scholarly journals A 90-day OECD TG 413 rat inhalation study with systems toxicology endpoints demonstrates reduced exposure effects of the aerosol from the carbon heated tobacco product version 1.2 (CHTP1.2) compared with cigarette smoke. II. Systems toxicology assessment

2018 ◽  
Vol 115 ◽  
pp. 284-301 ◽  
Author(s):  
Bjoern Titz ◽  
Ulrike Kogel ◽  
Florian Martin ◽  
Walter K. Schlage ◽  
Yang Xiang ◽  
...  
2020 ◽  
Vol 178 (1) ◽  
pp. 138-158
Author(s):  
Bjoern Titz ◽  
Alain Sewer ◽  
Karsta Luettich ◽  
Ee Tsin Wong ◽  
Emmanuel Guedj ◽  
...  

Abstract Smoking cessation is the most effective measure for reducing the risk of smoking-related diseases. However, switching to less harmful products (modified-risk tobacco products [MRTP]) can be an alternative to help reduce the risk for adult smokers who would otherwise continue to smoke. In an 18-month chronic carcinogenicity/toxicity study in A/J mice (OECD Test Guideline 453), we assessed the aerosol of Tobacco Heating System 2.2 (THS 2.2), a candidate MRTP based on the heat-not-burn principle, compared with 3R4F cigarette smoke (CS). To capture toxicity- and disease-relevant mechanisms, we complemented standard toxicology endpoints with in-depth systems toxicology analyses. In this part of our publication series, we report on integrative assessment of the apical and molecular exposure effects on the respiratory tract (nose, larynx, and lungs). Across the respiratory tract, we found changes in inflammatory response following 3R4F CS exposure (eg, antimicrobial peptide response in the nose), with both shared and distinct oxidative and xenobiotic responses. Compared with 3R4F CS, THS 2.2 aerosol exerted far fewer effects on respiratory tract histology, including adaptive tissue changes in nasal and laryngeal epithelium and inflammation and emphysematous changes in the lungs. Integrative analysis of molecular changes confirmed the substantially lower impact of THS 2.2 aerosol than 3R4F CS on toxicologically and disease-relevant molecular processes such as inflammation, oxidative stress responses, and xenobiotic metabolism. In summary, this work exemplifies how apical and molecular endpoints can be combined effectively for toxicology assessment and further supports findings on the reduced respiratory health risks of THS 2.2 aerosol.


2016 ◽  
Vol 29 (8) ◽  
pp. 1252-1269 ◽  
Author(s):  
Filippo Zanetti ◽  
Alain Sewer ◽  
Carole Mathis ◽  
Anita R. Iskandar ◽  
Radina Kostadinova ◽  
...  

2016 ◽  
Vol 28 (5) ◽  
pp. 226-240 ◽  
Author(s):  
Giuseppe Lo Sasso ◽  
Bjoern Titz ◽  
Catherine Nury ◽  
Stéphanie Boué ◽  
Blaine Phillips ◽  
...  

2017 ◽  
Vol 280 ◽  
pp. S262-S263
Author(s):  
Anita R. Iskandar ◽  
Bjoern Titz ◽  
Alain Sewer ◽  
Patrice Leroy ◽  
Thomas Schneider ◽  
...  

2017 ◽  
Vol 6 (5) ◽  
pp. 631-653 ◽  
Author(s):  
A. R. Iskandar ◽  
B. Titz ◽  
A. Sewer ◽  
P. Leroy ◽  
T. Schneider ◽  
...  

Reduced impact of a tobacco product was observed on the smoking “field-of-injury” tissues.


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