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Jeffrey L. Goldberg

Smith-Kettlewell Eye Research Institute ·
🔎 Find collaborators in Ophthalmology · Molecular Biology →
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Area of research
Ophthalmology · Molecular Biology
Research interest
Research interests include Retinal Development and Disorders, Glaucoma and retinal disorders, Nerve injury and regeneration, and Neurogenesis and neuroplasticity mechanisms.
h-index
54
citations
11,764
works
342
NIH funding
primary concept
email

Recent publications

Optineurin-facilitated axonal mitochondria delivery promotes neuroprotection and axon regeneration
Nature Communications 2025cited by 19position: middledoi
Ophthalmic drug discovery and development using artificial intelligence and digital health technologies
npj Digital Medicine 2025cited by 5position: middledoi
Modeling neurodegeneration in the retina and strategies for developing pan-neurodegenerative therapies
Molecular Neurodegeneration 2025cited by 3position: middledoi
Using Electronic Health Record Data to Determine the Safety of Aqueous Humor Liquid Biopsies for Molecular Analyses
Ophthalmology Science 2024cited by 10position: middledoi
Development of a novel SupraChoroidal-to-Optic-NervE (SCONE) drug delivery system
Drug Delivery 2024cited by 4position: lastdoi
A molecular switch for neuroprotective astrocyte reactivity
Nature 2023cited by 109position: lastdoi
The Cousa objective: a long-working distance air objective for multiphoton imaging in vivo
Nature Methods 2023cited by 49position: middledoi
Phase I NT-501 Ciliary Neurotrophic Factor Implant Trial for Primary Open-Angle Glaucoma
Ophthalmology Science 2023cited by 35position: firstdoi
The Retinal Ganglion Cell Repopulation, Stem Cell Transplantation, and Optic Nerve Regeneration Consortium
Ophthalmology Science 2023cited by 6position: middledoi
Using electronic health record data to determine the safety of aqueous humor liquid biopsies for molecular analyses
medRxiv 2023cited by 1position: middledoi
Solving neurodegeneration: common mechanisms and strategies for new treatments
Molecular Neurodegeneration 2022cited by 297position: middledoi
Transcription factor network analysis identifies REST/NRSF as an intrinsic regulator of CNS regeneration in mice
Nature Communications 2022cited by 66position: middledoi
Artificial Intelligence for Glaucoma
Ophthalmology Glaucoma 2022cited by 23position: middledoi
NF1 mutation drives neuronal activity-dependent initiation of optic glioma
Nature 2021cited by 248position: middledoi
Deciphering the genetic architecture and ethnographic distribution of IRD in three ethnic populations by whole genome sequence analysis
PLoS Genetics 2021cited by 31position: middledoi
A Case for the Use of Artificial Intelligence in Glaucoma Assessment
Ophthalmology Glaucoma 2021cited by 27position: middledoi
Mouse γ-Synuclein Promoter-Mediated Gene Expression and Editing in Mammalian Retinal Ganglion Cells
Journal of Neuroscience 2020cited by 76position: middledoi
Multi-Omic Analyses of Growth Cones at Different Developmental Stages Provides Insight into Pathways in Adult Neuroregeneration
iScience 2020cited by 33position: middledoi
Regulation of Neuronal Survival and Axon Growth by a Perinuclear cAMP Compartment
Journal of Neuroscience 2019cited by 63position: middledoi
Cholinergic neural activity directs retinal layer-specific angiogenesis and blood retinal barrier formation
Nature Communications 2019cited by 48position: lastdoi
SALT Trial: Steroids after Laser Trabeculoplasty
Ophthalmology 2019cited by 41position: lastdoi
Opposing Effects of Growth and Differentiation Factors in Cell-Fate Specification
Current Biology 2019cited by 29position: lastdoi
MTP18 is a Novel Regulator of Mitochondrial Fission in CNS Neuron Development, Axonal Growth, and Injury Responses
Scientific Reports 2019cited by 25position: lastdoi
Regenerating Eye Tissues to Preserve and Restore Vision
Cell stem cell 2018cited by 189position: middledoi
The Krüppel-Like Factor Gene Target Dusp14 Regulates Axon Growth and Regeneration
Investigative Ophthalmology & Visual Science 2018cited by 54position: lastdoi
A Cell Culture Approach to Optimized Human Corneal Endothelial Cell Function
Investigative Ophthalmology & Visual Science 2018cited by 49position: lastdoi
Induced Pluripotent Stem Cells Promote Retinal Ganglion Cell Survival After Transplant
Investigative Ophthalmology & Visual Science 2018cited by 42position: lastdoi
Nuclear Cyclic-AMP Signaling in Developing Astrocytes
Investigative Ophthalmology & Visual Science 2018cited by 0position: last
Synthesis and axonal transport of retinal ganglion cell proteins following optic nerve injury.
Investigative Ophthalmology & Visual Science 2018cited by 0position: last
Vision Loss after Intravitreal Injection of Autologous “Stem Cells” for AMD
New England Journal of Medicine 2017cited by 458position: lastdoi

Grants

Research Initiation: Designing Standard Modules
NSF8810296$59,1501988–1991PIRePORTER

Frequent collaborators

Ephraim F. Trakhtenberg · University of Connecticut8 papers (2012–2016)Joana Galvão · Stanford University7 papers (2016–2023)Kun‐Che Chang · Palo Alto University7 papers (2017–2023)Michael Nahmou · Palo Alto University7 papers (2018–2023)Sahil Shah · Stanford University6 papers (2018–2025)Jonathan Hertz · University of Miami6 papers (2013–2019)Noelia J. Kunzevitzky · University of California San Diego6 papers (2015–2019)Xin Xia · Anhui Medical University5 papers (2015–2023)Evan G. Cameron · Palo Alto University5 papers (2015–2023)Larry I. Benowitz · Boston Medical Center4 papers (2020–2025)Alexander Kreymerman · University of Miami4 papers (2012–2020)Michael S. Kapiloff · Palo Alto University4 papers (2015–2023)Masoumeh Ashouri · Stanford University4 papers (2017–2023)Daniel A. Valenzuela · Vanderbilt University Medical Center4 papers (2013–2017)Praseeda Venugopalan · University of Miami4 papers (2013–2017) · 3 papers (2014–2016)Karan Patel · Virginia Tech3 papers (2014–2016)Roopa Dalal · Palo Alto University3 papers (2020–2024)Kenneth J. Muller · University of Miami3 papers (2013–2017)Vinit B. Mahajan · Palo Alto University3 papers (2023–2025)
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