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Arraystar inc mouse circrna microarray
Mouse Circrna Microarray, supplied by Arraystar inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/circrna+microarray+arraystar+mouse+circrna+array+v2/mouse+lncrna+microarray+v3+0/pm32514012-183-22-22
Average 90 stars, based on 1 article reviews
mouse circrna microarray - by Bioz Stars, 2026-09
90/100 stars

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Article Title: Genetic inactivation of the Translin/Trax RNase activity alters small RNAs including miRNAs, disrupts gene expression and impairs distinct forms of hippocampal synaptic plasticity and memory
Article Snippet: The Arraystar Mouse Small RNA Array V1.0 comprises a total of 14,192 distinct probes and includes the following coverage for different small RNA species: miRNAs – 1,949 (966 5-p and 983 3-p); pre-miRNAs – 1,122; tsRNAs – 1,767; mature tRNAs – 270; snoRNAs – 1,324.

Article Title: Targeting Ischemic Myocardium: Nanoparticles Loaded with Long Noncoding RNA AK156373 siRNA Alleviate Myocardial Infarction.
Article Snippet: Despite advancements in the development of targeted approaches for the treatment of myocardial infarction (MI), there is a continuing need for improvements in treatment approaches due to the high mortality and prevalence of MI.. The identification of specific therapeutic targets and the development of efficient delivery systems are essential.. In this study, a nanoparticle delivery system targeting necrotic cardiomyocytes was engineered.

Article Title: Gut Microbiota–Mediated hsa_circ_0126925 Targets BCAA Metabolic Enzyme BCAT2 to Exacerbate Colorectal Cancer Progression
Article Snippet: Then, the labeled circRNA was hybridized onto an Arraystar Mouse circRNA Array (8 × 15 K, Arraystar) and incubated in an Agilent Hybridization Incubator (Agilent) at 65°C for 17 hours.

Article Title: Long Non-Coding RNA Osr2 Promotes Fusarium solani Keratitis Inflammation via the miR-30a-3p/ Xcr1 Axis.
Article Snippet: Subsequently, each RNA sample was amplified and transcribed into fluorescent complementary RNA (cRNA), which was then hybridized to the Arraystar Mouse LncRNA Microarray version 4.0.

Article Title: Exploring Mechanisms of Ephx2 in Treating Atherosclerosis Using Independent Cascade Model and Adverse Outcome Pathways.
Article Snippet: Background: Atherosclerosis (AS) is a leading cause of cardiovascular diseases, characterized by lipid accumulation in arterial walls.. The enzyme Ephx2 (soluble epoxide hydrolase, sEH) is implicated in AS development, but its precise mechanisms and therapeutic potential are not fully understood.. Objectives: This study aimed to analyze gene expression data from low-density lipoprotein receptor knockout (LDLR88) and LDLR88sEH88 mice to identify significant genes associated with

Labeling:

Article Title: Circular RNA APP contributes to Alzheimer's disease pathogenesis by modulating microglial polarization via miR-1906/CLIC1 axis.
Article Snippet: Then, the enriched circRNAs were amplified and transcribed into fluorescent cRNA using a random priming method (Arraystar Super RNA Labeling Kit; Arraystar). .. The labeled cRNAs were hybridized onto the Arraystar Mouse circRNA Microarray V2. .. After the slides were washed, the arrays were scanned by the Agilent Scanner G2505C.

Article Title: Characterization of circRNA expression profiles and functional roles in a mouse model of liver injury induced by OSA.
Article Snippet: .. Arraystar Mouse circRNA Array V2 was hybridized with the labeled cRNAs, which were subsequently incubated at 65 °C for 17 h. Following the washing of the slides, we scanned the array using the Agilent Scanner G2505C. .. The resulting array images were analyzed using Agilent Feature Extraction Software.

