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Arraystar inc m6a-circrna epitranscriptomic microarray
M6a Circrna Epitranscriptomic 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/m6a+circrna+epitranscriptomic+microarray/pm40528033-109-10-26
Average 90 stars, based on 1 article reviews
m6a-circrna epitranscriptomic microarray - by Bioz Stars, 2026-09
90/100 stars

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Related Articles

Microarray:

Article Title: WTAP-Mediated N6-Methyladenosine of RNAs Facilitate the Pathophysiology of Atopic Dermatitis.
Article Snippet: 1058 WTAP-Mediated N6-Methyladenosine of RNAs Facilitate the Pathophysiology of Atopic Dermatitis Lina Tan, Xue Chen, Siyu Yan, Aiyuan Guo, Lihua Gao, Lu Zhou, Yanping Zhou, Jinrong Zeng and Jianyun Lu N6-methyladenosine (mA) is the most abundant dynamic and reversible internal chemical modification of RNA in eukaryotic cells and is essential in multiple pathophysiological processes.. However, it has not been reported in atopic dermatitis (AD).. We used Arraystar mAemRNA epitranscriptomic microarray to screen for differentially expressed genes and their mA levels and mA-related enzymes in patients with AD.

Article Title: Morphine-Driven m6A Epitranscriptomic Neuroadaptations in Primary Cortical Cultures.
Article Snippet: .. Cells were transfected on div 7 and harvested after 72 h on div 10. m6A Epitranscriptomic Microarray Analysis Evaluation of m6A hyper- and hypomethylation in RNA samples from primary cortical cultures was performed by Arraystar Inc. (Rockville, MD, USA), as previously described [29]. ..

Transfection:

Article Title: Morphine-Driven m6A Epitranscriptomic Neuroadaptations in Primary Cortical Cultures.
Article Snippet: .. Cells were transfected on div 7 and harvested after 72 h on div 10. m6A Epitranscriptomic Microarray Analysis Evaluation of m6A hyper- and hypomethylation in RNA samples from primary cortical cultures was performed by Arraystar Inc. (Rockville, MD, USA), as previously described [29]. ..

other:

Article Title: The m7G Methyltransferase Mettl1 Drives Cardiac Hypertrophy by Regulating SRSF9-Mediated Splicing of NFATc4.
Article Snippet: See the T erm s and C onditions (https://onlinelibrary.w iley.com /term s-and-conditions) on W iley O nline L ibrary for rules of use; O A articles are governed by the applicable C reative C om m ons L icense Arraystar m7G-mRNA Epitranscriptomic Microarray: Total RNA from each sample was quantified using the NanoDrop ND-1000 and RNA integrity was assessed by Bioanalyzer 2100 or Mops electrophoresis.

Article Title: Circular RNA circDhx32 promotes cardiac inflammatory responses in mouse cardiac ischemia-reperfusion injury via binding to FOXO1 competed with AdipoR1.
Article Snippet: The circDhx32 and GAPDH expression levels were subsequently determined by qRT‒PCR. m6A-circRNA epitranscriptomic microarray and bioinformatic analysis Sample preparation and microarray hybridization were performed according to Arraystar’s standard protocols.

Methylation:

Article Title: M 6 A -mediated lncRNA SCIRT stability promotes NSCLC progression through binding to SFPQ and activating the PI3K/Akt pathway.
Article Snippet: .. In this research, we applied Arraystar m6A lncRNA epitranscriptomic microarrays to screen differentially m6Amethylated lncRNAs in lung cancer and adjacent tissues and then identified the priority candidate genes SCIRT. m6A methylation and SCIRT expression were upregulated in a METTL3-dependent manner in NSCLC cells. ..

Expressing:

Article Title: M 6 A -mediated lncRNA SCIRT stability promotes NSCLC progression through binding to SFPQ and activating the PI3K/Akt pathway.
Article Snippet: .. In this research, we applied Arraystar m6A lncRNA epitranscriptomic microarrays to screen differentially m6Amethylated lncRNAs in lung cancer and adjacent tissues and then identified the priority candidate genes SCIRT. m6A methylation and SCIRT expression were upregulated in a METTL3-dependent manner in NSCLC cells. ..



