Literature DB >> 24632068

A 28-day rat inhalation study with an integrated molecular toxicology endpoint demonstrates reduced exposure effects for a prototypic modified risk tobacco product compared with conventional cigarettes.

Ulrike Kogel1, Walter K Schlage2, Florian Martin3, Yang Xiang4, Sam Ansari5, Patrice Leroy6, Patrick Vanscheeuwijck7, Stephan Gebel8, Ansgar Buettner9, Christoph Wyss10, Marco Esposito11, Julia Hoeng12, Manuel C Peitsch13.   

Abstract

Towards a systems toxicology-based risk assessment, we investigated molecular perturbations accompanying histopathological changes in a 28-day rat inhalation study combining transcriptomics with classical histopathology. We demonstrated reduced biological activity of a prototypic modified risk tobacco product (pMRTP) compared with the reference research cigarette 3R4F. Rats were exposed to filtered air or to three concentrations of mainstream smoke (MS) from 3R4F, or to a high concentration of MS from a pMRTP. Histopathology revealed concentration-dependent changes in response to 3R4F that were irritative stress-related in nasal and bronchial epithelium, and inflammation-related in the lung parenchyma. For pMRTP, significant changes were seen in the nasal epithelium only. Transcriptomics data were obtained from nasal and bronchial epithelium and lung parenchyma. Concentration-dependent gene expression changes were observed following 3R4F exposure, with much smaller changes for pMRTP. A computational-modeling approach based on causal models of tissue-specific biological networks identified cell stress, inflammation, proliferation, and senescence as the most perturbed molecular mechanisms. These perturbations correlated with histopathological observations. Only weak perturbations were observed for pMRTP. In conclusion, a correlative evaluation of classical histopathology together with gene expression-based computational network models may facilitate a systems toxicology-based risk assessment, as shown for a pMRTP.
Copyright © 2014 The Authors. Published by Elsevier Ltd.. All rights reserved.

Entities:  

Keywords:  Computational network model; Histopathology; Systems toxicology; Tobacco-heating; Transcriptomics

Mesh:

Substances:

Year:  2014        PMID: 24632068     DOI: 10.1016/j.fct.2014.02.034

Source DB:  PubMed          Journal:  Food Chem Toxicol        ISSN: 0278-6915            Impact factor:   6.023


  20 in total

1.  Chronic exposure to electronic cigarettes results in impaired cardiovascular function in mice.

Authors:  I Mark Olfert; Evan DeVallance; Hannah Hoskinson; Kayla W Branyan; Stuart Clayton; Christopher R Pitzer; D Patrick Sullivan; Matthew J Breit; Zhongxin Wu; Powsiri Klinkhachorn; W Kyle Mandler; Brett H Erdreich; Barbara S Ducatman; Randall W Bryner; Piyali Dasgupta; Paul D Chantler
Journal:  J Appl Physiol (1985)       Date:  2017-11-02

2.  Systems Toxicology: The Future of Risk Assessment.

Authors:  John Michael Sauer; Thomas Hartung; Marcel Leist; Thomas B Knudsen; Julia Hoeng; A Wallace Hayes
Journal:  Int J Toxicol       Date:  2015-03-23       Impact factor: 2.032

3.  Enhancement of COPD biological networks using a web-based collaboration interface.

Authors:  Stephanie Boue; Brett Fields; Julia Hoeng; Jennifer Park; Manuel C Peitsch; Walter K Schlage; Marja Talikka; Ilona Binenbaum; Vladimir Bondarenko; Oleg V Bulgakov; Vera Cherkasova; Norberto Diaz-Diaz; Larisa Fedorova; Svetlana Guryanova; Julia Guzova; Galina Igorevna Koroleva; Elena Kozhemyakina; Rahul Kumar; Noa Lavid; Qingxian Lu; Swapna Menon; Yael Ouliel; Samantha C Peterson; Alexander Prokhorov; Edward Sanders; Sarah Schrier; Golan Schwaitzer Neta; Irina Shvydchenko; Aravind Tallam; Gema Villa-Fombuena; John Wu; Ilya Yudkevich; Mariya Zelikman
Journal:  F1000Res       Date:  2015-01-29

4.  A 6-month inhalation toxicology study in Apoe-/- mice demonstrates substantially lower effects of e-vapor aerosol compared with cigarette smoke in the respiratory tract.

