Literature DB >> 33650293

Point-of-critical-care diagnostics for sepsis enabled by multiplexed micro and nanosensing technologies.

Brandon K Ashley1, Umer Hassan1,2,3.   

Abstract

Sepsis is responsible for the highest economic and mortality burden in critical care settings around the world, prompting the World Health Organization in 2018 to designate it as a global health priority. Despite its high universal prevalence and mortality rate, a disproportionately low amount of sponsored research funding is directed toward diagnosis and treatment of sepsis, when early treatment has been shown to significantly improve survival. Additionally, current technologies and methods are inadequate to provide an accurate and timely diagnosis of septic patients in multiple clinical environments. For improved patient outcomes, a comprehensive immunological evaluation is critical which is comprised of both traditional testing and quantifying recently proposed biomarkers for sepsis. There is an urgent need to develop novel point-of-care, low-cost systems which can accurately stratify patients. These point-of-critical-care sensors should adopt a multiplexed approach utilizing multimodal sensing for heterogenous biomarker detection. For effective multiplexing, the sensors must satisfy criteria including rapid sample to result delivery, low sample volumes for clinical sample sparring, and reduced costs per test. A compendium of currently developed multiplexed micro and nano (M/N)-based diagnostic technologies for potential applications toward sepsis are presented. We have also explored the various biomarkers targeted for sepsis including immune cell morphology changes, circulating proteins, small molecules, and presence of infectious pathogens. An overview of different M/N detection mechanisms are also provided, along with recent advances in related nanotechnologies which have shown improved patient outcomes and perspectives on what future successful technologies may encompass. This article is categorized under: Diagnostic Tools > Biosensing.
© 2021 Wiley Periodicals LLC.

Entities:  

Keywords:  diagnostics and management; disease; micronanotechnology; point-of-critical-care biosensors

Mesh:

Year:  2021        PMID: 33650293      PMCID: PMC8447248          DOI: 10.1002/wnan.1701

Source DB:  PubMed          Journal:  Wiley Interdiscip Rev Nanomed Nanobiotechnol        ISSN: 1939-0041


  129 in total

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10.  Prevalence, Underlying Causes, and Preventability of Sepsis-Associated Mortality in US Acute Care Hospitals.

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Journal:  JAMA Netw Open       Date:  2019-02-01
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  5 in total

1.  Investigating Cell-Particle Conjugate Orientations in a Microfluidic Channel to Ameliorate Impedance-based Signal Acquisition and Detection.

Authors:  Brandon K Ashley; Ishika Mukerji; Umer Hassan
Journal:  Annu Int Conf IEEE Eng Med Biol Soc       Date:  2021-11

2.  Antibody-functionalized aluminum oxide-coated particles targeting neutrophil receptors in a multifrequency microfluidic impedance cytometer.

Authors:  Brandon K Ashley; Jianye Sui; Mehdi Javanmard; Umer Hassan
Journal:  Lab Chip       Date:  2022-08-09       Impact factor: 7.517

3.  Aluminum Oxide-Coated Particle Differentiation Employing Supervised Machine Learning and Impedance Cytometry.

Authors:  Brandon K Ashley; Jianye Sui; Mehdi Javanmard; Umer Hassan
Journal:  IEEE Int Conf Nano Micro Eng Mol Syst       Date:  2022-06-10

4.  Time-domain signal averaging to improve microparticles detection and enumeration accuracy in a microfluidic impedance cytometer.

Authors:  Brandon K Ashley; Umer Hassan
Journal:  Biotechnol Bioeng       Date:  2021-08-16       Impact factor: 4.530

5.  Simultaneous detection of sepsis host response biomarkers in whole blood using electrochemical biosensor.

Authors:  Ambalika S Tanak; Abha Sardesai; Sriram Muthukumar; Shalini Prasad
Journal:  Bioeng Transl Med       Date:  2022-03-17
  5 in total

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