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Philip A. Beachy

Stanford Medicine · US
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Area of research
Molecular Biology · Genetics
Research interest
Research interests include Hedgehog Signaling Pathway Studies, Developmental Biology and Gene Regulation, Epigenetics and DNA Methylation, and Genomics and Chromatin Dynamics.
h-index
94
citations
47,378
works
190
NIH funding
primary concept
Biology
email

Recent publications

A molecular cell atlas of mouse lemur, an emerging model primate
Nature 2025cited by 8position: middledoi
Mouse lemur cell atlas informs primate genes, physiology and disease
Nature 2025cited by 4position: middledoi
Neuroendocrine cells orchestrate regeneration through Desert hedgehog signaling.
2025cited by 1position: contributordoi
An organism-wide atlas of hormonal signaling based on the mouse lemur single-cell transcriptome.
2024cited by 13position: contributordoi
An organism-wide atlas of hormonal signaling based on the mouse lemur single-cell transcriptome
Nature Communications 2024cited by 10position: middledoi
Localized application of SAG21k-loaded fibrin hydrogels for targeted modulation of the hedgehog pathway in facial nerve injury.
2024cited by 3position: contributordoi
Tert-expressing cells contribute to salivary gland homeostasis and tissue regeneration after radiation therapy.
2024cited by 2position: contributordoi
Abstract A011: Bladder cancerization is linked to epithelial basalization and is reversed by EGF inhibition
Clinical Cancer Research 2024cited by 0position: lastdoi
Cellular and molecular mechanisms of Hedgehog signalling
Nature Reviews Molecular Cell Biology 2023cited by 174position: lastdoi
Cellular and molecular mechanisms of Hedgehog signalling.
2023cited by 139position: contributordoi
The Tabula Sapiens: A multiple-organ, single-cell transcriptomic atlas of humans.
2022cited by 846position: contributordoi
Molecular hallmarks of heterochronic parabiosis at single-cell resolution
Nature 2022cited by 141position: middledoi
Molecular hallmarks of heterochronic parabiosis at single-cell resolution.
2022cited by 120position: contributordoi
Cell types of origin of the cell-free transcriptome.
2022cited by 89position: contributordoi
Adversarial domain translation networks for integrating large-scale atlas-level single-cell datasets
Nature Computational Science 2022cited by 47position: middledoi
A Roadmap for the Human Oral and Craniofacial Cell Atlas
Journal of Dental Research 2022cited by 26position: middledoi
Identification of a minority population of LMO2<sup>+</sup> breast cancer cells that integrate into the vasculature and initiate metastasis.
2022cited by 10position: contributordoi
Identification of a minority population of LMO2 <sup>+</sup> breast cancer cells that integrate into the vasculature and initiate metastasis
Science Advances 2022cited by 9position: middledoi
Publisher Correction: Cell types of origin of the cell-free transcriptome.
2022cited by 2position: contributordoi
Dispatched uses Na+ flux to power release of lipid-modified Hedgehog
Nature 2021cited by 37position: lastdoi
Dispatched uses Na<sup>+</sup> flux to power release of lipid-modified Hedgehog.
2021cited by 21position: contributordoi
LMO2 is critical for early metastatic events in breast cancer
2021cited by 0position: contributordoi
A single-cell transcriptomic atlas characterizes ageing tissues in the mouse
Nature 2020cited by 1,300position: middledoi
A single-cell transcriptomic atlas characterizes ageing tissues in the mouse.
2020cited by 948position: contributordoi
Ageing hallmarks exhibit organ-specific temporal signatures
Nature 2020cited by 682position: middledoi
Ageing hallmarks exhibit organ-specific temporal signatures.
2020cited by 545position: contributordoi
Deconstructing tumor heterogeneity: the stromal perspective
Oncotarget 2020cited by 42position: middledoi
Hedgehog pathway activation through nanobody-mediated conformational blockade of the Patched sterol conduit
Proceedings of the National Academy of Sciences 2020cited by 38position: lastdoi
Deconstructing tumor heterogeneity: the stromal perspective.
2020cited by 33position: contributordoi
Hedgehog pathway activation through nanobody-mediated conformational blockade of the Patched sterol conduit.
2020cited by 31position: contributordoi

Grants

No grants ingested yet.

Frequent collaborators

Tony Wyss-Coray · Hope Center for Neurological Disorders7 papers (2020–2024)Michael F. Clarke · Stanford University6 papers (2012–2022)Navdar Sever · Harvard University6 papers (2013–2018)Stephen R. Quake · Stanford University6 papers (2012–2022)Yunxiao Zhang · Scripps Research Institute6 papers (2017–2023)Wan-Jin Lu · Stanford University5 papers (2016–2024)Benjamin R. Myers · University of Utah5 papers (2013–2019)Sean M. Wu · Academia Sinica5 papers (2020–2022) · 5 papers (2020–2022) · 5 papers (2021–2025)Timothy Wu · Stanford University4 papers (2022–2024)Xiaoyan Zheng · Soochow University4 papers (2014–2017)Kelsey J. Roberts · Stanford University4 papers (2017–2020)Agnes Lim · Singapore General Hospital3 papers (2014–2017)Elaine Y. C. Hsia · George Washington University3 papers (2014–2017)Kunyoo Shin · Seoul National University3 papers (2014–2017)James Kim · Mayo Clinic Hospital3 papers (2013–2014)Thomas A. Rando · Rapt Therapeutics (United States)3 papers (2020–2022)David A. Relman · The Stables3 papers (2022–2022)Qingyun Li · Hospital Universiti Sains Malaysia3 papers (2020–2022)
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