G-Quadruplex-Filtered Selective Ion-to-Ion Current Amplification for Non-Invasive Ion Monitoring in Real Time

  • Yoo, Hyebin; 
  • Lee, Hyun-Ro; 
  • Kang, Soon-Bo; 
  • Lee, Juhwa; 
  • Park, Kunwoong; 
  • ... Lee, Kyung-Mi; 
  • 외 7명
Citations

WEB OF SCIENCE

13
Citations

SCOPUS

13

초록

Living cells efflux intracellular ions for maintaining cellular life, so intravital measurements of specific ion signals are of significant importance for studying cellular functions and pharmacokinetics. In this work, de novo synthesis of artificial K+-selective membrane and its integration with polyelectrolyte hydrogel-based open-junction ionic diode (OJID) is demonstrated, achieving a real-time K+-selective ion-to-ion current amplification in complex bioenvironments. By mimicking biological K+ channels and nerve impulse transmitters, in-line K+-binding G-quartets are introduced across freestanding lipid bilayers by G-specific hexylation of monolithic G-quadruplex, and the pre-filtered K+ flow is directly converted to amplified ionic currents by the OJID with a fast response time at 100 ms intervals. By the synergistic combination of charge repulsion, sieving, and ion recognition, the synthetic membrane allows K+ transport exclusively without water leakage; it is 250x and 17x more permeable toward K+ than monovalent anion, Cl-, and polyatomic cation, N-methyl-d-glucamine+, respectively. The molecular recognition-mediated ion channeling provides a 500% larger signal for K+ as compared to Li+ (0.6x smaller than K+) despite the same valence. Using the miniaturized device, non-invasive, direct, and real-time K+ efflux monitoring from living cell spheroids is achieved with minimal crosstalk, specifically in identifying osmotic shock-induced necrosis and drug-antidote dynamics. Mimicking ion channeling and neuron signaling, synthesis of artificial K+-selective membrane, and its integration with the hydrogel-based ionic device are demonstrated, achieving K+-selective ion-to-ion amplification in complex biomixtures. The membrane exclusively allows K+ transport without water leakage; it is 250x and 17x more permeable toward K+ than Cl- and NMDG+, respectively, and permits a 500% larger K+ signal than Li+.image

키워드

artificial ion channels; biosensors; G-quadruplexes; hydrogel ionic devices; proteomimetics; BARIUM PERMEATION; HIGH-RESOLUTION; POTASSIUM; APTAMER; CALCIUM; EFFLUX; FIELD; APOPTOSIS; CHANNELS; GUI
제목
G-Quadruplex-Filtered Selective Ion-to-Ion Current Amplification for Non-Invasive Ion Monitoring in Real Time
저자
Yoo, Hyebin; Lee, Hyun-Ro; Kang, Soon-Bo; Lee, Juhwa; Park, Kunwoong; Yoo, Hyunjae; Kim, Jinmin; Chung, Taek Dong; Lee, Kyung-Mi; Lim, Hyun-Ho; Son, Chang Yun; Sun, Jeong-Yun; Oh, Seung Soo
DOI
10.1002/adma.202303655
발행일
2023-09-15
유형
Article; Early Access
저널명
Advanced Materials
권
35
호
42