Authors:  Ee Tsin Wong; Justyna Szostak; Bjoern Titz; Tom Lee; Sin Kei Wong; Oksana Lavrynenko; Celine Merg; Maica Corciulo; Jovan Simicevic; Mehdi Auberson; Dariusz Peric; Remi Dulize; David Bornand; Guo Jie Loh; Kyeonghee Monica Lee; Jingjie Zhang; John H Miller; Walter K Schlage; Emmanuel Guedj; Thomas Schneider; Blaine Phillips; Patrice Leroy; Mohamed Amin Choukrallah; Nicolas Sierro; Ansgar Buettner; Yang Xiang; Arkadiusz Kuczaj; Nikolai V Ivanov; Karsta Luettich; Patrick Vanscheeuwijck; Manuel C Peitsch; Julia Hoeng
Journal:  Arch Toxicol       Date:  2021-05-07       Impact factor: 5.153

5.  Causal biological network database: a comprehensive platform of causal biological network models focused on the pulmonary and vascular systems.

Authors:  Stéphanie Boué; Marja Talikka; Jurjen Willem Westra; William Hayes; Anselmo Di Fabio; Jennifer Park; Walter K Schlage; Alain Sewer; Brett Fields; Sam Ansari; Florian Martin; Emilija Veljkovic; Renee Kenney; Manuel C Peitsch; Julia Hoeng
Journal:  Database (Oxford)       Date:  2015-04-17       Impact factor: 3.451

6.  Transcriptional profiling and targeted proteomics reveals common molecular changes associated with cigarette smoke-induced lung emphysema development in five susceptible mouse strains.

Authors:  Maciej Cabanski; Brett Fields; Stephanie Boue; Natalia Boukharov; Hector DeLeon; Natalie Dror; Marcel Geertz; Emmanuel Guedj; Anita Iskandar; Ulrike Kogel; Celine Merg; Michael J Peck; Carine Poussin; Walter K Schlage; Marja Talikka; Nikolai V Ivanov; Julia Hoeng; Manuel C Peitsch
Journal:  Inflamm Res       Date:  2015-05-12       Impact factor: 4.575

7.  Quantification of biological network perturbations for mechanistic insight and diagnostics using two-layer causal models.

Authors:  Florian Martin; Alain Sewer; Marja Talikka; Yang Xiang; Julia Hoeng; Manuel C Peitsch
Journal:  BMC Bioinformatics       Date:  2014-07-11       Impact factor: 3.169

Review 8.  Proteomics for systems toxicology.

Authors:  Bjoern Titz; Ashraf Elamin; Florian Martin; Thomas Schneider; Sophie Dijon; Nikolai V Ivanov; Julia Hoeng; Manuel C Peitsch
Journal:  Comput Struct Biotechnol J       Date:  2014-08-27       Impact factor: 7.271

9.  An 8-Month Systems Toxicology Inhalation/Cessation Study in Apoe-/- Mice to Investigate Cardiovascular and Respiratory Exposure Effects of a Candidate Modified Risk Tobacco Product, THS 2.2, Compared With Conventional Cigarettes.

Authors:  Blaine Phillips; Emilija Veljkovic; Stéphanie Boué; Walter K Schlage; Gregory Vuillaume; Florian Martin; Bjoern Titz; Patrice Leroy; Ansgar Buettner; Ashraf Elamin; Alberto Oviedo; Maciej Cabanski; Héctor De León; Emmanuel Guedj; Thomas Schneider; Marja Talikka; Nikolai V Ivanov; Patrick Vanscheeuwijck; Manuel C Peitsch; Julia Hoeng
Journal:  Toxicol Sci       Date:  2015-11-25       Impact factor: 4.849

10.  Evaluation of Biomarkers of Exposure in Smokers Switching to a Carbon-Heated Tobacco Product: A Controlled, Randomized, Open-Label 5-Day Exposure Study.

Authors:  Frank Lüdicke; Christelle Haziza; Rolf Weitkunat; John Magnette
Journal:  Nicotine Tob Res       Date:  2016-01-27       Impact factor: 4.244

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