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

Online high-resolution real-time monitoring techniques for anions in river water

河水中阴离子的在线高分辨率实时监测技术

Arndt, Julia; Gerloff, Anna-Lena; Zavarsky, Alex; Schlüsener, Michael P; Wick, Arne; Duester, Lars

Functional analysis across model systems implicates ribosomal proteins in growth and proliferation defects associated with hypoplastic left heart syndrome

对多个模型系统的功能分析表明,核糖体蛋白与左心发育不全综合征相关的生长和增殖缺陷有关。

Nielsen, Tanja; Kervadec, Anaïs; Theis, Jeanne L; Missinato, Maria A; Marchant, James; Romero, Michaela; Marchetti, Katya; Lamba, Aashna; Zeng, Xin-Xin I; Berenguer, Marie; Walls, Stanley M; Schroeder, Analyne; Birker, Katja; Duester, Greg; Grossfeld, Paul; Nelson, Timothy J; Olson, Timothy M; Ocorr, Karen; Bodmer, Rolf; Vogler, Georg; Colas, Alexandre R

Retinoic Acid-Regulated Epigenetic Marks Identify Alx1 as a Direct Target Gene Required for Optic Cup Formation

视黄酸调控的表观遗传标记表明 Alx1 是视杯形成所必需的直接靶基因

Berenguer, Marie; Duester, Gregg

Early retinoic acid signaling organizes the body axis and defines domains for the forelimb and eye

早期视黄酸信号传导组织身体轴线,并界定前肢和眼睛的区域。

Duester, Gregg

Retinoic acid-regulated epigenetic marks identify Alx1 as a direct target gene required for optic cup formation.

视黄酸调控的表观遗传标记表明 Alx1 是视杯形成所需的直接靶基因

Berenguer Marie, Duester Gregg

Multi-element analysis of unfiltered samples in river water monitoring-digestion and single-run analyses of 67 elements

对河水监测中未过滤样品进行多元素分析——消解和单次运行分析67种元素

Belkouteb, Nadine; Schroeder, Henning; Wiederhold, Jan G; Ternes, Thomas A; Duester, Lars

Insufficient support for retinoic acid receptor control of synaptic plasticity through a non-genomic mechanism

缺乏足够的证据支持视黄酸受体通过非基因组机制调控突触可塑性。

Duester, Gregg

Genetic loss-of-function does not support gain-of-function studies suggesting retinoic acid controls limb bud timing and scaling

基因功能缺失实验并不支持功能获得实验的研究结果,这些研究表明视黄酸控制肢芽发育的时间和大小。

Berenguer, Marie; Duester, Gregg

Retinoic acid, RARs and early development

视黄酸、RARs 和早期发育

Berenguer, Marie; Duester, Gregg

Paracardial fat remodeling affects systemic metabolism through alcohol dehydrogenase 1

心旁脂肪重塑通过乙醇脱氢酶 1 影响全身代谢

Jennifer M Petrosino, Jacob Z Longenecker, Srinivasagan Ramkumar, Xianyao Xu, Lisa E Dorn, Anna Bratasz, Lianbo Yu, Santosh Maurya, Vladimir Tolstikov, Valerie Bussberg, Paul Ml Janssen, Muthu Periasamy, Michael A Kiebish, Gregg Duester, Johannes von Lintig, Ouliana Ziouzenkova, Federica Accornero