Please use this identifier to cite or link to this item: https://repository.monashhealth.org/monashhealthjspui/handle/1/57752
Conference/Presentation Title: AT2R agonists buloxibutid (Compound 21) and NAc inhibit fibrogenesis in human precision cut lung slices ex vivo.
Authors: Young O.;Papagianis P.;Richards E.;Studley W.;Chen Y.;Bardin P. ;Jaffar J.;Westall G.;Bourke J.
Monash Health Department(s): Monash University - School of Clinical Sciences at Monash Health
Respiratory and Sleep Medicine
Institution: (Young) Monash University, Clayton, VIC, Australia
(Papagianis, Richards, Studley, Bourke) Pharmacology Monash University, Clayton, VIC, Australia
(Chen, Bardin) Monash Lung and Sleep, Monash Medical Centre, Clayton, VIC, Australia
(Jaffar, Westall) Allergy Immunology and Respiratory Medicine, Alfred Hospital, Prahran, VIC, Australia
Presentation/Conference Date: 31-Mar-2026
Copyright year: 2025
Publisher: European Respiratory Society
Publication information: European Respiratory Journal. Conference: European Respiratory Society Congress, ERS 2025. Amsterdam Netherlands. 66(Supplement 69) (no pagination), 2025. Date of Publication: 01 Sep 2025.
Abstract: 1. Buloxibutid, also known as Compound 21 (C21), is an angiotensin type 2 receptor AT2R agonist in early clinical trials for IPF, having shown antifibrotic efficacy in a bleomycin mouse model (PMID 29636695; 2018). 2. To compare C21 with an experimental AT2R agonist NAc and the IPF drug pirfenidone (PFD), using human precision cut lung slices (hPCLS). 3. Matched hPCLS from agarose-inflated lungs were left untreated or stimulated with fibrotic cocktail (FC = TGFp1, TNFa, LPA, PDGF; PMID 28314802; 2017) +/- C21 (10uM), NAc (10uM) or PFD (500uM). In situ fibrosis was assessed after 120h by Masson's trichrome staining. Secreted cytokines and extracellular matrix proteins were measured by ELISA in hPCLS-conditioned media collected at 48h and 120h respectively. 4. FC did not induce collagen deposition in hPCLS but increased secretion of both procollagen 1a1 (ng/mL: vehicle 40+/-12; FC 209+/-28, n=21, p<0.01, paired ttest) and fibronectin (mg/mL: vehicle 1.6+/-0.2; FC 4.4+/-0.3, n=15, p<0.01). C21 and NAc, but not PFD, significantly reduced secretion of both matrix proteins (p<0.05, one-way ANOVA, n=17, 14). Both AT2R agonists performed as well as PFD in inhibiting FC-induced IL-6 and IL-8 secretion (p<0.05, one-way ANOVA, n=5). 5. Fibrogenesis and inflammation can be modelled ex vivo in hPCLS using a cocktail of IPF-relevant mediators. C21 and NAc, at 50-fold lower concentrations than PFD, significantly reduced secretion of both fibrogenic and inflammatory markers. Establishing reversal of fibrosis by AT2R agonists in hPCLS from IPF lung would address a major limitation of current therapy and further support clinical translation of this novel drug class for IPF.
Conference Name: European Respiratory Society Congress, ERS 2025
Conference Start Date: 2025-09-27
Conference End Date: 2025-10-01
Conference Location: Amsterdam, Netherlands
DOI: http://monash.idm.oclc.org/login?url=https://dx.doi.org/10.1183/13993003.congress-2025.PA6088
URI: https://repository.monashhealth.org/monashhealthjspui/handle/1/57752
Type: Conference Abstract
Subjects: accuracy
antifibrotic activity
conditioned medium
ELISA kit
enzyme linked immunosorbent assay
ex vivo study
fibrogenesis
inflammation
lung slice
Masson staining
model
agarose
bleomycin
buloxibutid
collagen
extracellular matrix protein
fibronectin
interleukin 6
interleukin 8
matrix protein
pirfenidone
platelet derived growth factor
procollagen
Appears in Collections:Conference Abstracts

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