Turning a spermatogenic wave into a tsunami: synchronizing murine spermatogenesis using WIN 18,446.
about
Periodic retinoic acid-STRA8 signaling intersects with periodic germ-cell competencies to regulate spermatogenesisThe Role of Retinoic Acid (RA) in Spermatogonial DifferentiationComputer simulations of the mouse spermatogenic cycle.Riding the spermatogenic wave: profiling gene expression within neonatal germ and sertoli cells during a synchronized initial wave of spermatogenesis in mice.DMRT1 protects male gonadal cells from retinoid-dependent sexual transdifferentiation.Retinoic acid regulates Kit translation during spermatogonial differentiation in the mouseProcessive pulses of retinoic acid propel asynchronous and continuous murine sperm productionMarker expression reveals heterogeneity of spermatogonia in the neonatal mouse testis.Dissecting Germ Cell Metabolism through Network ModelingSpermatogenesis: The Commitment to Meiosis.CYP26 Enzymes Are Necessary Within the Postnatal Seminiferous Epithelium for Normal Murine Spermatogenesis.ALDH Enzyme Expression Is Independent of the Spermatogenic Cycle, and Their Inhibition Causes Misregulation of Murine Spermatogenic Processes.Retinoid signaling controls spermatogonial differentiation by regulating expression of replication-dependent core histone genesGerm Cell Commitment to Oogenic Versus Spermatogenic Pathway: The Role of Retinoic Acid.Characterizing the Spermatogonial Response to Retinoic Acid During the Onset of Spermatogenesis and Following Synchronization in the Neonatal Mouse Testis.Mettl3-/Mettl14-mediated mRNA N6-methyladenosine modulates murine spermatogenesis.Periodic production of retinoic acid by meiotic and somatic cells coordinates four transitions in mouse spermatogenesis.Ubiquitin Ligase Huwe1 Modulates Spermatogenesis by Regulating Spermatogonial Differentiation and Entry into Meiosis.A Seminiferous Tubule Squash Technique for the Cytological Analysis of Spermatogenesis Using the Mouse Model.Retinoic acid deficiency leads to an increase in spermatogonial stem number in the neonatal mouse testis, but excess retinoic acid results in no change.Beyond stem cells: Commitment of progenitor cells to meiosis.FGF2 Has Distinct Molecular Functions from GDNF in the Mouse Germline Niche.Single-cell RNA-seq uncovers dynamic processes and critical regulators in mouse spermatogenesis
P2860
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P2860
Turning a spermatogenic wave into a tsunami: synchronizing murine spermatogenesis using WIN 18,446.
description
2013 nî lūn-bûn
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2013年の論文
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2013年論文
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2013年論文
@zh-hant
2013年論文
@zh-hk
2013年論文
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2013年論文
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2013年论文
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name
Turning a spermatogenic wave i ...... rmatogenesis using WIN 18,446.
@ast
Turning a spermatogenic wave i ...... rmatogenesis using WIN 18,446.
@en
type
label
Turning a spermatogenic wave i ...... rmatogenesis using WIN 18,446.
@ast
Turning a spermatogenic wave i ...... rmatogenesis using WIN 18,446.
@en
prefLabel
Turning a spermatogenic wave i ...... rmatogenesis using WIN 18,446.
@ast
Turning a spermatogenic wave i ...... rmatogenesis using WIN 18,446.
@en
P2093
P2860
P1476
Turning a spermatogenic wave i ...... rmatogenesis using WIN 18,446.
@en
P2093
Cathryn A Hogarth
Christopher Small
Debra Mitchell
John K Amory
Michael D Griswold
Ryan Evanoff
Travis Kent
P2860
P356
10.1095/BIOLREPROD.112.105346
P407
P577
2013-02-14T00:00:00Z