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

Kinetic inductance current sensor for visible to near-infrared wavelength transition-edge sensor readout

用于可见光到近红外波长过渡边缘传感器读出的动能电感电流传感器

Szypryt, Paul; Bennett, Douglas A; Fogarty Florang, Ian; Fowler, Joseph W; Giachero, Andrea; Hummatov, Ruslan; Lita, Adriana E; Mates, John A B; Nam, Sae Woo; O'Neil, Galen C; Swetz, Daniel S; Ullom, Joel N; Vissers, Michael R; Wheeler, Jordan; Gao, Jiansong

Antioxidant-Mediated Modulation of Protein Reactivity for 3,4-Dihydroxyphenylacetaldehyde, a Toxic Dopamine Metabolite

抗氧化剂介导的蛋白质对3,4-二羟基苯乙醛(一种有毒的多巴胺代谢物)反应性的调节

Anderson, David G; Florang, Virginia R; Schamp, Josephine H; Buettner, Garry R; Doorn, Jonathan A

Aldehyde dehydrogenase inhibition generates a reactive dopamine metabolite autotoxic to dopamine neurons

醛脱氢酶抑制会产生一种对多巴胺神经元具有自身毒性的活性多巴胺代谢物。

Doorn, Jonathan A; Florang, Virginia R; Schamp, Josephine H; Vanle, Brigitte C

Cellular localization of dieldrin and structure-activity relationship of dieldrin analogues in dopaminergic cells

狄氏剂在多巴胺能细胞中的细胞定位及其类似物的构效关系

Allen, Erin M G; Florang, Virginia R; Davenport, Laurie L; Jinsmaa, Yunden; Doorn, Jonathan A

Inhibition and covalent modification of tyrosine hydroxylase by 3,4-dihydroxyphenylacetaldehyde, a toxic dopamine metabolite

3,4-二羟基苯乙醛(一种有毒的多巴胺代谢物)对酪氨酸羟化酶的抑制和共价修饰

Mexas, Lydia M; Florang, Virginia R; Doorn, Jonathan A

Relative inhibitory potency of molinate and metabolites with aldehyde dehydrogenase 2: implications for the mechanism of enzyme inhibition

莫利奈特及其代谢物对醛脱氢酶2的相对抑制效力:对酶抑制机制的启示

Allen, Erin M G; Anderson, David G R; Florang, Virginia R; Khanna, May; Hurley, Thomas D; Doorn, Jonathan A

Products of oxidative stress inhibit aldehyde oxidation and reduction pathways in dopamine catabolism yielding elevated levels of a reactive intermediate

氧化应激产物抑制多巴胺分解代谢中的醛氧化还原途径,导致活性中间体水平升高。

Jinsmaa, Yunden; Florang, Virginia R; Rees, Jennifer N; Anderson, David G; Strack, Stefan; Doorn, Jonathan A

Protein reactivity of 3,4-dihydroxyphenylacetaldehyde, a toxic dopamine metabolite, is dependent on both the aldehyde and the catechol

3,4-二羟基苯乙醛(一种有毒的多巴胺代谢物)的蛋白质反应性取决于醛基和儿茶酚基。

Rees, Jennifer N; Florang, Virginia R; Eckert, Laurie L; Doorn, Jonathan A