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

Tailoring electrode surface charge to achieve discrimination and quantification of chemically similar small molecules with electrochemical aptamers

利用电化学适体调控电极表面电荷,实现对化学性质相似的小分子进行区分和定量分析

Kesler, Vladimir; Fu, Kaiyu; Chen, Yihang; Park, Chan Ho; Eisenstein, Michael; Murmann, Boris; Soh, H Tom

Author Correction: Discovery of indole-modified aptamers for highly specific recognition of protein glycoforms

作者更正:发现吲哚修饰的适体可高度特异性地识别蛋白质糖型

Yoshikawa, Alex M; Rangel, Alexandra; Feagin, Trevor; Chun, Elizabeth M; Wan, Leighton; Li, Anping; Moeckl, Leonhard; Wu, Diana; Eisenstein, Michael; Pitteri, Sharon; Soh, H Tom

A fluorescence sandwich immunoassay for the real-time continuous detection of glucose and insulin in live animals

一种用于实时连续检测活体动物体内葡萄糖和胰岛素的荧光夹心免疫分析法

Poudineh, Mahla; Maikawa, Caitlin L; Ma, Eric Yue; Pan, Jing; Mamerow, Dan; Hang, Yan; Baker, Sam W; Beirami, Ahmad; Yoshikawa, Alex; Eisenstein, Michael; Kim, Seung; Vučković, Jelena; Appel, Eric A; Soh, H Tom

Accelerated Electron Transfer in Nanostructured Electrodes Improves the Sensitivity of Electrochemical Biosensors

纳米结构电极中加速的电子转移提高了电化学生物传感器的灵敏度

Fu, Kaiyu; Seo, Ji-Won; Kesler, Vladimir; Maganzini, Nicolo; Wilson, Brandon D; Eisenstein, Michael; Murmann, Boris; Soh, H Tom

Going beyond the Debye Length: Overcoming Charge Screening Limitations in Next-Generation Bioelectronic Sensors

超越德拜长度:克服下一代生物电子传感器中的电荷屏蔽限制

Kesler, Vladimir; Murmann, Boris; Soh, H Tom

Re-Evaluating the Conventional Wisdom about Binding Assays

重新评估关于结合试验的传统观点

Wilson, Brandon D; Soh, H Tom

Design and Analysis of a Sample-and-Hold CMOS Electrochemical Sensor for Aptamer-based Therapeutic Drug Monitoring

基于适体治疗药物监测的采样保持型CMOS电化学传感器的设计与分析

Chien, Jun-Chau; Baker, Sam W; Soh, H Tom; Arbabian, Amin

Independent control of the thermodynamic and kinetic properties of aptamer switches

独立控制适体开关的热力学和动力学性质

Wilson, Brandon D; Hariri, Amani A; Thompson, Ian A P; Eisenstein, Michael; Soh, H Tom

High-Fidelity Nanopore Sequencing of Ultra-Short DNA Targets

超短DNA靶标的高保真纳米孔测序

Wilson, Brandon D; Eisenstein, Michael; Soh, H Tom

Multiparameter Particle Display (MPPD): A Quantitative Screening Method for the Discovery of Highly Specific Aptamers

多参数粒子展示(MPPD):一种用于发现高特异性适体的定量筛选方法

Wang, Jinpeng; Yu, Jingwen; Yang, Qin; McDermott, John; Scott, Alexander; Vukovich, Matthew; Lagrois, Remy; Gong, Qiang; Greenleaf, William; Eisenstein, Michael; Ferguson, B Scott; Soh, H Tom