Cargando…

Synthetic human ABCB4 mRNA therapy rescues severe liver disease phenotype in a BALB/c.Abcb4(−/−) mouse model of PFIC3

BACKGROUND & AIMS: Progressive familial intrahepatic cholestasis type 3 (PFIC3) is a rare lethal autosomal recessive liver disorder caused by loss-of-function variations of the ABCB4 gene, encoding a phosphatidylcholine transporter (ABCB4/MDR3). Currently, no effective treatment exists for PFIC3...

Descripción completa

Detalles Bibliográficos
Autores principales: Wei, Guangyan, Cao, Jingsong, Huang, Pinzhu, An, Ping, Badlani, Disha, Vaid, Kahini A., Zhao, Shuangshuang, Wang, David Q-H., Zhuo, Jenny, Yin, Ling, Frassetto, Andrea, Markel, Arianna, Presnyak, Vladimir, Gandham, Srujan, Hua, Serenus, Lukacs, Christine, Finn, Patrick F., Giangrande, Paloma H., Martini, Paolo G.V., Popov, Yury V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8188846/
https://www.ncbi.nlm.nih.gov/pubmed/33340584
http://dx.doi.org/10.1016/j.jhep.2020.12.010
_version_ 1783705404250783744
author Wei, Guangyan
Cao, Jingsong
Huang, Pinzhu
An, Ping
Badlani, Disha
Vaid, Kahini A.
Zhao, Shuangshuang
Wang, David Q-H.
Zhuo, Jenny
Yin, Ling
Frassetto, Andrea
Markel, Arianna
Presnyak, Vladimir
Gandham, Srujan
Hua, Serenus
Lukacs, Christine
Finn, Patrick F.
Giangrande, Paloma H.
Martini, Paolo G.V.
Popov, Yury V.
author_facet Wei, Guangyan
Cao, Jingsong
Huang, Pinzhu
An, Ping
Badlani, Disha
Vaid, Kahini A.
Zhao, Shuangshuang
Wang, David Q-H.
Zhuo, Jenny
Yin, Ling
Frassetto, Andrea
Markel, Arianna
Presnyak, Vladimir
Gandham, Srujan
Hua, Serenus
Lukacs, Christine
Finn, Patrick F.
Giangrande, Paloma H.
Martini, Paolo G.V.
Popov, Yury V.
author_sort Wei, Guangyan
collection PubMed
description BACKGROUND & AIMS: Progressive familial intrahepatic cholestasis type 3 (PFIC3) is a rare lethal autosomal recessive liver disorder caused by loss-of-function variations of the ABCB4 gene, encoding a phosphatidylcholine transporter (ABCB4/MDR3). Currently, no effective treatment exists for PFIC3 outside of liver transplantation. METHODS: We have produced and screened chemically and genetically modified mRNA variants encoding human ABCB4 (hABCB4 mRNA) encapsulated in lipid nanoparticles (LNPs). We examined their pharmacological effects in a cell-based model and in a new in vivo mouse model resembling human PFIC3 as a result of homozygous disruption of the Abcb4 gene in fibrosis-susceptible BALB/c.Abcb4(−/−) mice. RESULTS: We show that treatment with liver-targeted hABCB4 mRNA resulted in de novo expression of functional hABCB4 protein and restored phospholipid transport in cultured cells and in PFIC3 mouse livers. Importantly, repeated injections of the hABCB4 mRNA effectively rescued the severe disease phenotype in young Abcb4(−/−) mice, with rapid and dramatic normalisation of all clinically relevant parameters such as inflammation, ductular reaction, and liver fibrosis. Synthetic mRNA therapy also promoted favourable hepatocyte-driven liver regeneration to restore normal homeostasis, including liver weight, body weight, liver enzymes, and portal vein blood pressure. CONCLUSIONS: Our data provide strong preclinical proof-of-concept for hABCB4 mRNA therapy as a potential treatment option for patients with PFIC3.
format Online
Article
Text
id pubmed-8188846
institution National Center for Biotechnology Information
language English
publishDate 2020
record_format MEDLINE/PubMed
spelling pubmed-81888462021-06-09 Synthetic human ABCB4 mRNA therapy rescues severe liver disease phenotype in a BALB/c.Abcb4(−/−) mouse model of PFIC3 Wei, Guangyan Cao, Jingsong Huang, Pinzhu An, Ping Badlani, Disha Vaid, Kahini A. Zhao, Shuangshuang Wang, David Q-H. Zhuo, Jenny Yin, Ling Frassetto, Andrea Markel, Arianna Presnyak, Vladimir Gandham, Srujan Hua, Serenus Lukacs, Christine Finn, Patrick F. Giangrande, Paloma H. Martini, Paolo G.V. Popov, Yury V. J Hepatol Article BACKGROUND & AIMS: Progressive familial intrahepatic cholestasis type 3 (PFIC3) is a rare lethal autosomal recessive liver disorder caused by loss-of-function variations of the ABCB4 gene, encoding a phosphatidylcholine transporter (ABCB4/MDR3). Currently, no effective treatment exists for PFIC3 outside of liver