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

Anti-VEGF immunotherapy with HEBERSaVax suppresses melanoma growth and metastasis via angiogenesis blockade and enhanced T-cell infiltration

HEBERSaVax抗VEGF免疫疗法通过阻断血管生成和增强T细胞浸润来抑制黑色素瘤的生长和转移。

Morera-Díaz, Yanelys; García-Sanmartín, Josune; Canaán-Haden, Camila; Bequet-Romero, Mónica; Gonzalez-Moya, Isabel; Ayala-Ávila, Marta; Tadic, Srdan; Garrido, Pablo; Narro-Íñiguez, Judit; Fuentes-Morales, Dasha; Bernáldez-Sarabia, Johanna; Valdovinos-Navarro, Blanca J; Licea-Navarro, Alexei F; Martínez, Alfredo

A DNA Vaccine Against Proadrenomedullin N-Terminal 20 Peptide (PAMP) Reduces Angiogenesis and Increases Lymphocyte and Macrophage Infiltration but Has No Effect on Tumor Burden in a Mouse Model of Lung Metastasis.

针对前肾上腺髓质素 N 端 20 肽 (PAMP) 的 DNA 疫苗可减少血管生成并增加淋巴细胞和巨噬细胞浸润,但对肺转移小鼠模型中的肿瘤负荷没有影响

Raju Tom Kalathil, Tadic Srdan, Garrido Pablo, Ochoa-Callejero Laura, Narro-Íñiguez Judit, García-Sanmartín Josune, Martínez Alfredo

Nucleic acid cancer vaccines targeting tumor related angiogenesis. Could mRNA vaccines constitute a game changer?

靶向肿瘤相关血管生成的核酸癌症疫苗。mRNA疫苗能否带来革命性的改变?

Tadic, Srdan; Martínez, Alfredo