Literature DB >> 33408350

Large-scale, three-dimensional tissue cytometry of the human kidney: a complete and accessible pipeline.

Michael J Ferkowicz1, Seth Winfree1,2, Angela R Sabo1, Malgorzata M Kamocka1, Suraj Khochare1, Daria Barwinska1, Michael T Eadon1, Ying-Hua Cheng1, Carrie L Phillips1,3, Timothy A Sutton1, Katherine J Kelly1, Pierre C Dagher1, Tarek M El-Achkar4, Kenneth W Dunn5.   

Abstract

The advent of personalized medicine has driven the development of novel approaches for obtaining detailed cellular and molecular information from clinical tissue samples. Tissue cytometry is a promising new technique that can be used to enumerate and characterize each cell in a tissue and, unlike flow cytometry and other single-cell techniques, does so in the context of the intact tissue, preserving spatial information that is frequently crucial to understanding a cell's physiology, function, and behavior. However, the wide-scale adoption of tissue cytometry as a research tool has been limited by the fact that published examples utilize specialized techniques that are beyond the capabilities of most laboratories. Here we describe a complete and accessible pipeline, including methods of sample preparation, microscopy, image analysis, and data analysis for large-scale three-dimensional tissue cytometry of human kidney tissues. In this workflow, multiphoton microscopy of unlabeled tissue is first conducted to collect autofluorescence and second-harmonic images. The tissue is then labeled with eight fluorescent probes, and imaged using spectral confocal microscopy. The raw 16-channel images are spectrally deconvolved into 8-channel images, and analyzed using the Volumetric Tissue Exploration and Analysis (VTEA) software developed by our group. We applied this workflow to analyze millimeter-scale tissue samples obtained from human nephrectomies and from renal biopsies from individuals diagnosed with diabetic nephropathy, generating a quantitative census of tens of thousands of cells in each. Such analyses can provide useful insights that can be linked to the biology or pathology of kidney disease. The approach utilizes common laboratory techniques, is compatible with most commercially-available confocal microscope systems and all image and data analysis is conducted using the VTEA image analysis software, which is available as a plug-in for ImageJ.

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Year:  2021        PMID: 33408350      PMCID: PMC8363780          DOI: 10.1038/s41374-020-00518-w

Source DB:  PubMed          Journal:  Lab Invest        ISSN: 0023-6837            Impact factor:   5.662


  41 in total

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  9 in total

Review 1.  Cellular and molecular interrogation of kidney biopsy specimens.

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Review 2.  Profiling Immune Cells in the Kidney Using Tissue Cytometry and Machine Learning.

Authors:  Seth Winfree; Mohammad Al Hasan; Tarek M El-Achkar
Journal:  Kidney360       Date:  2022-03-28

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Review 5.  Tissue Cytometry With Machine Learning in Kidney: From Small Specimens to Big Data.

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8.  Label-free imaging of non-deparaffinized sections of the human kidney to determine tissue quality and signatures of disease.

Authors:  Angela R Sabo; Seth Winfree; Sharon B Bledsoe; Carrie L Phillips; James E Lingeman; Michael T Eadon; James C Williams; Tarek M El-Achkar
Journal:  Physiol Rep       Date:  2022-02

9.  Quantitative 3-dimensional imaging and tissue cytometry reveals lymphatic expansion in acute kidney injury.

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  9 in total

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