Literature DB >> 21846586

Liquid crystal-based sensors for the detection of heavy metals using surface-immobilized urease.

Qiong-Zheng Hu1, Chang-Hyun Jang.   

Abstract

In this study, a new method for the detection of heavy metals in aqueous phase was developed using liquid crystals (LCs). When UV-treated nematic LC, 4-cyano-4'-pentyl biphenyl (5CB) that was confined in the urease-modified gold grid was immersed in a urea solution, an optical response from bright to dark was observed under a polarized microscope, indicating that a planar-to-homeotropic orientational transition of the LC occurred at the aqueous/LC interface. Since urease hydrolyzes urea to produce ammonia, which would be ionized into ammonium and hydroxide ions, the main product of the photochemically degraded 5CB, 4-cyano-4'-biphenylcarboxylic acid (CBA), was deprotonated and self-assembled at the interface, inducing the orientational transition in the LC. Due to the high sensitivity and rapid response of this system, detection of heavy metal ions was further exploited. The divalent copper ion, which could effectively inhibit the activity of urease, was used as a model heavy metal ion. The optical appearance of the LC did not change when urea was in contact with the copper nitrate hydrate-blocked urease. After the copper-inhibited urease was reactivated by EDTA, a bright-to-dark shift in the optical signal was regenerated, indicating an orientational transition of the LC. This type of LC-based sensor shows high spatial resolution due to its optical characteristics and therefore could potentially be used to accurately monitor the presence of enzyme inhibitors such as heavy metal ions in real-time.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21846586     DOI: 10.1016/j.colsurfb.2011.07.052

Source DB:  PubMed          Journal:  Colloids Surf B Biointerfaces        ISSN: 0927-7765            Impact factor:   5.268


  6 in total

1.  Detection of heavy metal ions using whispering gallery mode lasing in functionalized liquid crystal microdroplets.

Authors:  Rui Duan; Yanzeng Li; Hanyang Li; Jun Yang
Journal:  Biomed Opt Express       Date:  2019-11-05       Impact factor: 3.732

Review 2.  State-of-the-Art Development in Liquid Crystal Biochemical Sensors.

Authors:  Xiyun Zhan; Yanjun Liu; Kun-Lin Yang; Dan Luo
Journal:  Biosensors (Basel)       Date:  2022-07-29

3.  A New Strategy for Reporting Specific Protein Binding Events at Aqueous-Liquid Crystal Interfaces in the Presence of Non-Specific Proteins.

Authors:  Chul Soon Park; Kazuki Iwabata; Uma Sridhar; Michael Tsuei; Khushboo Singh; Young-Ki Kim; S Thayumanavan; Nicholas L Abbott
Journal:  ACS Appl Mater Interfaces       Date:  2020-02-07       Impact factor: 9.229

Review 4.  Development and Application of Liquid Crystals as Stimuli-Responsive Sensors.

Authors:  Sulayman A Oladepo
Journal:  Molecules       Date:  2022-02-21       Impact factor: 4.411

Review 5.  Application and Technique of Liquid Crystal-Based Biosensors.

Authors:  Chonglin Luan; Haipei Luan; Dawei Luo
Journal:  Micromachines (Basel)       Date:  2020-02-08       Impact factor: 2.891

6.  Bovine Serum Albumin Protein-Based Liquid Crystal Biosensors for Optical Detection of Toxic Heavy Metals in Water.

Authors:  Noor Ul Amin; Humaira Masood Siddiqi; Yang Kun Lin; Zakir Hussain; Nasir Majeed
Journal:  Sensors (Basel)       Date:  2020-01-05       Impact factor: 3.576

  6 in total

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