Microarray:

Article Title: Circular RNA APP contributes to Alzheimer's disease pathogenesis by modulating microglial polarization via miR-1906/CLIC1 axis.
Article Snippet: Then, the enriched circRNAs were amplified and transcribed into fluorescent cRNA using a random priming method (Arraystar Super RNA Labeling Kit; Arraystar). .. The labeled cRNAs were hybridized onto the Arraystar Mouse circRNA Microarray V2. .. After the slides were washed, the arrays were scanned by the Agilent Scanner G2505C.

Incubation:

Article Title: Characterization of circRNA expression profiles and functional roles in a mouse model of liver injury induced by OSA.
Article Snippet: .. Arraystar Mouse circRNA Array V2 was hybridized with the labeled cRNAs, which were subsequently incubated at 65 °C for 17 h. Following the washing of the slides, we scanned the array using the Agilent Scanner G2505C. .. The resulting array images were analyzed using Agilent Feature Extraction Software.



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Arraystar inc circrna expression microarray slide arraystar mouse circrna array v2 (8 × 15k)
Characterization of the expression profile of circular RNAs in blood samples of MCAO-treated mice. (A) Normalized intensities of all circular RNAs expressed in the blood in sham and 5 min, 3-h, and 24-h MCAO-treated mice; n = 3 per group. (B) The scatter plots show the differentially expressed circRNAs in the 5-min, 3-h, and 24-h MCAO groups compared with sham. circRNAs in the scatter plot above and below the diagonal line indicate upregulation and downregulation, respectively. (C) Volcano plots show <t>circRNA</t> expression profiles in the 5-min, 3-h, and 24-h MCAO groups compared with sham control. Red dots represent differentially expressed circRNAs ( p < 0.05 and fold-change ≥ 2.0). (D) Distribution of different types of differentially expressed circRNAs, including those consisting of exon, intron, intergenic region, sense, and antisense sequences. (E) Venn diagram shows the overlapping differentially expressed circRNA probes among the three groups compared with sham control. The total numbers of probes exhibiting differential expression in 5 min, 3 h, and 24 h are 1051, 782, and 2721, respectively.
Circrna Expression Microarray Slide Arraystar Mouse Circrna Array V2 (8 × 15k), supplied by Arraystar inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/circrna+microarray+arraystar+mouse+circrna+array+v2/circrna+microarray+arraystar+human+circrna+array+v2/pmc07015875-65-15-19
Average 90 stars, based on 1 article reviews
circrna expression microarray slide arraystar mouse circrna array v2 (8 × 15k) - by Bioz Stars, 2026-09
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Arraystar inc circrna microarray arraystar mouse circrna array v2
The primers used in qRT-PCR experiments.
Circrna Microarray Arraystar Mouse Circrna Array V2, supplied by Arraystar inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/circrna+microarray+arraystar+mouse+circrna+array+v2/circrna+microarray+arraystar+human+circrna+array+v2/pmc06697070-120-1-6
Average 90 stars, based on 1 article reviews
circrna microarray arraystar mouse circrna array v2 - by Bioz Stars, 2026-09
90/100 stars
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Characterization of the expression profile of circular RNAs in blood samples of MCAO-treated mice. (A) Normalized intensities of all circular RNAs expressed in the blood in sham and 5 min, 3-h, and 24-h MCAO-treated mice; n = 3 per group. (B) The scatter plots show the differentially expressed circRNAs in the 5-min, 3-h, and 24-h MCAO groups compared with sham. circRNAs in the scatter plot above and below the diagonal line indicate upregulation and downregulation, respectively. (C) Volcano plots show circRNA expression profiles in the 5-min, 3-h, and 24-h MCAO groups compared with sham control. Red dots represent differentially expressed circRNAs ( p < 0.05 and fold-change ≥ 2.0). (D) Distribution of different types of differentially expressed circRNAs, including those consisting of exon, intron, intergenic region, sense, and antisense sequences. (E) Venn diagram shows the overlapping differentially expressed circRNA probes among the three groups compared with sham control. The total numbers of probes exhibiting differential expression in 5 min, 3 h, and 24 h are 1051, 782, and 2721, respectively.

