author_facet Ruan, Q.
Ruan, Q.
author Ruan, Q.
spellingShingle Ruan, Q.
Human Molecular Genetics
Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
Genetics (clinical)
Genetics
Molecular Biology
General Medicine
author_sort ruan, q.
spelling Ruan, Q. 1460-2083 Oxford University Press (OUP) Genetics (clinical) Genetics Molecular Biology General Medicine http://dx.doi.org/10.1093/hmg/ddh082 Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway Human Molecular Genetics
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title Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_unstemmed Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_full Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_fullStr Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_full_unstemmed Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_short Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_sort striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex ii inhibitor-induced cell death through a non-apoptotic pathway
topic Genetics (clinical)
Genetics
Molecular Biology
General Medicine
url http://dx.doi.org/10.1093/hmg/ddh082
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author Ruan, Q.
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spelling Ruan, Q. 1460-2083 Oxford University Press (OUP) Genetics (clinical) Genetics Molecular Biology General Medicine http://dx.doi.org/10.1093/hmg/ddh082 Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway Human Molecular Genetics
spellingShingle Ruan, Q., Human Molecular Genetics, Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway, Genetics (clinical), Genetics, Molecular Biology, General Medicine
title Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_full Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_fullStr Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_full_unstemmed Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_short Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
title_sort striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex ii inhibitor-induced cell death through a non-apoptotic pathway
title_unstemmed Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway
topic Genetics (clinical), Genetics, Molecular Biology, General Medicine
url http://dx.doi.org/10.1093/hmg/ddh082