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

Impact of doxorubicin-loaded ferritin nanocages (FerOX) vs. free doxorubicin on T lymphocytes: a translational clinical study on breast cancer patients undergoing neoadjuvant chemotherapy

阿霉素负载铁蛋白纳米笼(FerOX)与游离阿霉素对T淋巴细胞的影响:一项针对接受新辅助化疗的乳腺癌患者的转化临床研究

Marta Sevieri # ,Francesco Andreata # ,Francesco Mainini ,Lorena Signati ,Francesca Piccotti ,Marta Truffi ,Arianna Bonizzi ,Leopoldo Sitia ,Claudia Pigliacelli ,Carlo Morasso ,Barbara Tagliaferri ,Fabio Corsi ,Serena Mazzucchelli

Pyruvate transamination and NAD biosynthesis enable proliferation of succinate dehydrogenase-deficient cells by supporting aerobic glycolysis

丙酮酸转氨作用和 NAD 生物合成通过支持有氧糖酵解促进琥珀酸脱氢酶缺陷细胞增殖

Luisa Ricci, Federico Uchenna Stanley #, Tanja Eberhart #, Francesco Mainini, David Sumpton, Simone Cardaci

Non-myopic multipoint multifidelity Bayesian framework for multidisciplinary design

用于多学科设计的非近视多点多保真贝叶斯框架

Di Fiore, Francesco; Mainini, Laura

D-mannose suppresses macrophage IL-1β production

D-甘露糖抑制巨噬细胞 IL-1β 的产生

Simone Torretta, Alessandra Scagliola, Luisa Ricci, Francesco Mainini, Sabrina Di Marco, Ivan Cuccovillo, Anna Kajaste-Rudnitski, David Sumpton, Kevin M Ryan, Simone Cardaci

D-mannose suppresses macrophage IL-1β production

D-甘露糖抑制巨噬细胞IL-1β的产生

Simone Torretta,Alessandra Scagliola,Luisa Ricci,Francesco Mainini,Sabrina Di Marco,Ivan Cuccovillo,Anna Kajaste-Rudnitski,David Sumpton,Kevin M Ryan,Simone Cardaci

Arginine-Based Poly(I:C)-Loaded Nanocomplexes for the Polarization of Macrophages Toward M1-Antitumoral Effectors

基于精氨酸的聚肌苷酸-胞嘧啶(Poly(I:C))纳米复合物用于巨噬细胞向M1型抗肿瘤效应细胞极化

Tamara G Dacoba,Clément Anfray,Francesco Mainini,Paola Allavena,María José Alonso,Fernando Torres Andón,José Crecente-Campo

Arginine-Based Poly(I:C)-Loaded Nanocomplexes for the Polarization of Macrophages Toward M1-Antitumoral Effectors

基于精氨酸的聚(I:C)纳米复合物促进巨噬细胞向 M1 抗肿瘤效应物极化

Tamara G Dacoba, Clément Anfray, Francesco Mainini, Paola Allavena, María José Alonso, Fernando Torres Andón, José Crecente-Campo

MIS416 as a siRNA Delivery System with the Ability to Target Antigen-Presenting Cells

MIS416 作为一种 siRNA 递送系统,能够靶向抗原呈递细胞

Francesco Mainini, David S Larsen, Gill A Webster, Sarah L Young, Michael R Eccles

Bridging Small Molecules to Modified Bacterial Microparticles Using a Disulphide Linkage: MIS416 as a Cargo Delivery System

利用二硫键将小分子与修饰的细菌微粒连接起来:MIS416 作为货物输送系统

Francesco Mainini, David S Larsen, Gill A Webster, Sarah L Young, Michael R Eccles