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CapitalBio Corporation smartarray tm microarray system
Control and normalization sequences for the microRNA <t> microarray. </t>
Smartarray Tm Microarray System, supplied by CapitalBio Corporation, 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/smartarrays+tm/pmc06176462-230-12-16?v=CapitalBio+Corporation
Average 90 stars, based on 1 article reviews
smartarray tm microarray system - by Bioz Stars, 2026-07
90/100 stars

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1) Product Images from "Differential expression profiles of microRNAs in highly and weakly invasive/metastatic pancreatic cancer cells"

Article Title: Differential expression profiles of microRNAs in highly and weakly invasive/metastatic pancreatic cancer cells

Journal: Oncology Letters

doi: 10.3892/ol.2018.9352

Control and normalization sequences for the microRNA  microarray.
Figure Legend Snippet: Control and normalization sequences for the microRNA microarray.

Techniques Used: Control, Microarray, Sequencing

miRNA chip overlay images. (A) Original image of two-channel miRNA microarray; PC-1.0 was labeled with red fluorescent Cy5 dye and PC-1 was labeled with green fluorescent Cy3 dye. (B) Original image of two-channel miRNA microarray; PC-1.0 was labeled with green fluorescent Cy5 dye and PC-1 was labeled with red fluorescent Cy3 dye. (C) Scatter plot of PC-1.0 and PC-1 data. miRNA, microRNA.
Figure Legend Snippet: miRNA chip overlay images. (A) Original image of two-channel miRNA microarray; PC-1.0 was labeled with red fluorescent Cy5 dye and PC-1 was labeled with green fluorescent Cy3 dye. (B) Original image of two-channel miRNA microarray; PC-1.0 was labeled with green fluorescent Cy5 dye and PC-1 was labeled with red fluorescent Cy3 dye. (C) Scatter plot of PC-1.0 and PC-1 data. miRNA, microRNA.

Techniques Used: Microarray, Labeling

Reverse transcription-quantitative polymerase chain reaction analysis of highly (PC-1.0) and weakly (PC-1) invasive and metastatic hamster pancreatic cancer cells. A total of 10 miRNAs were selected to verify the reliability of the miRNA microarray data. Of the 10 miRNAs, 6 were upregulated and 4 were downregulated. These results were very similar to the miRNA microarray data, supporting its reliability. Black bar, PC-1.0 cell line. White bar, PC-1 cell line. *P<0.05. miRNA, microRNA.
Figure Legend Snippet: Reverse transcription-quantitative polymerase chain reaction analysis of highly (PC-1.0) and weakly (PC-1) invasive and metastatic hamster pancreatic cancer cells. A total of 10 miRNAs were selected to verify the reliability of the miRNA microarray data. Of the 10 miRNAs, 6 were upregulated and 4 were downregulated. These results were very similar to the miRNA microarray data, supporting its reliability. Black bar, PC-1.0 cell line. White bar, PC-1 cell line. *P<0.05. miRNA, microRNA.

Techniques Used: Reverse Transcription, Real-time Polymerase Chain Reaction, Microarray



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Control and normalization sequences for the microRNA  microarray.

Journal: Oncology Letters

Article Title: Differential expression profiles of microRNAs in highly and weakly invasive/metastatic pancreatic cancer cells

doi: 10.3892/ol.2018.9352

Figure Lengend Snippet: Control and normalization sequences for the microRNA microarray.

Article Snippet: These probes were labeled onto a 75×25 mm chemically-modified plate using the SmartArray TM microarray system (CapitalBio Technology, Inc.).

Techniques: Control, Microarray, Sequencing

miRNA chip overlay images. (A) Original image of two-channel miRNA microarray; PC-1.0 was labeled with red fluorescent Cy5 dye and PC-1 was labeled with green fluorescent Cy3 dye. (B) Original image of two-channel miRNA microarray; PC-1.0 was labeled with green fluorescent Cy5 dye and PC-1 was labeled with red fluorescent Cy3 dye. (C) Scatter plot of PC-1.0 and PC-1 data. miRNA, microRNA.

Journal: Oncology Letters

Article Title: Differential expression profiles of microRNAs in highly and weakly invasive/metastatic pancreatic cancer cells

doi: 10.3892/ol.2018.9352

Figure Lengend Snippet: miRNA chip overlay images. (A) Original image of two-channel miRNA microarray; PC-1.0 was labeled with red fluorescent Cy5 dye and PC-1 was labeled with green fluorescent Cy3 dye. (B) Original image of two-channel miRNA microarray; PC-1.0 was labeled with green fluorescent Cy5 dye and PC-1 was labeled with red fluorescent Cy3 dye. (C) Scatter plot of PC-1.0 and PC-1 data. miRNA, microRNA.

Article Snippet: These probes were labeled onto a 75×25 mm chemically-modified plate using the SmartArray TM microarray system (CapitalBio Technology, Inc.).

Techniques: Microarray, Labeling

Reverse transcription-quantitative polymerase chain reaction analysis of highly (PC-1.0) and weakly (PC-1) invasive and metastatic hamster pancreatic cancer cells. A total of 10 miRNAs were selected to verify the reliability of the miRNA microarray data. Of the 10 miRNAs, 6 were upregulated and 4 were downregulated. These results were very similar to the miRNA microarray data, supporting its reliability. Black bar, PC-1.0 cell line. White bar, PC-1 cell line. *P<0.05. miRNA, microRNA.

Journal: Oncology Letters

Article Title: Differential expression profiles of microRNAs in highly and weakly invasive/metastatic pancreatic cancer cells

doi: 10.3892/ol.2018.9352

Figure Lengend Snippet: Reverse transcription-quantitative polymerase chain reaction analysis of highly (PC-1.0) and weakly (PC-1) invasive and metastatic hamster pancreatic cancer cells. A total of 10 miRNAs were selected to verify the reliability of the miRNA microarray data. Of the 10 miRNAs, 6 were upregulated and 4 were downregulated. These results were very similar to the miRNA microarray data, supporting its reliability. Black bar, PC-1.0 cell line. White bar, PC-1 cell line. *P<0.05. miRNA, microRNA.

Article Snippet: These probes were labeled onto a 75×25 mm chemically-modified plate using the SmartArray TM microarray system (CapitalBio Technology, Inc.).

Techniques: Reverse Transcription, Real-time Polymerase Chain Reaction, Microarray