Up Regulation

Upregulation is a biological process in which a cell increases the expression or activity of a gene, protein, receptor, or signaling pathway, helping it adapt to changing conditions. It commonly occurs when regulatory signals enhance gene transcription, increase messenger RNA production, or promote translation and protein stability, although the precise mechanism depends on the cellular context. In biology and biomedical research, upregulation helps explain how cells respond to hormones, stress, infection, or environmental cues. Measuring these changes can reveal disease mechanisms, identify molecular biomarkers, and clarify how tissues adapt or develop resistance to drugs and other treatments.

Up Regulation - Related Videos

Research

JoVE Journal - Biology

Bioluminescence Imaging of Heme Oxygenase-1 Upregulation in the Gua Sha Procedure

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Cited by 40 •

2009

Gua Sha, traditional Chinese therapeutic skin scraping, causes subcutaneous microvascular blood extravasation. We report a protocol of bioluminescence imaging of HO-1-luciferase transgenic mice to demonstrate that Gua Sha upregulates heme oxygenase-1 (HO-1) in multiple organs.

Assessing Glucose Uptake in the Motor Neurons of Drosophila Larvae with Upregulated Glucose Metabolism

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2025

The video demonstrates a technique for measuring glucose uptake in Drosophila larval motor neurons using a fluorescence resonance energy transfer (FRET)-based intracellular glucose sensor. After dissecting the larvae to expose the ventral nerve cord, the motor neurons are visualized through the fluorescence emitted by the sensor's donor fluorophore. When stimulated with glucose, FRET between the sensor's donor and acceptor fluorophores triggers the emission of fluorescence from the acceptor,...

Research

JoVE Journal - Neuroscience
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Stab Wound Injury of the Zebrafish Adult Telencephalon: A Method to Investigate Vertebrate Brain Neurogenesis and Regeneration

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Cited by 60 •

2014

To shed light on the cellular and molecular mechanisms of zebrafish adult neurogenesis and regeneration, we developed a protocol for invasive surgery causing mechanical injuries in the zebrafish adult telencephalon and subsequent monitoring of changes in the stabbed hemisphere by immunohistochemistry or in situ hybridization.

Sample Preparation and Analysis of RNASeq-based Gene Expression Data from Zebrafish

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Cited by 4 •

2017

This protocol presents an approach for whole transcriptome analysis from zebrafish embryos, larvae, or sorted cells. We include isolation of RNA, pathway analysis of RNASeq data, and qRT-PCR-based validation of gene expression changes.

Endothelial Cell Co-culture Mediates Maturation of Human Embryonic Stem Cell to Pancreatic Insulin Producing Cells in a Directed Differentiation Approach

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Cited by 25 •

2012

The current study describes a directed differentiation approach in inducing pancreatic differentiation of human embryonic stem cells. Of great significance is the finding that endothelial cell co-culture mediates maturation of human embryonic stem cell derived pancreatic progenitors into insulin expressing cells.

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