Compact multiplexed biosensors systems hold great potential for diagnosis of diseases where the detection of multiple biomarkers is required. Hypersensitivity Immunoglobulin E mediated syndromes are primary immunodeficiency disorders associated with sensitization to allergens. Assessing immunoglobulin E (IgE) sensitization to allergens is an important strategy for allergy diagnosis. Here, we report for the first time a reliable, flexible and cost-effective optoelectrical biosensor system for the simultaneous determination of total and allergen-specific IgE and IgG, antibodies using an immunogold-silver signal amplification method. The biosensor was constructed on a regular digital versatile disc (DVD) to immobilize a panel of 12 allergen extracts or pure proteins in microarray format, as a proof of concept. The multiplexed biosensor showed a limit of detection of 0.26 IU/mL (624 pg/mL) and 14 ng/mL for IgE and IgG antibodies, respectively. The system was successfully applied in a cohort of 127 human serum samples, showing good sensitivity (97.6%) as well as specificity (85.7%), and an excellent area under the curve (AUC) value was found at 0.977 (confidence interval, CI 0.957 to 0.990) as compared and validated with a reference clinical immunofluorescence assay, confirming an excellent correlation between both techniques. The multiplex biosensor system with on-demand panel composition can be used fully autonomously in clinical or mobile laboratory settings without the need for any additional medical equipment, with which could make it suitable for massive allergy screening campaigns to better define sensitization profiles.
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http://dx.doi.org/10.1016/j.bios.2020.112438 | DOI Listing |
Chemosphere
February 2025
BRIC-National Institute of Animal Biotechnology (NIAB), Hyderabad, 500032, Telangana, India; BRIC- Regional Centre for Biotechnology (RCB), Faridabad, 121001, Haryana, India. Electronic address:
Endosulfan (Ed), a widely used organochlorine pesticide, is classified as a persistent organic pollutant (POP). Its long half-life, resistance to degradation, and bioaccumulation in the food chain contaminates soil, water, and air. Such widespread environmental damage triggers monitoring its levels for ensuring compliance with safety regulations and protecting public health.
View Article and Find Full Text PDFACS Nano
December 2024
Beijing Key Laboratory of Energy Conversion and Storage Materials, College of Chemistry, Beijing Normal University, Beijing 100875, P. R. China.
To achieve high accuracy and effectiveness in sensing and modulating neural activity, efficient charge-transfer biointerfaces and a high spatiotemporal resolution are required. Ultrathin bioelectrode arrays exhibiting mechanical compliance with biological tissues offer such biointerfaces. However, their thinness often leads to a lack of mechano-electrical stability or sufficiently high electrochemical capacitance, thus deteriorating their overall performance.
View Article and Find Full Text PDFPediatr Res
November 2024
School of Nursing and Midwifery, Griffith University, Nathan, Griffith, QLD, Australia.
As wearable biosensors are increasingly used in healthcare settings, this review aimed to identify the types of wearable biosensors used for neonate and pediatric patients and how these biosensors were clinically evaluated. A literature search was conducted using PubMed, CINAHL, Embase, Web of Science, and Cochrane. The studies published between January 2010 and February 2024 were included.
View Article and Find Full Text PDFBMC Genomics
June 2024
Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences (CATAS) & Key Laboratory of Biology and Genetic Resources of Tropical Crops of Hainan Province, Haikou, 571101, China.
Background: Nitzschia closterium f. minutissima is a commonly available diatom that plays important roles in marine aquaculture. It was originally classified as Nitzschia (Bacillariaceae, Bacillariophyta) but is currently regarded as a heterotypic synonym of Phaeodactylum tricornutum.
View Article and Find Full Text PDFLab Chip
January 2024
Industrialization Center of Micro/Nano ICs and Devices, Sino-German College of Intelligent Manufacturing, Shenzhen Technology University, Shenzhen 518118, China.
This work reports the development of a novel microfluidic biosensor using a graphene field-effect transistor (GFET) design for the parallel label-free analysis of multiple biomarkers. Overcoming the persistent challenge of constructing μm-sized FET sensitive interfaces that incorporate multiple receptors, we implement a split-float-gate structure that enables the manipulation of multiplexed biochemical functionalization using microfluidic channels. Immunoaffinity biosensing experiments are conducted using the mixture samples containing three liver cancer biomarkers, carcinoembryonic antigen (CEA), α-fetoprotein (AFP), and parathyroid hormone (PTH).
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