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

Helicobacter pylori induces somatic mutations in TP53 via overexpression of CHAC1 in infected gastric epithelial cells.

幽门螺杆菌通过过度表达 CHAC1 诱导感染的胃上皮细胞中 TP53 发生体细胞突变

Wada Yuriko, Takemura Kosuke, Tummala Padmaja, Uchida Keisuke, Kitagaki Keisuke, Furukawa Asuka, Ishige Yuuki, Ito Takashi, Hara Yukichi, Suzuki Takashige, Mimuro Hitomi, Board Philip G, Eishi Yoshinobu

GSTO1-1 plays a pro-inflammatory role in models of inflammation, colitis and obesity

GSTO1-1在炎症、结肠炎和肥胖模型中发挥促炎作用。

Menon, Deepthi; Innes, Ashlee; Oakley, Aaron J; Dahlstrom, Jane E; Jensen, Lora M; Brüstle, Anne; Tummala, Padmaja; Rooke, Melissa; Casarotto, Marco G; Baell, Jonathan B; Nguyen, Nghi; Xie, Yiyue; Cuellar, Matthew; Strasser, Jessica; Dahlin, Jayme L; Walters, Michael A; Burgio, Gaetan; O'Neill, Luke A J; Board, Philip G

Prophylactic Herpes Simplex Virus 2 (HSV-2) Vaccines Adjuvanted with Stable Emulsion and Toll-Like Receptor 9 Agonist Induce a Robust HSV-2-Specific Cell-Mediated Immune Response, Protect against Symptomatic Disease, and Reduce the Latent Viral Reservoir

添加稳定乳剂和 Toll 样受体 9 激动剂佐剂的预防性单纯疱疹病毒 2 型 (HSV-2) 疫苗可诱导强大的 HSV-2 特异性细胞介导免疫反应,预防症状性疾病,并减少潜伏病毒库。

Hensel, Michael T; Marshall, Jason D; Dorwart, Michael R; Heeke, Darren S; Rao, Eileen; Tummala, Padmaja; Yu, Li; Cohen, Gary H; Eisenberg, Roselyn J; Sloan, Derek D

The Role of Primary Cilia in Mesenchymal Stem Cell Differentiation: A Pivotal Switch in Guiding Lineage Commitment

纤毛在间充质干细胞分化中的作用:引导谱系定向的关键转折点

Tummala, Padmaja; Arnsdorf, Emily J; Jacobs, Christopher R

Primary cilium-dependent mechanosensing is mediated by adenylyl cyclase 6 and cyclic AMP in bone cells

骨细胞中,初级纤毛依赖性机械感知是由腺苷酸环化酶6和环磷酸腺苷介导的。

Kwon, Ronald Y; Temiyasathit, Sara; Tummala, Padmaja; Quah, Clarence C; Jacobs, Christopher R

Buffered platelet-rich plasma enhances mesenchymal stem cell proliferation and chondrogenic differentiation

缓冲的富血小板血浆可促进间充质干细胞增殖和软骨分化。

Mishra, Allan; Tummala, Padmaja; King, Aaron; Lee, Byung; Kraus, Mark; Tse, Victor; Jacobs, Christopher R

Primary cilia mediate mechanosensing in bone cells by a calcium-independent mechanism

初级纤毛通过一种不依赖于钙的机制介导骨细胞的机械感知。

Malone, Amanda M D; Anderson, Charles T; Tummala, Padmaja; Kwon, Ronald Y; Johnston, Tyler R; Stearns, Tim; Jacobs, Christopher R