Xinli Qu
2025–2025 OpenAlex profile ↗
Reproducibility track record
1
assessed papers
10/100
mean reproducibility
0
reproduced (C1–C2)
1
flagged
0
total citations
flag rate:
100%
(1/1)
The share of this author’s assessed papers carrying a ⚑ flag. A concentration is a prompt for expert review — never, on its own, a determination about the person.
Authorship role
first author: 1
last author: 0
Topics
Funders
—
Frequent co-authors
Fernando J. Rossello 1David Powell 1Luciano G. Martelotto 1Alberto Roselló‐Díez 1Chee Ho H’ng 1Ehsan Razmara 1Shanika L. Amarasinghe 1Kailash Kumar Vinu 1Ashiq Khader C 1Maia Zethoven 1
Institutions
Australian Regenerative Medicine Institute 1Monash University 1University of Cambridge 1The University of Melbourne 1Victorian Comprehensive Cancer Centre 1Centre for Cancer Biology 1
Geography (author institutions)
AU 1GB 1
Co-author network
Collaborators, sized by shared output and coloured by their own reproducibility (green = high, red = low). Click a node to open their card. A pattern is a prompt for review, never a determination.
How this author’s assessed papers reproduced — the outcome of reproduction attempts, not a judgement of the person. Coverage is partial and grows over time.
Assessed papers (1)
Complete publication record (30)
Request a reproduction →1 assessed by us (0 reproduced) · 29 not yet assessed — every PubMed paper on record, linked below.
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Resveratrol Treatment Attenuates Focal Cerebral Ischaemic Injury in Rats by Activating the Sirt1/Gpx4 Pathway to Inhibit Ferroptosis ↗BRAIN BROAD RESEARCH IN ARTIFICIAL INTELLIGENCE AND NEUROSCIENCE · 2026not yet assessed
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Resveratrol Treatment Attenuates Focal Cerebral Ischaemic Injury in Rats by Activating the Sirt1/Gpx4 Pathway to Inhibit Ferroptosis - Figure 2 ↗Zenodo (CERN European Organization for Nuclear Research) · 2026not yet assessed
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Resveratrol Treatment Attenuates Focal Cerebral Ischaemic Injury in Rats by Activating the Sirt1/Gpx4 Pathway to Inhibit Ferroptosis - Figure 2 ↗Zenodo (CERN European Organization for Nuclear Research) · 2026not yet assessed
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Resveratrol Treatment Attenuates Focal Cerebral Ischaemic Injury in Rats by Activating the Sirt1/Gpx4 Pathway to Inhibit Ferroptosis - Figure 3 ↗Zenodo (CERN European Organization for Nuclear Research) · 2026not yet assessed
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Resveratrol Treatment Attenuates Focal Cerebral Ischaemic Injury in Rats by Activating the Sirt1/Gpx4 Pathway to Inhibit Ferroptosis - Figure 1 ↗Zenodo (CERN European Organization for Nuclear Research) · 2026not yet assessed
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Resveratrol Treatment Attenuates Focal Cerebral Ischaemic Injury in Rats by Activating the Sirt1/Gpx4 Pathway to Inhibit Ferroptosis - Figure 1 ↗Zenodo (CERN European Organization for Nuclear Research) · 2026not yet assessed
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Resveratrol Treatment Attenuates Focal Cerebral Ischaemic Injury in Rats by Activating the Sirt1/Gpx4 Pathway to Inhibit Ferroptosis - Figure 3 ↗Zenodo (CERN European Organization for Nuclear Research) · 2026not yet assessed
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Gli1-expressing stromal cells are highly reparative precursors of long-lived chondroprogenitors in the fetal murine limb⚑Nature Communications · 2025 · PMID 41253754L1 10/100 ⚑
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The secreted micropeptide C4orf48 enhances renal fibrosis via an RNA-binding mechanism ↗Journal of Clinical Investigation · 2024 · PMID 38625739not yet assessed
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Compensatory growth and recovery of cartilage cytoarchitecture after transient cell death in fetal mouse limbs ↗Nature Communications · 2024 · PMID 38580631not yet assessed
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Long-lived chondroprogenitors are generated by fetal-limb Gli1+ cells and are replenished upon mosaic cell-cycle arrest in the cartilage ↗bioRxiv (Cold Spring Harbor Laboratory) · 2024not yet assessed
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The secreted micropeptide C4orf48 enhances renal fibrosis via an RNA-binding mechanism ↗UNC Libraries · 2024not yet assessed
