotta, Mattea Chirico, Maria Elena Pisanu, Claudio Grassi, Alfredo Pontecorvi, Carlo Gaetano, Simona Nanni, Antonella Farsetti

Targeting Lactate Metabolism by Inhibiting MCT1 or MCT4 Impairs Leukemic Cell Proliferation, Induces Two Different Related Death-Pathways and Increases Chemotherapeutic Sensitivity of Acute Myeloid Leukemia Cells

通过抑制 MCT1 或 MCT4 靶向乳酸代谢可损害白血病细胞增殖、诱导两种不同的相关死亡途径并增加急性髓系白血病细胞的化疗敏感性

Ernestina Saulle, Isabella Spinello, Maria Teresa Quaranta, Luca Pasquini, Elvira Pelosi, Egidio Iorio, Germana Castelli, Mattea Chirico, Maria Elena Pisanu, Tiziana Ottone, Maria Teresa Voso, Ugo Testa, Catherine Labbaye