Cargando…

Amorphous nano-selenium quantum dots prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase

Aims: We have previously reported that nano-selenium quantum dots (SeQDs) prevented endothelial dysfunction in atherosclerosis. This study is to investigate whether amorphous SeQDs (A-SeQDs) increase endogenous tetrahydrobiopterin biosynthesis to alleviate pulmonary arterial hypertension. Results: B...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhu, Mo-Li, Gao, Zhi-Tao, Lu, Jun-Xiu, Wang, Yang, Wang, Ge, Zhu, Tian-Tian, Li, Peng, Liu, Chao, Wang, Shuang-Xi, Yang, Lin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7906187/
https://www.ncbi.nlm.nih.gov/pubmed/33323558
http://dx.doi.org/10.18632/aging.202215
_version_ 1783655243231264768
author Zhu, Mo-Li
Gao, Zhi-Tao
Lu, Jun-Xiu
Wang, Yang
Wang, Ge
Zhu, Tian-Tian
Li, Peng
Liu, Chao
Wang, Shuang-Xi
Yang, Lin
author_facet Zhu, Mo-Li
Gao, Zhi-Tao
Lu, Jun-Xiu
Wang, Yang
Wang, Ge
Zhu, Tian-Tian
Li, Peng
Liu, Chao
Wang, Shuang-Xi
Yang, Lin
author_sort Zhu, Mo-Li
collection PubMed
description Aims: We have previously reported that nano-selenium quantum dots (SeQDs) prevented endothelial dysfunction in atherosclerosis. This study is to investigate whether amorphous SeQDs (A-SeQDs) increase endogenous tetrahydrobiopterin biosynthesis to alleviate pulmonary arterial hypertension. Results: Both A-SeQDs and C-SeQDs were stable under physiological conditions, while the size of A-SeQDs was smaller than C-SeQDs by high resolution-transmission electron microscopy scanning. In monocrotaline-injected mice, oral administration of A-SeQDs was more effective to decrease pulmonary arterial pressure, compared to C-SeQDs and organic selenium. Further, A-SeQDs increased both nitric oxide productions and intracellular BH4 levels, upregulated dihydrofolate reductase activity in lungs, and improved pulmonary arterial remodeling. Gene deletion of dihydrofolate reductase abolished these effects produced by A-SeQDs in mice. Finally, the blood levels of tetrahydrobiopterin and selenium were decreased in patients with pulmonary arterial hypertension. Conclusion: A-SeQDs increase intracellular tetrahydrobiopterin to prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase. Methods: Two polymorphs of SeQDs and A-SeQDs, and a crystalline form of SeQDs (C-SeQDs) were prepared through self-redox decomposition of selenosulfate precursor. Mice were injected with monocrotaline to induce pulmonary arterial hypertension in vivo. Pulmonary arterial pressure was measured.
format Online
Article
Text
id pubmed-7906187
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Impact Journals
record_format MEDLINE/PubMed
spelling pubmed-79061872021-03-04 Amorphous nano-selenium quantum dots prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase Zhu, Mo-Li Gao, Zhi-Tao Lu, Jun-Xiu Wang, Yang Wang, Ge Zhu, Tian-Tian Li, Peng Liu, Chao Wang, Shuang-Xi Yang, Lin Aging (Albany NY) Research Paper Aims: We have previously reported that nano-selenium quantum dots (SeQDs) prevented endothelial dysfunction in atherosclerosis. This study is to investigate whether amorphous SeQDs (A-SeQDs) increase endogenous tetrahydrobiopterin biosynthesis to alleviate pulmonary arterial hypertension. Results: Both A-SeQDs and C-SeQDs were stable under physiological conditions, while the size of A-SeQDs was smaller than C-SeQDs by high resolution-transmission electron microscopy scanning. In monocrotaline-injected mice, oral administration of A-SeQDs was more effective to decrease pulmonary arterial pressure, compared to C-SeQDs and organic selenium. Further, A-SeQDs increased both nitric oxide productions and intracellular BH4 levels, upregulated dihydrofolate reductase activity in lungs, and improved pulmonary arterial remodeling. Gene deletion of dihydrofolate reductase abolished these effects produced by A-SeQDs in mice. Finally, the blood levels of tetrahydrobiopterin and selenium were decreased in patients with pulmonary arterial hypertension. Conclusion: A-SeQDs increase intracellular tetrahydrobiopterin to prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase. Methods: Two polymorphs of SeQDs and A-SeQDs, and a crystalline form of SeQDs (C-SeQDs) were prepared through self-redox decomposition of selenosulfate precursor. Mice were injected with monocrotaline to induce pulmonary arterial hypertension in vivo. Pulmonary arterial pressure was measured. Impact Journals 2020-12-15 /pmc/articles/PMC7906187/ /pubmed/33323558 http://dx.doi.org/10.18632/aging.202215 Text en Copyright: © 2020 Zhu et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zhu, Mo-Li
Gao, Zhi-Tao
Lu, Jun-Xiu
Wang, Yang
Wang, Ge
Zhu, Tian-Tian
Li, Peng
Liu, Chao
Wang, Shuang-Xi
Yang, Lin
Amorphous nano-selenium quantum dots prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase
title Amorphous nano-selenium quantum dots prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase
title_full Amorphous nano-selenium quantum dots prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase
title_fullStr Amorphous nano-selenium quantum dots prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase
title_full_unstemmed Amorphous nano-selenium quantum dots prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase
title_short Amorphous nano-selenium quantum dots prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase
title_sort amorphous nano-selenium quantum dots prevent pulmonary arterial hypertension through recoupling endothelial nitric oxide synthase
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7906187/
https://www.ncbi.nlm.nih.gov/pubmed/33323558
http://dx.doi.org/10.18632/aging.202215
work_keys_str_mv AT zhumoli amorphousnanoseleniumquantumdotspreventpulmonaryarterialhypertensionthroughrecouplingendothelialnitricoxidesynthase
AT gaozhitao amorphousnanoseleniumquantumdotspreventpulmonaryarterialhypertensionthroughrecouplingendothelialnitricoxidesynthase
AT lujunxiu amorphousnanoseleniumquantumdotspreventpulmonaryarterialhypertensionthroughrecouplingendothelialnitricoxidesynthase
AT wangyang amorphousnanoseleniumquantumdotspreventpulmonaryarterialhypertensionthroughrecouplingendothelialnitricoxidesynthase
AT wangge amorphousnanoseleniumquantumdotspreventpulmonaryarterialhypertensionthroughrecouplingendothelialnitricoxidesynthase
AT zhutiantian amorphousnanoseleniumquantumdotspreventpulmonaryarterialhypertensionthroughrecouplingendothelialnitricoxidesynthase
AT lipeng amorphousnanoseleniumquantumdotspreventpulmonaryarterialhypertensionthroughrecouplingendothelialnitricoxidesynthase
AT liuchao amorphousnanoseleniumquantumdotspreventpulmonaryarterialhypertensionthroughrecouplingendothelialnitricoxidesynthase
AT wangshuangxi amorphousnanoseleniumquantumdotspreventpulmonaryarterialhypertensionthroughrecouplingendothelialnitricoxidesynthase
AT yanglin amorphousnanoseleniumquantumdotspreventpulmonaryarterialhypertensionthroughrecouplingendothelialnitricoxidesynthase