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Regenerating zebrafish fin fold vs. uncut control
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2010-05-19
相关数据集
Table_3_Glucocorticoid Treatment Leads to Aberrant Ion and Macromolecular Transport in Regenerating Zebrafish Fins.XLSX
Long-term glucocorticoid administration in patients undergoing immunosuppressive and anti-inflammatory treatment is accompanied by impaired bone formation and increased fracture risk. Furthermore, glu
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Organism-wide contributions to systemic skeletal muscle repair in larval zebrafish.
We developed a systemic muscle injury model in zebrafish. Single cell transcriptomic analysis of muscle and non-muscle tissues revealed that systemic and local muscle injuries elicit distinct cellular
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Ârunx1 controls zebrafish heart regeneration by promoting scar deposition as well as inhibiting myocardial proliferation and survival
Runx1 is a transcription factor that plays a key role in determining the proliferative and differential state of multiple cell types, during both development and adulthood. Here, we report how runx1 i
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Single-cell RNA sequencing of the cut and uncut caudal fin of zebrafish larvae. Single-cell RNA sequencing of the cut and uncut caudal fin of zebrafish larvae
Purpose: The goal of this study was to establish the first detailed cell atlas of the regenerating caudal fin of zebrafish larvae. Intact and regenerating caudal fin were used for single-cell RNA-sequ
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Morphine alleviates pain after heart cryonjury in zebrafish without impeding regeneration. Morphine alleviates pain after heart cryonjury in zebrafish without impeding regeneration
Nociceptive response belongs to a basic animal behavior facilitating adaptability and survival upon external or internal stimuli. Fish, similarly to higher vertebrates, also possess nociceptive machin
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