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Mitochondrial micropeptide MOXI promotes fibrotic gene transcription by translocation to the nucleus and bridging N-acetyltransferase 14 with transcription factor c-Jun ↗Kidney International · 2023 · PMID 36804379not yet assessed
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A New Pipeline to Automatically Segment and Semi-Automatically Measure Bone Length on 3D Models Obtained by Computed Tomography ↗Frontiers in Cell and Developmental Biology · 2021 · PMID 34513850not yet assessed
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Smad4 promotes diabetic nephropathy by modulating glycolysis and OXPHOS ↗EMBO Reports · 2020 · PMID 31916354not yet assessed
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A collection of genetic mouse lines and related tools for inducible and reversible intersectional misexpression ↗Development · 2020 · PMID 32366677not yet assessed
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A new pipeline to automatically segment and semi-automatically measure bone length on 3D models obtained by Computed Tomography ↗bioRxiv (Cold Spring Harbor Laboratory) · 2020not yet assessed
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Combined Blockade of Smad3 and JNK Pathways Ameliorates Progressive Fibrosis in Folic Acid Nephropathy ↗Frontiers in Pharmacology · 2019 · PMID 31447676not yet assessed
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A collection of genetic mouse lines and related tools for inducible and reversible intersectional misexpression ↗bioRxiv (Cold Spring Harbor Laboratory) · 2019not yet assessed
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The origin of renal fibroblasts/myofibroblasts and the signals that trigger fibrosis ↗Differentiation · 2016 · PMID 27262400not yet assessed
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Smad3 deficiency protects mice from obesity-induced podocyte injury that precedes insulin resistance ↗Kidney International · 2015 · PMID 25945408not yet assessed
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The Smad3/Smad4/CDK9 complex promotes renal fibrosis in mice with unilateral ureteral obstruction ↗Kidney International · 2015 · PMID 26221756not yet assessed
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Regulation of Renal Fibrosis by Smad3 Thr388 Phosphorylation ↗American Journal Of Pathology · 2014 · PMID 24485922not yet assessed
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Glomerular Endothelial Cell Injury and Damage Precedes That of Podocytes in Adriamycin-Induced Nephropathy ↗PLoS ONE · 2013 · PMID 23359116not yet assessed
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Endothelial Dysfunction Exacerbates Renal Interstitial Fibrosis through Enhancing Fibroblast Smad3 Linker Phosphorylation in the Mouse Obstructed Kidney ↗PLoS ONE · 2013 · PMID 24391884not yet assessed
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Resolvin D1 Protects Podocytes in Adriamycin-Induced Nephropathy through Modulation of 14-3-3β Acetylation ↗PLoS ONE · 2013 · PMID 23840712not yet assessed
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Resolvins E1 and D1 inhibit interstitial fibrosis in the obstructed kidney via inhibition of local fibroblast proliferation ↗The Journal of Pathology · 2012 · PMID 22610993not yet assessed
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Blockade of Endothelial-Mesenchymal Transition by a Smad3 Inhibitor Delays the Early Development of Streptozotocin-Induced Diabetic Nephropathy ↗Diabetes · 2010 · PMID 20682692not yet assessed
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Resveratrol Inhibits Renal Fibrosis in the Obstructed Kidney ↗American Journal Of Pathology · 2010 · PMID 20651248not yet assessed
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Endothelial-Myofibroblast Transition Contributes to the Early Development of Diabetic Renal Interstitial Fibrosis in Streptozotocin-Induced Diabetic Mice ↗American Journal Of Pathology · 2009 · PMID 19729486not yet assessed
Full bibliography from OpenAlex; reproducibility verdicts matched by PMID.
Author attribution follows OpenAlex disambiguation, which is imperfect — a researcher's papers can be split across profiles or mixed with a namesake.
No ORCID on record to anchor it (≈⅓ of researchers have none), so this rests on name disambiguation alone. See every “Qu X” paper on PubMed ↗