HerbertJ, GowA. Precision cut lung slices as a model for 3R application in toxicology. Appl In Vitro Toxicol, 2020:6; 47–48.
2.
NeuhausV, SchaudienD, GolovinaT, et al.Assessment of long-term cultivated human precision-cut lung slices as an ex vivo system for evaluation of chronic cytotoxicity and functionality. J Occup Med Toxicol, 2010:12; 13–21.
3.
BehrsingHP, FurnissMJ, DavisM, et al.In vitro exposure of precision-cut lung slices to 2-(4-amino-3-methylphenyl)-5-fluorobenzothiazole lysylamide dihydrochloride (NSC 710305, Phortress) increases inflammatory cytokine content and tissue damage. Toxicol Sci, 2013:131; 470–479.
4.
LinCJ, YangPC, HsuMT, et al.Induction of pulmonary fibrosis in organ-cultured rat lung by cadmium chloride and transforming growth factor-beta1. Toxicology, 1998:127; 157–166.
5.
LiuG, BettsC, CunoosamyDM, et al.Use of precision cut lung slices as a translational model for the study of lung biology. Respir Res, 2019:20; 162–175.
6.
LiG, CohenJA, MartinesC, et al.Preserving airway smooth muscle contraction in precision-cut lung slices. Sci Rep, 2020:10; 6480–6488.
7.
BehrsingHP, AminK, IpC, et al.Induction of fibrosis by bleomycin and carmustine in rat lung slices. Toxicologist CD, 2004:78; 52.
8.
TysonCA, AminK, IpC, et al.Comparison of BCNU and SarCNU toxicity in long-term cultures of precision cut lung slices. Toxicologist CD, 2005:84; 240.
9.
LauensteinL, SwitallaS, PrenzlerF, et al.Assessment of immunotoxicity induced by chemicals in human precision-cut lung slices (PCLS). Toxicol In Vitro, 2014:28; 588–599.
10.
RosnerSR, Ram-MohanS, Paez-CortezJR, et al.Airway contractility in the precision-cut lung slice after cryopreservation. Am J Respir Cell Mol Biol, 2014:50; 876–881.
11.
WatsonCY, DamianiF, Ram-MohanS, et al.Screening for chemical toxicity using cryopreserved precision cut lung slices. Toxicol Sci, 2016:150; 225–233.
12.
BaiY, KrishnamoorthyN, PatelKR, et al.Cryopreserved human precision-cut lung slices as a bioassay for live tissue banking. A viability study of bronchodilation with bitter-taste receptor agonists. Am J Respir Cell Mol Biol, 2016:54; 656–663.