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Mastroeni, D.

Publications and source records attributed to Mastroeni, D..

2 recordsLinked to original sources

Highly sensitive and multiplexed in situ protein profiling with cleavable fluorescent streptavidin

The ability to perform highly sensitive and multiplexed in situ protein analysis is crucial to advance our understanding of normal physiology and disease pathogenesis. To achieve this goal, here we develop an approach using cleavable biotin conjugated antibodies and cleavable fluorescent streptavidin (CFS). In this approach, protein targets are first recognized by the cleavable biotin labeled antibodies. Subsequently, CFS is applied to stain the protein targets. Though layer-by-layer signal amplification using cleavable biotin conjugated orthogonal antibodies and CSF, the protein detection sensitivity can be enhanced by at least 10 fold, compared with the existing methods. After imaging, the fluorophores and the biotins unbound to streptavidin are removed by chemical cleavage. The leftover streptavidin is blocked by biotin. Upon reiterative analysis cycles, a large number of different proteins with a wide range of expression levels can be unambiguously detected in individual cell in situ.

systems biology

Highly sensitive in situ proteomics with cleavable fluorescent tyramide reveals human neuronal heterogeneity

The ability to comprehensively profile proteins in intact tissues in situ is crucial for our understanding of health and disease. However, the existing methods suffer from low sensitivity and limited sample throughput. To address these issues, here we present a highly sensitive and multiplexed in situ protein analysis approach using cleavable fluorescent tyramide and off-the-shelf antibodies. Compared with the current methods, this approach enhances the detection sensitivity and reduces the imaging time by 1-2 orders of magnitude, and can potentially detect hundreds of proteins in intact tissues at the optical resolution. Applying this approach, we studied protein expression heterogeneity in genetically identical cells, and performed expression correlation analysis to identify coregulated proteins. We also profiled >6000 neurons in human formalin-fixed paraffin-embedded (FFPE) hippocampus. By partitioning these neurons into varied cell clusters based on their protein expression profiles, we observed different subregions of the hippocampus consist of neurons from distinct clusters.

systems biology