Categories
+ Cell engineering
+ Cell imaging
+ Cell isolation and culture
+ Cell metabolism
+ Cell movement
+ Cell signaling
+ Cell staining
+ Cell structure
+ Cell Transplantation
+ Cell viability
+ Cell-based analysis
+ Model organism culture
+ Organelle isolation
- Single cell analysis
Cell carrier
Cell counter
Flow cytometry
Laser capture microdissection
Mass cytometry
Microfluidics
+ Tissue analysis
Protocols in Past Issues

Nuclei Isolation From Murine and Human Periosteum For Transcriptomic Analyses

SP Simon Perrin
CG Cassandre Goachet
ME Maria Ethel
YH Yasmine Hachemi
CC Céline Colnot
1689 Views
Feb 20, 2025

Bone repair is a complex regenerative process relying on skeletal stem/progenitor cells (SSPCs) recruited predominantly from the periosteum. Activation and differentiation of periosteal SSPCs occur in a heterogeneous environment, raising the need for single cell/nucleus transcriptomics to decipher the response of the periosteum to injury. Enzymatic cell dissociation can induce a stress response affecting the transcriptome and lead to overrepresentation of certain cell types (i.e., immune and endothelial cells) and low coverage of other cell types of interest. To counteract these limitations, we optimized a protocol to isolate nuclei directly from the intact periosteum and from the fracture callus to perform single-nucleus RNA sequencing. This protocol is adapted for fresh murine periosteum, fracture callus, and frozen human periosteum. Nuclei are isolated using mechanical extraction combined with fluorescence-based nuclei sorting to obtain high-quality nucleus suspensions. This protocol allows the capture of the full diversity of cell types in the periosteum and fracture environment to better reflect the in vivo tissue composition.

Isolation of Rice Embryo Single Cell Type using Laser Capture Microdissection (LCM)

Tie Liu Tie Liu
12949 Views
Sep 20, 2012
A lot of transcriptional profiling in plant and animals has used RNAs samples from many different cell types. The laser-capture microdissection (LCM) can identify and harvest pure cellular populations directly from heterogenous tissues based on histological identification. The molecules or protein isolated from LCM-captured cells can be suitable for single cell type analysis by using chip expression profiling or sequencing.