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FL Protocol - Larval Dissection and 4% PFA Fixation
Targeted Single-Cell Microchemical Analysis: MS-Based Peptidomics of Individual Paraformaldehyde-Fixed and Immunolabeled Neurons - ScienceDirect
An Optimized Protocol for ChIP-Seq from Human Embryonic Stem Cell Cultures: STAR Protocols
PFA fixation test: the effects on live cell imaging » Nanolive - A complete solution for your label-free live cell imaging
Fixing Cell Pellets for Flow Cytometry
Fixation and Permeabilization in ICC IF: Novus Biologicals
Sample Preparation for Fluorescence Microscopy: An Introduction
Biomolecules | Free Full-Text | The Combination of Paraformaldehyde and Glutaraldehyde Is a Potential Fixative for Mitochondria
A novel protocol to detect green fluorescent protein in unfixed, snap-frozen tissue | Scientific Reports
Frontiers | Fix Your Membrane Receptor Imaging: Actin Cytoskeleton and CD4 Membrane Organization Disruption by Chemical Fixation
Glyoxal as an alternative fixative to formaldehyde in immunostaining and super‐resolution microscopy | The EMBO Journal
Fixation and Permeabilization in ICC IF: Novus Biologicals
Mechanical properties of paraformaldehyde-treated individual cells investigated by atomic force microscopy and scanning ion conductance microscopy | Nano Convergence | Full Text
Protocol for labeling and fixation of intact lysosomes with esterified amino acid analogs to assess lysosomal expansion in living eukaryotic cells: STAR Protocols
A simple and fast method for fixation of cultured cell lines that preserves cellular structures containing gamma-tubulin - ScienceDirect
Immunofluorescence: Tips for Immunostaining Cultured Cells | Proteintech Group
Protocol for Isolation and Characterization of In Situ Fixed Quiescent Muscle Stem Cells - ScienceDirect
An innovative strategy to obtain extraordinary specificity in immunofluorescent labeling and optical super resolution imaging of microtubules - RSC Advances (RSC Publishing) DOI:10.1039/C7RA06949A
Influence of the fixation/permeabilization step on peptide nucleic acid fluorescence in situ hybridization (PNA-FISH) for the detection of bacteria | PLOS ONE