[HTML][HTML] FRET-based dynamic structural biology: Challenges, perspectives and an appeal for open-science practices

E Lerner, A Barth, J Hendrix, B Ambrose, V Birkedal… - Elife, 2021 - elifesciences.org
Single-molecule FRET (smFRET) has become a mainstream technique for studying
biomolecular structural dynamics. The rapid and wide adoption of smFRET experiments by …

Nanofluidics for chemical and biological dynamics in solution at the single molecular level

N Chantipmanee, Y Xu - TrAC Trends in Analytical Chemistry, 2023 - Elsevier
Studying dynamics at the single-molecule level enables deeper and more detailed insights
into the behaviors, functions, mechanisms, and heterogeneity of chemical or biological …

[HTML][HTML] Modulation of FGF pathway signaling and vascular differentiation using designed oligomeric assemblies

NI Edman, A Phal, RL Redler, T Schlichthaerle… - Cell, 2024 - cell.com
Many growth factors and cytokines signal by binding to the extracellular domains of their
receptors and driving association and transphosphorylation of the receptor intracellular …

[PDF][PDF] 飞秒激光快速制备大面积二维微纳结构

高文, 郑美玲, 金峰, 董贤子, 刘洁 - Laser & Optoelectronics …, 2020 - researching.cn
摘要采用数字微镜器件(DMD) 无掩模光刻技术, 以飞秒激光为光源, 结合大面积拼接的方法快速
制备了具有较高分辨率和毫米尺寸的大面积微纳结构. 提出以单子场投影线扫描的方式进一步 …

Toward the development of rapid, specific, and sensitive microfluidic sensors: A comprehensive device blueprint

S Sathish, AQ Shen - JACS Au, 2021 - ACS Publications
Recent advances in nano/microfluidics have led to the miniaturization of surface-based
chemical and biochemical sensors, with applications ranging from environmental monitoring …

FGF23 contains two distinct high-affinity binding sites enabling bivalent interactions with α-Klotho

Y Suzuki, E Kuzina, SJ An, F Tome… - Proceedings of the …, 2020 - National Acad Sciences
The three members of the endocrine-fibroblast growth factor (FGF) family, FGF19, 21, and 23
are circulating hormones that regulate critical metabolic processes. FGF23 stimulates the …

[HTML][HTML] Advances in label-free detections for nanofluidic analytical devices

THH Le, H Shimizu, K Morikawa - Micromachines, 2020 - mdpi.com
Nanofluidics, a discipline of science and engineering of fluids confined to structures at the 1–
1000 nm scale, has experienced significant growth over the past decade. Nanofluidics have …

[HTML][HTML] Pressure-controlled microfluidics for automated single-molecule sample preparation

A Yang, FN Lein, J Weiler, J Drechsel, V Schumann… - HardwareX, 2023 - Elsevier
Sample preparation is a crucial step in single-molecule experiments and involves
passivating the microfluidic sample chamber, immobilizing the molecules, and setting …

[PDF][PDF] 激光超衍射光刻原理与技术

梁紫鑫, 赵圆圆, 段宣明 - Laser & Optoelectronics Progress, 2022 - researching.cn
摘要现有主流光刻技术与设备变得越来越复杂的原因之一在于其仍然囿于线性光学光刻范畴,
未能突破光学衍射极限, 是衍射极限附近的光刻技术. 采用紫外, 可见或近红外等长波长光源进行 …

Integrated Glass Microfluidics with Electrochemical Nanogap Electrodes

S Sarkar, AF Nieuwenhuis, SG Lemay - Analytical chemistry, 2023 - ACS Publications
We present a framework for the fabrication of chip-based electrochemical nanogap sensors
integrated with microfluidics. Instead of polydimethylsiloxane (PDMS), SU-8 aided adhesive …