Journal: Frontiers in Neuroscience

Article Title: Identification of Blood Circular RNAs as Potential Biomarkers for Acute Ischemic Stroke

doi: 10.3389/fnins.2020.00081

Figure Lengend Snippet: Characterization of the expression profile of circular RNAs in blood samples of MCAO-treated mice. (A) Normalized intensities of all circular RNAs expressed in the blood in sham and 5 min, 3-h, and 24-h MCAO-treated mice; n = 3 per group. (B) The scatter plots show the differentially expressed circRNAs in the 5-min, 3-h, and 24-h MCAO groups compared with sham. circRNAs in the scatter plot above and below the diagonal line indicate upregulation and downregulation, respectively. (C) Volcano plots show circRNA expression profiles in the 5-min, 3-h, and 24-h MCAO groups compared with sham control. Red dots represent differentially expressed circRNAs ( p < 0.05 and fold-change ≥ 2.0). (D) Distribution of different types of differentially expressed circRNAs, including those consisting of exon, intron, intergenic region, sense, and antisense sequences. (E) Venn diagram shows the overlapping differentially expressed circRNA probes among the three groups compared with sham control. The total numbers of probes exhibiting differential expression in 5 min, 3 h, and 24 h are 1051, 782, and 2721, respectively.

Article Snippet: Fifty microliters of hybridization solution was dispensed into the gasket slide and assembled on the circRNA expression microarray slide [Arraystar Mouse circRNA Array v2 (8 × 15K, Arraystar)].

Techniques: Expressing, Control, Quantitative Proteomics

RT-qPCR verification of the microarray data from mouse blood. Representative circRNAs with significant differential expression at 5 min (upper panel), 3 h (middle panel), and 24 h of MCAO (lower panel) were verified by RT-qPCR. Left and right panels show the circRNAs with upregulation and downregulation, respectively. Values are mean ± SEM ( n = 3 per group). ∗ p < 0.05, ∗∗ p < 0.05, and ∗∗∗ p < 0.001 compared with sham (independent samples t -test, single-tailed).

Journal: Frontiers in Neuroscience

Article Title: Identification of Blood Circular RNAs as Potential Biomarkers for Acute Ischemic Stroke

doi: 10.3389/fnins.2020.00081

Figure Lengend Snippet: RT-qPCR verification of the microarray data from mouse blood. Representative circRNAs with significant differential expression at 5 min (upper panel), 3 h (middle panel), and 24 h of MCAO (lower panel) were verified by RT-qPCR. Left and right panels show the circRNAs with upregulation and downregulation, respectively. Values are mean ± SEM ( n = 3 per group). ∗ p < 0.05, ∗∗ p < 0.05, and ∗∗∗ p < 0.001 compared with sham (independent samples t -test, single-tailed).

Article Snippet: Fifty microliters of hybridization solution was dispensed into the gasket slide and assembled on the circRNA expression microarray slide [Arraystar Mouse circRNA Array v2 (8 × 15K, Arraystar)].

Techniques: Quantitative RT-PCR, Microarray, Quantitative Proteomics

circRNA-miRNA interaction. Diagrams show the predicted miRNAs (square boxes) that bind to the verified differentially expressed circRNAs (round circles) at the 5-min (A) , 3-h (B) , and 24-h (C) time points of MCAO in mice. Blue lines represent upregulation; red lines represent downregulation.

Journal: Frontiers in Neuroscience

Article Title: Identification of Blood Circular RNAs as Potential Biomarkers for Acute Ischemic Stroke

doi: 10.3389/fnins.2020.00081

Figure Lengend Snippet: circRNA-miRNA interaction. Diagrams show the predicted miRNAs (square boxes) that bind to the verified differentially expressed circRNAs (round circles) at the 5-min (A) , 3-h (B) , and 24-h (C) time points of MCAO in mice. Blue lines represent upregulation; red lines represent downregulation.

