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Arrayjet Limited robotic microarray printer
Robotic Microarray Printer, supplied by Arrayjet Limited, 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/microarray+robot/robotic+microarray+printer/pmc11724310-55-15-18
Average 90 stars, based on 1 article reviews
robotic microarray printer - by Bioz Stars, 2026-09
90/100 stars

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Related Articles

Microarray:

Article Title: Targeting a noncanonical, hairpin-containing G-quadruplex structure from the MYCN gene
Article Snippet: .. Each of the compounds (10 mM in DMSO) was printed in duplicate blocks by Arrayjet robotic microarray printer. ..

Article Title: Competitive Microarray Screening Reveals Functional Ligands for the DHX15 RNA G-quadruplex
Article Snippet: .. For high-throughput SMM screening, the microarray slides were prepared based on previously reported methods using a robotic microarray printer (Arrayjet, UK). ..

Article Title: Competitive Microarray Screening Reveals Functional Ligands for the DHX15 RNA G-Quadruplex
Article Snippet: Then, the melting temperature was calculated by fitting the triplicate dataset by using GraphPad Prism 9.0. .. For high-throughput SMM screening, the microarray slides were prepared based on previously reported methods using a robotic microarray printer (Arrayjet, UK).3 On each slide with 2D-epoxy modification, over 7,000 compounds were printed in duplicate spots, forming a high-density microarray. ..

Article Title: Use of a small molecule microarray screen to identify inhibitors of the catalytic RNA subunit of Methanobrevibacter smithii RNase P.
Article Snippet: .. Briefly, in ach slide 7,300 commercially purchased compounds were rinted in duplicate spots using a robotic microarray printer Arrayjet, Roslin, UK), forming a high-density microarray. rior to screening, SMM slides were pre-wet with PBST buffer n a Nunc 4-well plate. ..

Article Title: Use of a small molecule microarray screen to identify inhibitors of the catalytic RNA subunit of Methanobrevibacter smithii RNase P
Article Snippet: .. Briefly, in each slide 7,300 commercially purchased compounds were printed in duplicate spots using a robotic microarray printer (Arrayjet, Roslin, UK), forming a high-density microarray. ..

Modification:

Article Title: Competitive Microarray Screening Reveals Functional Ligands for the DHX15 RNA G-Quadruplex
Article Snippet: Then, the melting temperature was calculated by fitting the triplicate dataset by using GraphPad Prism 9.0. .. For high-throughput SMM screening, the microarray slides were prepared based on previously reported methods using a robotic microarray printer (Arrayjet, UK).3 On each slide with 2D-epoxy modification, over 7,000 compounds were printed in duplicate spots, forming a high-density microarray. ..



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Figure 2. (A) Layout of the biomarker <t>microarray</t> (BMA) slide, showing the arrangement of capture antibodies and controls within each well. (B) Illustration of the BMA slide design with 16 wells and its alignment within the slide holder for analysis. The numbers along the side correspond to the row numbers of each well, while the numbers along the bottom represent the column positions of the slide.
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Image Search Results


Figure 2. (A) Layout of the biomarker microarray (BMA) slide, showing the arrangement of capture antibodies and controls within each well. (B) Illustration of the BMA slide design with 16 wells and its alignment within the slide holder for analysis. The numbers along the side correspond to the row numbers of each well, while the numbers along the bottom represent the column positions of the slide.

Journal: Micromachines

Article Title: Portable Fluorescence Microarray Reader-Enabled Biomarker Panel Detection System for Point-of-Care Diagnosis of Lupus Nephritis.

doi: 10.3390/mi16020156

Figure Lengend Snippet: Figure 2. (A) Layout of the biomarker microarray (BMA) slide, showing the arrangement of capture antibodies and controls within each well. (B) Illustration of the BMA slide design with 16 wells and its alignment within the slide holder for analysis. The numbers along the side correspond to the row numbers of each well, while the numbers along the bottom represent the column positions of the slide.

Article Snippet: The slides were prepared using a non-contact microarray printing robot (sciFLEXARRAYER S3; Scienion GmbH, Berlin, Germany), which printed capture antibodies for each biomarker in triplicate at a controlled drop volume of 450 ± 20 pL.

Techniques: Biomarker Discovery, Microarray