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Mechanisms of action of cirRNA: (A) CircRNAs have the capability to directly interact with transcription complexes, thereby influencing the expression of parental genes. (B) CircRNAs have the ability to act as miRNA sponges. (C) circRNAs can interact with <t>circRNA</t> binding proteins (cRBPs) modulate their functions. (D) CircRNAs have the ability to encode peptides and proteins.
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Comprehensive ceRNA Interaction Networks and Regulatory Axes in GBM. A <t>circRNA/lncRNA–miRNA–mRNA</t> interaction network, illustrating the competitive binding relationships between ncRNAs and mRNAs. The size and color of the nodes represent the strength of interaction and their centrality within the network, respectively. B Regulatory axis network of circRNAs, illustrating the routes of circRNA-mediated control, from circRNAs to miRNAs and on to their mRNA targets. C Regulatory axis network of lncRNAs, outlining specific pathways of regulation from lncRNAs, through miRNAs, to their mRNA targets (color figure online)
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Image Search Results


Mechanisms of action of cirRNA: (A) CircRNAs have the capability to directly interact with transcription complexes, thereby influencing the expression of parental genes. (B) CircRNAs have the ability to act as miRNA sponges. (C) circRNAs can interact with circRNA binding proteins (cRBPs) modulate their functions. (D) CircRNAs have the ability to encode peptides and proteins.

Journal: Frontiers in Cellular and Infection Microbiology

Article Title: Recent progress in tuberculosis diagnosis: insights into blood-based biomarkers and emerging technologies

doi: 10.3389/fcimb.2025.1567592

Figure Lengend Snippet: Mechanisms of action of cirRNA: (A) CircRNAs have the capability to directly interact with transcription complexes, thereby influencing the expression of parental genes. (B) CircRNAs have the ability to act as miRNA sponges. (C) circRNAs can interact with circRNA binding proteins (cRBPs) modulate their functions. (D) CircRNAs have the ability to encode peptides and proteins.

Article Snippet: circRNA , 2018 , hsa_circ_0001953; hsa_circ_0009024 , Plasma , aTB vs HC , Arraystar circRNA Microarray , qRT-PCR , UP , 72.50% , 96.00% , 0.915(p < 0.001) , Preclinical , ( ) .

Techniques: Expressing, Binding Assay

Comprehensive ceRNA Interaction Networks and Regulatory Axes in GBM. A circRNA/lncRNA–miRNA–mRNA interaction network, illustrating the competitive binding relationships between ncRNAs and mRNAs. The size and color of the nodes represent the strength of interaction and their centrality within the network, respectively. B Regulatory axis network of circRNAs, illustrating the routes of circRNA-mediated control, from circRNAs to miRNAs and on to their mRNA targets. C Regulatory axis network of lncRNAs, outlining specific pathways of regulation from lncRNAs, through miRNAs, to their mRNA targets (color figure online)

Journal: Clinical and Experimental Medicine

Article Title: Integrative analysis of glioblastoma multiforme: the power of non-coding RNAs and hub genes in cancer research

doi: 10.1007/s10238-025-01677-0

Figure Lengend Snippet: Comprehensive ceRNA Interaction Networks and Regulatory Axes in GBM. A circRNA/lncRNA–miRNA–mRNA interaction network, illustrating the competitive binding relationships between ncRNAs and mRNAs. The size and color of the nodes represent the strength of interaction and their centrality within the network, respectively. B Regulatory axis network of circRNAs, illustrating the routes of circRNA-mediated control, from circRNAs to miRNAs and on to their mRNA targets. C Regulatory axis network of lncRNAs, outlining specific pathways of regulation from lncRNAs, through miRNAs, to their mRNA targets (color figure online)

Article Snippet: GSE165926 , circRNA , GPL21825 , Arraystar Human CircRNA microarray , 12/4 , China , 2021.

Techniques: Binding Assay, Control