miRNA Regulation Analysis

miRNA expression.
Pinpointing miRNA profiles and roles in Alzheimer's disease
Overwhelming evidence indicates that dysregulation of miRNA expression is a cause or indicator of several disease processes. The discovery that circulating miRNAs are detectable in serum and plasma, and that their expression varies as a result of disease, presents great potential for circulating miRNA expression signatures to be used as biomarkers in disease diagnosis and prevention. Ready and minimally invasive access to blood samples, as well as miRNA stability and ease of detection, make circulating miRNAs attractive for detailed investigation. 
Success of miRNA research relies on access to high-performance tools and technologies. QIAGEN is the one-stop provider for all your miRNA purification, quantification, and functional characterization needs.
For low- to medium-throughput sample disruption for molecular analysis
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For fixation and stabilization of human tissue specimens (max. 4 x 15 x 15 mm in size)
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For immediate stabilization of RNA in tissues
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For immediate stabilization of DNA, RNA, and protein in tissues
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For purification of miRNA and total RNA from small amounts of cells and tissues
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For simultaneous purification of genomic DNA and total RNA, including miRNA, from cells and difficult-to-lyse tissue
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For purification of microRNA and total RNA from formalin-fixed, paraffin-embedded tissue sections
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For purification of microRNA and total RNA from tissues fixed and stabilized in PAXgene Tissue Containers
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For purification of microRNA and total RNA from tissues and cells
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For fully automated sample prep using QIAGEN spin-column kits
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For purification of cell-free total RNA, including miRNA, from animal and human plasma and serum
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For purification of miRNA and total RNA from whole blood
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For SYBR® Green-based, real-time PCR profiling of miRNAs using the miScript PCR System
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For normalization of real-time PCR results in miRNA quantification in human, mouse, rat, and dog
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For reverse transcription of total RNA containing miRNA using the miScript PCR System
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For preamplification of cDNA from samples containing low RNA amounts prior to real-time PCR analysis of miRNA
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For quantification of precursor miRNA using the miScript PCR System
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For studies on miRNA function and gene regulation using synthetic miRNA
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For transfection of eukaryotic cells with siRNA and miRNA
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For studies on miRNA function and gene regulation using miRNA inhibition
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For miRNA functional studies performed by interfering with miRNA-target interaction
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For modeling, analyzing, and understanding complex 'omics data
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