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Juan Carlos Izpisúa Belmonte

Alto Neuroscience (United States) · IT
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Area of research
Molecular Biology
Research interest
Research interests include Pluripotent Stem Cells Research, CRISPR and Genetic Engineering, Developmental Biology and Gene Regulation, and Congenital heart defects research.
h-index
126
citations
54,428
works
611
NIH funding
primary concept
Biology
email

Recent publications

Vitamin C inhibits ACSL4 to alleviate ferro-aging in primates
Cell Metabolism 2026cited by 4position: contributordoi
Convergence of aging- and rejuvenation-related epigenetic alterations on PRC2 targets.
2026cited by 0position: contributordoi
Stable bioreactor control reveals acidic pH-driven metabolic reprogramming and mitochondrial dysfunction in human lymphoblastoid cells.
2026cited by 0position: contributordoi
A single small molecule-based human embryo model reveals V-ATPase requirement in mammalian blastocyst cavitation.
2026cited by 0position: contributordoi
Anti-aging strategies and ex vivo organ rejuvenation
Cell Stem Cell 2026cited by 0position: contributordoi
Senescence-resistant human mesenchymal progenitor cells counter aging in primates
Cell 2025cited by 44position: middledoi
Single-cell profiling identifies hair cell SLC35F1 deficiency as a signature of primate cochlear aging
Nature Aging 2025cited by 13position: middledoi
Prevalent mesenchymal drift in aging and disease is reversed by partial reprogramming.
2025cited by 12position: contributordoi
Reactivation of retrotransposable elements is associated with environmental stress and ageing.
2025cited by 11position: contributordoi
Human iPSC-derived nephron progenitor cells treat acute kidney injury and chronic kidney disease in mouse models.
2025cited by 1position: contributordoi
Escaping ageing through Cell Annealing-a phenomenological model.
2025cited by 0position: contributordoi
Kidney organoid models reveal cilium-autophagy metabolic axis as a therapeutic target for PKD both in vitro and in vivo
Cell stem cell 2024cited by 34position: middledoi
Targeted partial reprogramming of age-associated cell states improves markers of health in mouse models of aging.
2024cited by 32position: contributordoi
Complex regulatory networks influence pluripotent cell state transitions in human iPSCs
Nature Communications 2024cited by 26position: middledoi
Intervention with metabolites emulating endogenous cell transitions accelerates muscle regeneration in young and aged mice
Cell Reports Medicine 2024cited by 11position: contributordoi
Therapeutic strategy for spinal muscular atrophy by combining gene supplementation and genome editing.
2024cited by 10position: contributordoi
In vivo rescue of genetic dilated cardiomyopathy by systemic delivery of nexilin.
2024cited by 4position: contributordoi
Universal DNA methylation age across mammalian tissues
Nature Aging 2023cited by 371position: middledoi
Resurrection of endogenous retroviruses during aging reinforces senescence
Cell 2023cited by 349position: middledoi
Transgenerational inheritance of acquired epigenetic signatures at CpG islands in mice
Cell 2023cited by 175position: contributordoi
DNA methylation networks underlying mammalian traits
Science 2023cited by 128position: middledoi
m<sup>6</sup>A epitranscriptomic regulation of tissue homeostasis during primate aging.
2023cited by 63position: contributordoi
Genome-wide CRISPR activation screening in senescent cells reveals SOX5 as a driver and therapeutic target of rejuvenation
Cell stem cell 2023cited by 60position: middledoi
Single-cell individual full-length mtDNA sequencing by iMiGseq uncovers unexpected heteroplasmy shifts in mtDNA editing.
2023cited by 21position: contributordoi
eQTL mapping in fetal-like pancreatic progenitor cells reveals early developmental insights into diabetes risk
Nature Communications 2023cited by 19position: middledoi
Quantitative haplotype-resolved analysis of mitochondrial DNA heteroplasmy in Human single oocytes, blastoids, and pluripotent stem cells.
2023cited by 18position: contributordoi
Hepatocyte reprogramming in liver regeneration: Biological mechanisms and applications.
2023cited by 14position: contributordoi
The circadian clock CRY1 regulates pluripotent stem cell identity and somatic cell reprogramming
Cell Reports 2023cited by 14position: contributordoi
Author Correction: Universal DNA methylation age across mammalian tissues
Nature Aging 2023cited by 5position: middledoi
Chemical fast track to induced pluripotency.
2023cited by 1position: contributordoi

Grants

No grants ingested yet.

Frequent collaborators

· 48 papers (2019–2026)Jing Qu · Salk Institute for Biological Studies20 papers (2012–2025)Weiqi Zhang · Beijing Institute of Genomics19 papers (2012–2026)Guang‐Hui Liu · Changchun University of Science and Technology14 papers (2012–2025)Concepción Rodrı́guez Esteban · Salk Institute for Biological Studies13 papers (2012–2023)Si Wang · Beijing Obstetrics and Gynecology Hospital11 papers (2019–2025)Guang-Hui Liu · Yunnan Environmental Protection Bureau10 papers (2020–2026)Pradeep Reddy · International Crops Research Institute for the Semi-Arid Tropics10 papers (2019–2026) · 8 papers (2020–2023)Mo Li · Chinese Institute for Brain Research8 papers (2021–2026)Josep M. Campistol · Hospital Clínic de Barcelona8 papers (2015–2020)Zunpeng Liu · Broad Institute7 papers (2019–2023)Pradeep Reddy · Salk Institute for Biological Studies7 papers (2015–2023)Jun Wu · Southwestern Medical Center7 papers (2015–2019) · 6 papers (2020–2026)Moshi Song · Institute for Stem Cell Biology and Regenerative Medicine6 papers (2019–2020)Ignacio Sancho-Martinez · Salk Institute for Biological Studies6 papers (2012–2019)Keiichiro Suzuki · Salk Institute for Biological Studies5 papers (2012–2019)Mo Li · Guangzhou University of Chinese Medicine5 papers (2012–2016)Jingyi Li · National Patient Safety Foundation5 papers (2015–2023)
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