[HTML][HTML] Nanoparticle biodistribution coefficients: A quantitative approach for understanding the tissue distribution of nanoparticles

M Kumar, P Kulkarni, S Liu, N Chemuturi… - Advanced Drug Delivery …, 2023 - Elsevier
The objective of this manuscript is to provide quantitative insights into the tissue distribution
of nanoparticles. Published pharmacokinetics of nanoparticles in plasma, tumor and 13 …

Breath analysis: a promising tool for disease diagnosis—the role of sensors

M Kaloumenou, E Skotadis, N Lagopati… - Sensors, 2022 - mdpi.com
Early-stage disease diagnosis is of particular importance for effective patient identification as
well as their treatment. Lack of patient compliance for the existing diagnostic methods …

A European Respiratory Society technical standard: exhaled biomarkers in lung disease

I Horváth, PJ Barnes, S Loukides… - European …, 2017 - Eur Respiratory Soc
Breath tests cover the fraction of nitric oxide in expired gas (F ENO), volatile organic
compounds (VOCs), variables in exhaled breath condensate (EBC) and other …

Diagnosis and Classification of 17 Diseases from 1404 Subjects via Pattern Analysis of Exhaled Molecules

MK Nakhleh, H Amal, R Jeries, YY Broza, M Aboud… - ACS …, 2017 - ACS Publications
We report on an artificially intelligent nanoarray based on molecularly modified gold
nanoparticles and a random network of single-walled carbon nanotubes for noninvasive …

A breathalyzer for the assessment of chronic kidney disease patients' breathprint: Breath flow dynamic simulation on the measurement chamber and experimental …

R Kalidoss, S Umapathy… - … Signal Processing and …, 2021 - Elsevier
Chemical sensor technologies with appropriate chamber design influence the kinetic
adsorption of exhaled breath. Moreover, emphasize on feature extraction from breathprint …

[HTML][HTML] Breath analysis by nanostructured metal oxides as chemo-resistive gas sensors

M Righettoni, A Amann, SE Pratsinis - Materials Today, 2015 - Elsevier
Recently breath analysis has attracted a lot of attention for disease monitoring and clinical
diagnostics as spectrometric techniques of high sophistication and novel sensing materials …

Synergy between nanomaterials and volatile organic compounds for non-invasive medical evaluation

YY Broza, R Vishinkin, O Barash, MK Nakhleh… - Chemical Society …, 2018 - pubs.rsc.org
This article is an overview of the present and ongoing developments in the field of
nanomaterial-based sensors for enabling fast, relatively inexpensive and minimally (or non-) …

Disease detection with molecular biomarkers: from chemistry of body fluids to nature-inspired chemical sensors

YY Broza, X Zhou, M Yuan, D Qu, Y Zheng… - Chemical …, 2019 - ACS Publications
This article aims to review nature-inspired chemical sensors for enabling fast, relatively
inexpensive, and minimally (or non-) invasive diagnostics and follow-up of the health …

Advanced materials for health monitoring with skin‐based wearable devices

H Jin, YS Abu‐Raya, H Haick - Advanced healthcare materials, 2017 - Wiley Online Library
Skin‐based wearable devices have a great potential that could result in a revolutionary
approach to health monitoring and diagnosing disease. With continued innovation and …

Sensors for breath testing: from nanomaterials to comprehensive disease detection

G Konvalina, H Haick - Accounts of chemical research, 2014 - ACS Publications
The analysis of volatile organic compounds in exhaled breath samples represents a new
frontier in medical diagnostics because it is a noninvasive and potentially inexpensive way …