---
title: Cellsonics Blog
description: Cellsonics has re-engineered single cell sample preparation to capture the full potential of each and every tissue specimen.
---

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# Resources

![featured-image](https://blog.cellsonics.com/hubfs/Inflammation-Resize.jpg)

 Latest

## [Preserving the True Immune Landscape: Eliminating Enzymatic Artifacts in Inflammation Research](https://blog.cellsonics.com/blog/preserving-immune-markers)

Preserving the True Immune Landscape in Inflammation Research

[Read Post](https://blog.cellsonics.com/blog/preserving-immune-markers)

## Explore all

[![](https://blog.cellsonics.com/hubfs/Spleen%20Blog.jpg)](https://blog.cellsonics.com/blog/protecting-immune-cell-integrity-keep-the-markers-enzymes-damage)

## [Immune Intergrity: Retain biological fidelity in single-cell spleen prep](https://blog.cellsonics.com/blog/protecting-immune-cell-integrity-keep-the-markers-enzymes-damage)

[Read](https://blog.cellsonics.com/blog/protecting-immune-cell-integrity-keep-the-markers-enzymes-damage)

[![](https://blog.cellsonics.com/hubfs/Enhanced-Mouse.jpg)](https://blog.cellsonics.com/blog/preserving-the-signal-acoustic-dissociation-unlocks-single-cell-insights-in-ct26-tumor)

## [Preserving the signal: Acoustic dissociation unlocks single-cell insights in CT26 tumor](https://blog.cellsonics.com/blog/preserving-the-signal-acoustic-dissociation-unlocks-single-cell-insights-in-ct26-tumor)

[Read](https://blog.cellsonics.com/blog/preserving-the-signal-acoustic-dissociation-unlocks-single-cell-insights-in-ct26-tumor)

[![](https://blog.cellsonics.com/hubfs/Cellsonics%20-%202024/Images/Blog/Retain-Critical.jpg)](https://blog.cellsonics.com/blog/single-cell-circulating-blood)

## [Single-cell characterization of non-native cells circulating in blood](https://blog.cellsonics.com/blog/single-cell-circulating-blood)

[Read](https://blog.cellsonics.com/blog/single-cell-circulating-blood)

[![](https://blog.cellsonics.com/hubfs/Cellsonics%20-%202024/Images/Blog/Skin.jpg)](https://blog.cellsonics.com/blog/mouse-skin)

## [Rapid Skin Dissociation Protocol using acoustic energy](https://blog.cellsonics.com/blog/mouse-skin)

[Read](https://blog.cellsonics.com/blog/mouse-skin)

[![](https://blog.cellsonics.com/hubfs/Cell-Membrane-Blog-Tile_web.jpg)](https://blog.cellsonics.com/blog/biorxiv)

## [An enzyme-free, cold-process acoustic method for tissue dissociation](https://blog.cellsonics.com/blog/biorxiv)

[Read](https://blog.cellsonics.com/blog/biorxiv)

[![](https://blog.cellsonics.com/hubfs/Cellsonics%20-%202024/Images/Blog/Significantly-Improved.jpg)](https://blog.cellsonics.com/blog/tissue-dissociation)

## [Eliminating artifacts in tissue dissociation methods: A Review](https://blog.cellsonics.com/blog/tissue-dissociation)

[Read](https://blog.cellsonics.com/blog/tissue-dissociation)

[![](https://blog.cellsonics.com/hubfs/Cellsonics%20-%202024/Images/Blog/Enhanced-Mouse.jpg)](https://blog.cellsonics.com/blog/mouse-lung)

## [Enzyme-free dissociation preserves critical mouse lung cell markers](https://blog.cellsonics.com/blog/mouse-lung)

[Read](https://blog.cellsonics.com/blog/mouse-lung)

[![](https://blog.cellsonics.com/hubfs/Cellsonics%20-%202024/Images/Blog/Retain-Critical.jpg)](https://blog.cellsonics.com/blog/mouse-cardiac-markers)

## [Retain Critical Mouse Cardiac Markers With Cellsonics SimpleFlow](https://blog.cellsonics.com/blog/mouse-cardiac-markers)

[Read](https://blog.cellsonics.com/blog/mouse-cardiac-markers)

[![](https://blog.cellsonics.com/hubfs/Cellsonics%20-%202024/Images/Blog/Enzyme-free.jpg)](https://blog.cellsonics.com/blog/mousebrain)

## [Enhanced Mouse Brain Cell Surface Expression With SimpleFlow](https://blog.cellsonics.com/blog/mousebrain)

[Read](https://blog.cellsonics.com/blog/mousebrain)

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