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Comparison of cell concentration and viability using the Cellometer Auto 2000 cell counter and a manual hemocytometer.
Technical note comparing measurement of cell concentration and viability using the Cellometer Auto 2000 cell counter and a manual hemocytometer.

Biotin-free AlphaLISA assays for the detection of cytokines in PBMC supernatants
In this technical note, AlphaLISA biotin-free kits were used to detect and quantify the cytokines interleukin 2 (IL-2), tumor necrosis factor alpha (TNFα), interferon gamma (IFN-γ), and interleukin 6 (IL-6).

Characterization of breast cancer drugs via mammosphere morphometric analysis using the Celigo image cytometer.
Technical note describing characterization of breast cancer drugs via mammosphere morphometric analysis using the Celigo image cytometer.

Modernize your cell line development assays with high-throughput image cytometry using the Celigo system.
Technical note describing modernization of cell line development assays with high-throughput image cytometry using the Celigo system.

A modern approach to traditional virology research using the Celigo image cytometer.
Technical note describing advanced approaches to traditional virology research using the Celigo image cytometer.

AlphaLISA Acetyl‑Histone H3 lysine 27 (H3K27ac) cellular detection kit
This AlphaLISA immunodetection assay detects alterations in acetylated histone H3 lysine 27 (H3K27ac) levels within cellular extracts.

A simple method for preparing GPCR membrane model extracts from stable cell lines for use with the HTRF GTP Gi binding assay
This Technical Note provides a detailed method for preparing GPCR membrane model extracts from stable cell lines for use with the HTRF GTP Gi binding assay, including cell culture preparation, cell lysis, membrane extraction, and assay optimization.

Overcoming challenges in primary sample processing with animal infectious disease models using the Cellaca MX high-throughput cell counter.
Technical note describing how to address challenges in primary sample processing with animal infectious disease models using the Cellaca MX high-throughput cell counter.


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