Article Snippet: Fifty microliters of hybridization solution was dispensed into the gasket slide and assembled on the circRNA expression microarray slide [Arraystar Mouse circRNA Array v2 (8 × 15K, Arraystar)].

Techniques:

Gene ontology analysis. Gene ontology classifications of the circRNA-miRNA target genes at the (A) 5-min, (B) 3-h, and (C) 24-h time points of MCAO. Color key represents log( p -value).

Journal: Frontiers in Neuroscience

Article Title: Identification of Blood Circular RNAs as Potential Biomarkers for Acute Ischemic Stroke

doi: 10.3389/fnins.2020.00081

Figure Lengend Snippet: Gene ontology analysis. Gene ontology classifications of the circRNA-miRNA target genes at the (A) 5-min, (B) 3-h, and (C) 24-h time points of MCAO. Color key represents log( p -value).

Article Snippet: Fifty microliters of hybridization solution was dispensed into the gasket slide and assembled on the circRNA expression microarray slide [Arraystar Mouse circRNA Array v2 (8 × 15K, Arraystar)].

Techniques:

KEGG pathway analysis of circRNA-miRNA target genes. (A) KEGG pathway analysis of the circRNA-miRNA target genes at the (A) 5-min, (B) 3-h and (C) 24-h time points of MCAO. Color key represents log( p value).

Journal: Frontiers in Neuroscience

Article Title: Identification of Blood Circular RNAs as Potential Biomarkers for Acute Ischemic Stroke

doi: 10.3389/fnins.2020.00081

Figure Lengend Snippet: KEGG pathway analysis of circRNA-miRNA target genes. (A) KEGG pathway analysis of the circRNA-miRNA target genes at the (A) 5-min, (B) 3-h and (C) 24-h time points of MCAO. Color key represents log( p value).

Article Snippet: Fifty microliters of hybridization solution was dispensed into the gasket slide and assembled on the circRNA expression microarray slide [Arraystar Mouse circRNA Array v2 (8 × 15K, Arraystar)].

Techniques:

The primers used in qRT-PCR experiments.

Journal: Frontiers in Molecular Neuroscience

Article Title: Differential Expression Profiles and Functional Prediction of Circular RNAs and Long Non-coding RNAs in the Hippocampus of Nrf2-Knockout Mice

doi: 10.3389/fnmol.2019.00196

Figure Lengend Snippet: The primers used in qRT-PCR experiments.

Article Snippet: The circRNA microarray was analyzed using Arraystar Mouse circRNA Array V2 analysis (Arraystar, Inc., United States) by Kangchen BioTech, Inc. (Shanghai, China).

Techniques:

Top 10 up- and down-regulated DEcircRNAs in the hippocampus of Nrf2 (−/−) mice.

Journal: Frontiers in Molecular Neuroscience

Article Title: Differential Expression Profiles and Functional Prediction of Circular RNAs and Long Non-coding RNAs in the Hippocampus of Nrf2-Knockout Mice

doi: 10.3389/fnmol.2019.00196

Figure Lengend Snippet: Top 10 up- and down-regulated DEcircRNAs in the hippocampus of Nrf2 (−/−) mice.

Article Snippet: The circRNA microarray was analyzed using Arraystar Mouse circRNA Array V2 analysis (Arraystar, Inc., United States) by Kangchen BioTech, Inc. (Shanghai, China).

Techniques:

QRT-PCR validation of the expression levels of candidate circRNAs (A) and lncRNAs (B) . * p < 0.05 and ∗∗ p < 0.01. The deep red column indicates the expression status of lncRNAs through microarray analyses; the blue column indicates the expression status of lncRNAs through qRT-PCR experiments. n = 3.