transplantation. METHODS: We have produced and screened chemically and genetically modified mRNA variants encoding human ABCB4 (hABCB4 mRNA) encapsulated in lipid nanoparticles (LNPs). We examined their pharmacological effects in a cell-based model and in a new in vivo mouse model resembling human PFIC3 as a result of homozygous disruption of the Abcb4 gene in fibrosis-susceptible BALB/c.Abcb4(−/−) mice. RESULTS: We show that treatment with liver-targeted hABCB4 mRNA resulted in de novo expression of functional hABCB4 protein and restored phospholipid transport in cultured cells and in PFIC3 mouse livers. Importantly, repeated injections of the hABCB4 mRNA effectively rescued the severe disease phenotype in young Abcb4(−/−) mice, with rapid and dramatic normalisation of all clinically relevant parameters such as inflammation, ductular reaction, and liver fibrosis. Synthetic mRNA therapy also promoted favourable hepatocyte-driven liver regeneration to restore normal homeostasis, including liver weight, body weight, liver enzymes, and portal vein blood pressure. CONCLUSIONS: Our data provide strong preclinical proof-of-concept for hABCB4 mRNA therapy as a potential treatment option for patients with PFIC3. 2020-12-17 2021-06 /pmc/articles/PMC8188846/ /pubmed/33340584 http://dx.doi.org/10.1016/j.jhep.2020.12.010 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Wei, Guangyan
Cao, Jingsong
Huang, Pinzhu
An, Ping
Badlani, Disha
Vaid, Kahini A.
Zhao, Shuangshuang
Wang, David Q-H.
Zhuo, Jenny
Yin, Ling
Frassetto, Andrea
Markel, Arianna
Presnyak, Vladimir
Gandham, Srujan
Hua, Serenus
Lukacs, Christine
Finn, Patrick F.
Giangrande, Paloma H.
Martini, Paolo G.V.
Popov, Yury V.
Synthetic human ABCB4 mRNA therapy rescues severe liver disease phenotype in a BALB/c.Abcb4(−/−) mouse model of PFIC3
title Synthetic human ABCB4 mRNA therapy rescues severe liver disease phenotype in a BALB/c.Abcb4(−/−) mouse model of PFIC3
title_full Synthetic human ABCB4 mRNA therapy rescues severe liver disease phenotype in a BALB/c.Abcb4(−/−) mouse model of PFIC3
title_fullStr Synthetic human ABCB4 mRNA therapy rescues severe liver disease phenotype in a BALB/c.Abcb4(−/−) mouse model of PFIC3
title_full_unstemmed Synthetic human ABCB4 mRNA therapy rescues severe liver disease phenotype in a BALB/c.Abcb4(−/−) mouse model of PFIC3
title_short Synthetic human ABCB4 mRNA therapy rescues severe liver disease phenotype in a BALB/c.Abcb4(−/−) mouse model of PFIC3
title_sort synthetic human abcb4 mrna therapy rescues severe liver disease phenotype in a balb/c.abcb4(−/−) mouse model of pfic3
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8188846/
https://www.ncbi.nlm.nih.gov/pubmed/33340584
http://dx.doi.org/10.1016/j.jhep.2020.12.010
work_keys_str_mv AT weiguangyan synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT caojingsong synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT huangpinzhu synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT anping synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT badlanidisha synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT vaidkahinia synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT zhaoshuangshuang synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT wangdavidqh synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT zhuojenny synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT yinling synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT frassettoandrea synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT markelarianna synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT presnyakvladimir synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT gandhamsrujan synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT huaserenus synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT lukacschristine synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT finnpatrickf synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT giangrandepalomah synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT martinipaologv synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3
AT popovyuryv synthetichumanabcb4mrnatherapyrescuessevereliverdiseasephenotypeinabalbcabcb4mousemodelofpfic3