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CapitalBio Corporation smartarrayer 48 microarrayer
Smartarrayer 48 Microarrayer, 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/non+contact+microarray+printing+robot/smartarrayer+48+microarrayer/pmc06126384-207-3-8
Average 90 stars, based on 1 article reviews
smartarrayer 48 microarrayer - by Bioz Stars, 2026-09
90/100 stars

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Related Articles

Microarray:

Article Title: Analysis of Glycosphingolipid Glycans by Lectin Microarrays
Article Snippet: Glycosphingolipids (GSLs) are ubiquitous glycoconjugates on cell membrane.. Identification of unknown GSL-glycan structures is still a major challenge.. To address this challenge, we developed a novel strategy for analysis of GSL-glycans from cultured cells based on a lectin microarray that could directly detect and reveal glycopatterns of GSL extracts without the need for glycan release.

Article Title: Comprehensive analysis of glycosphingolipid glycans by lectin microarrays and MALDI-TOF mass spectrometry.
Article Snippet: Glycosphingolipids (GSLs) are ubiquitous glycoconjugates present on the cell membrane; they play significant roles in many bioprocesses such as cell adhesion, embryonic development, signal transduction and carcinogenesis.. Analyzing such amphiphilic molecules is a major challenge in the field of glycosphingolipidomics.. We provide a step-by-step protocol that uses a lectin microarray to analyze GSL glycans from cultured cells.

Article Title: An interferometric imaging biosensor using weighted spectrum analysis to confirm DNA monolayer films with attogram sensitivity.
Article Snippet: Interferometric imaging biosensors are powerful and convenient tools for confirming the existence of DNA monolayer films on silicon microarray platforms.. However, their accuracy and sensitivity need further improvement because DNA molecules contribute to an inconspicuous interferometric signal both in thickness and size.. Such weaknesses result in poor performance of these biosensors for low DNA content analyses and point mutation tests.

other:

Article Title: Reverse-Phase Protein Microarrays for Overexpressed Escherichia coli Lysates Reveal a Novel Tyrosine Kinase.
Article Snippet: Each lysate was spotted in duplicates on aldehyde-coated slides using a SmartArrayer 48 microarrayer (CapitalBio).16 The printed microarrays were stored at −80 °C for further usage.

Article Title: Diagnostic Performance of GeneChip for the Rapid Detection of Drug-Resistant Tuberculosis in Different Subgroups of Patients
Article Snippet: Oligonucleotide probes were printed onto OPAldehyde Slide TM aldehyde-activated slides at a concentration of 10 μM in DNA Spotting Solution using a SmartArrayer-48 microarrayer (CapitalBio) and were covalently immobilized on slides via an amino group at their 5ʹ ends to create the gene chips.

Cell Culture:

Article Title: Comprehensive analysis of glycosphingolipid glycans by lectin microarrays and MALDI-TOF mass spectrometry.
Article Snippet: Glycosphingolipids (GSLs) are ubiquitous glycoconjugates present on the cell membrane; they play significant roles in many bioprocesses such as cell adhesion, embryonic development, signal transduction and carcinogenesis.. Analyzing such amphiphilic molecules is a major challenge in the field of glycosphingolipidomics.. We provide a step-by-step protocol that uses a lectin microarray to analyze GSL glycans from cultured cells.

Mass Spectrometry:

Article Title: Comprehensive analysis of glycosphingolipid glycans by lectin microarrays and MALDI-TOF mass spectrometry.
Article Snippet: Glycosphingolipids (GSLs) are ubiquitous glycoconjugates present on the cell membrane; they play significant roles in many bioprocesses such as cell adhesion, embryonic development, signal transduction and carcinogenesis.. Analyzing such amphiphilic molecules is a major challenge in the field of glycosphingolipidomics.. We provide a step-by-step protocol that uses a lectin microarray to analyze GSL glycans from cultured cells.



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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.
Non Contact Microarray Printing Robot, supplied by SCIENION, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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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.
Non Contact Microarray Printing Robot Sciflexarrayer S1, supplied by SCIENION, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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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