Journal: Frontiers in Molecular Neuroscience

Article Title: Differential Expression Profiles and Functional Prediction of Circular RNAs and Long Non-coding RNAs in the Hippocampus of Nrf2-Knockout Mice

doi: 10.3389/fnmol.2019.00196

Figure Lengend Snippet: QRT-PCR validation of the expression levels of candidate circRNAs (A) and lncRNAs (B) . * p < 0.05 and ∗∗ p < 0.01. The deep red column indicates the expression status of lncRNAs through microarray analyses; the blue column indicates the expression status of lncRNAs through qRT-PCR experiments. n = 3.

Article Snippet: The circRNA microarray was analyzed using Arraystar Mouse circRNA Array V2 analysis (Arraystar, Inc., United States) by Kangchen BioTech, Inc. (Shanghai, China).

Techniques: Quantitative RT-PCR, Biomarker Discovery, Expressing, Microarray

DEcircRNA-miRNA-DEceRNA interaction subnetworks of up-regulated circRNAs and down-regulated circRNAs in the Nrf2 (–/–) hippocampus. (A) Subnetwork of mmu_circRNA_44531 in the Nrf2 (–/–) hippocampus. (B) Subnetwork of mmu_circRNA_34132 in the Nrf2 (–/–) hippocampus. (C) Subnetwork of mmu_circRNA_000903 in the Nrf2 (–/–) hippocampus. (D) Subnetwork of mmu_circRNA_018676 in the Nrf2 (–/–) hippocampus. (E) Subnetwork of mmu_circRNA_45901 in the Nrf2 (–/–) hippocampus. (F) Subnetwork of mmu_circRNA_33836 in the Nrf2 (–/–) hippocampus. (G) Subnetwork of mmu_circRNA_34137 in the Nrf2 (–/–) hippocampus. (H) Subnetwork of mmu_circRNA_34106 in the Nrf2 (–/–) hippocampus. (I) Subnetwork of mmu_circRNA_008691 in the Nrf2 (–/–) hippocampus. (J) Subnetwork of mmu_circRNA_003237 in the Nrf2 (–/–) hippocampus. Yellow nodes indicate DEcircRNAs. Magenta and green nodes indicate miRNAs sponged by DEcircRNAs and the gene ID of their DEceRNAs, respectively. Edges represent interactions.

Journal: Frontiers in Molecular Neuroscience

Article Title: Differential Expression Profiles and Functional Prediction of Circular RNAs and Long Non-coding RNAs in the Hippocampus of Nrf2-Knockout Mice

doi: 10.3389/fnmol.2019.00196

Figure Lengend Snippet: DEcircRNA-miRNA-DEceRNA interaction subnetworks of up-regulated circRNAs and down-regulated circRNAs in the Nrf2 (–/–) hippocampus. (A) Subnetwork of mmu_circRNA_44531 in the Nrf2 (–/–) hippocampus. (B) Subnetwork of mmu_circRNA_34132 in the Nrf2 (–/–) hippocampus. (C) Subnetwork of mmu_circRNA_000903 in the Nrf2 (–/–) hippocampus. (D) Subnetwork of mmu_circRNA_018676 in the Nrf2 (–/–) hippocampus. (E) Subnetwork of mmu_circRNA_45901 in the Nrf2 (–/–) hippocampus. (F) Subnetwork of mmu_circRNA_33836 in the Nrf2 (–/–) hippocampus. (G) Subnetwork of mmu_circRNA_34137 in the Nrf2 (–/–) hippocampus. (H) Subnetwork of mmu_circRNA_34106 in the Nrf2 (–/–) hippocampus. (I) Subnetwork of mmu_circRNA_008691 in the Nrf2 (–/–) hippocampus. (J) Subnetwork of mmu_circRNA_003237 in the Nrf2 (–/–) hippocampus. Yellow nodes indicate DEcircRNAs. Magenta and green nodes indicate miRNAs sponged by DEcircRNAs and the gene ID of their DEceRNAs, respectively. Edges represent interactions.

Article Snippet: The circRNA microarray was analyzed using Arraystar Mouse circRNA Array V2 analysis (Arraystar, Inc., United States) by Kangchen BioTech, Inc. (Shanghai, China).

Techniques: