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

Human iPSC-Derived Dorsal Root Ganglion Organoid Modeling of Chemotherapy-Induced Peripheral Neuropathy

利用人诱导多能干细胞来源的背根神经节类器官构建化疗诱导周围神经病变模型

Hrstka, Sybil C L; Jahnke, Maya; Meng-Lin, Kylie; Lindorfer, Sarah; Noma, Henry; Hrstka, Ronald F; Staff, Nathan P

Selection of DNA Aptamers That Promote Neurite Outgrowth in Human iPSC-Derived Sensory Neuron Organoid Cultures.

筛选促进人类iPSC衍生感觉神经元类器官培养物中神经突生长的DNA适体

Wilbanks Brandon, Rolli Jenelle, Pearson Keenan, Hrstka Sybil C L, Hrstka Ronald F, Warrington Arthur E, Staff Nathan P, Maher L James 3rd

DNA aptamers that modulate biological activity of model neurons

调节模型神经元生物活性的 DNA 适体

Jenelle Rolli, Keenan Pearson, Brandon Wilbanks, Sybil C L Hrstka, Andrew P Minotti, Lorenz Studer, Arthur E Warrington, Nathan P Staff, L James Maher 3rd

Alterations of mesenchymal stromal cells in cerebrospinal fluid: insights from transcriptomics and an ALS clinical trial

脑脊液间充质基质细胞的改变:来自转录组学和ALS临床试验的启示

Krull, Ashley A; Setter, Deborah O; Gendron, Tania F; Hrstka, Sybil C L; Polzin, Michael J; Hart, Joseph; Dudakovic, Amel; Madigan, Nicolas N; Dietz, Allan B; Windebank, Anthony J; van Wijnen, Andre J; Staff, Nathan P

Proteomic analysis of human iPSC-derived sensory neurons implicates cell stress and microtubule dynamics dysfunction in bortezomib-induced peripheral neurotoxicity

对人诱导多能干细胞衍生的感觉神经元进行蛋白质组学分析表明,细胞应激和微管动力学功能障碍与硼替佐米诱导的周围神经毒性有关。

Hrstka, Sybil C L; Ankam, Soneela; Agac, Busranur; Klein, Jon P; Moore, Raymond A; Narapureddy, Bhavya; Schneider, Isabella; Hrstka, Ronald F; Dasari, Surendra; Staff, Nathan P

Quantification of Etoposide Hypersensitivity: A Sensitive, Functional Method for Assessing Pluripotent Stem Cell Quality

依托泊苷超敏反应的量化:一种评估多能干细胞质量的灵敏、实用的方法

Frank J Secreto, Xing Li, Alyson J Smith, Elizabeth S Bruinsma, Ester Perales-Clemente, Saji Oommen, Gresin Hawse, Sybil C L Hrstka, Bonnie K Arendt, Emma B Brandt, Dennis A Wigle, Timothy J Nelson

NOTCH1-Dependent Nitric Oxide Signaling Deficiency in Hypoplastic Left Heart Syndrome Revealed Through Patient-Specific Phenotypes Detected in Bioengineered Cardiogenesis

通过生物工程心脏发生中检测到的患者特异性表型揭示左心发育不全综合征中 NOTCH1 依赖性一氧化氮信号传导缺陷

Sybil C L Hrstka, Xing Li, Timothy J Nelson; Wanek Program Genetics Pipeline Group