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

Metabolic regulator ERRγ governs gastric stem cell differentiation into acid-secreting parietal cells

代谢调节因子ERRγ调控胃干细胞分化为分泌胃酸的壁细胞。

Mahliyah Adkins-Threats,Sumimasa Arimura,Yang-Zhe Huang,Margarita Divenko,Sarah To,Heather Mao,Yongji Zeng,Jenie Y Hwang,Joseph R Burclaff,Shilpa Jain,Jason C Mills

Highlights of how single-cell analyses are illuminating differentiation and disease in the gastric corpus

单细胞分析如何揭示胃体分化和疾病的关键要点

Adkins-Threats, Mahliyah; Huang, Yang-Zhe; Mills, Jason C

Host gastric corpus microenvironment facilitates Ascaris suum larval hatching and infection in a murine model

宿主胃体微环境促进小鼠模型中猪蛔虫幼虫孵化和感染

Yifan Wu, Grace Adeniyi-Ipadeola, Mahliyah Adkins-Threats, Matthew Seasock, Charlie Suarez-Reyes, Ricardo Fujiwara, Maria Elena Bottazzi, Lizhen Song, Jason C Mills, Jill E Weatherhead

Evaluation of an 8-week high school science communication course designed to read, write, and present scientific research

对一门为期 8 周的高中科学传播课程进行评估,该课程旨在培养学生阅读、写作和展示科学研究的能力。

Radyk, Megan D; Spatz, Lillian B; Adkins-Threats, Mahliyah L; Cates, Kitra; St Pierre, Celine L

Gastric Organoids: Progress and Remaining Challenges

胃类器官:进展与尚存挑战

Pang, Min-Jiao; Burclaff, Joseph R; Jin, Ramon; Adkins-Threats, Mahliyah; Osaki, Luciana H; Han, Yunan; Mills, Jason C; Miao, Zhi-Feng; Wang, Zhen-Ning

Cell plasticity in regeneration in the stomach and beyond

胃及其他部位的细胞可塑性在再生中的作用

Adkins-Threats, Mahliyah; Mills, Jason C

DDIT4 Licenses Only Healthy Cells to Proliferate During Injury-induced Metaplasia

DDIT4 仅允许健康细胞在损伤诱导的化生过程中增殖

Miao, Zhi-Feng; Sun, Jing-Xu; Adkins-Threats, Mahliyah; Pang, Min-Jiao; Zhao, Jun-Hua; Wang, Xin; Tang, Kai-Wen; Wang, Zhen-Ning; Mills, Jason C

A Metformin-Responsive Metabolic Pathway Controls Distinct Steps in Gastric Progenitor Fate Decisions and Maturation

二甲双胍反应性代谢途径控制胃祖细胞命运决定和成熟的不同步骤

Zhi-Feng Miao, Mahliyah Adkins-Threats, Joseph R Burclaff, Luciana H Osaki, Jing-Xu Sun, Yan Kefalov, Zheng He, Zhen-Ning Wang, Jason C Mills

A Dedicated Evolutionarily Conserved Molecular Network Licenses Differentiated Cells to Return to the Cell Cycle

一个专门的、进化上保守的分子网络使分化细胞能够重新进入细胞周期。

Zhi-Feng Miao ,Mark A Lewis ,Charles J Cho ,Mahliyah Adkins-Threats ,Dongkook Park ,Jeffrey W Brown ,Jing-Xu Sun ,Joseph R Burclaff ,Susan Kennedy ,Jianyun Lu ,Marcus Mahar ,Ilja Vietor ,Lukas A Huber ,Nicholas O Davidson ,Valeria Cavalli ,Deborah C Rubin ,Zhen-Ning Wang ,Jason C Mills