micrograph
 Courtesy of Kim Lab, taken from  https://doi.org/10.1002/glia.23827
 Confocal micrograph of oligodendrocytes stained for microtubules (green) and Myelin Basic Protein (red) following mechanical stretch injury.

 

micrograph
Drosophila macrophages (called hemocytes) expressing a genomic-tagged endolysosomal transporter, ClC-b. Macrophages engulfed and internalized fluorescent E. coli particles (red) into endolysosomes. 
[Wong, et al. (2017) Cell Host Microbe]

 

Courtesy of Gao lab, fun gut image by Dr. Soumya Das former graduate student
Courtesy of Gao lab, fun gut image by Dr. Soumya Das former graduate student 

 

Courtesy of Gao lab, fun gut image by Dr. Soumya Das former graduate student 
Courtesy of Gao lab, fun gut image by Dr. Soumya Das former graduate student 

 

micrograph
Courtesy of Bonder Lab from https://doi.org/10.1073/pnas.0404723101 

Confocal micrograph of mitotic spindle stained for microtubules (green) and chromosomes (red).  
The two panels provide longitudinal and cross-section images through a cell in metaphase.

 

micrograph
Courtesy of Bonder lab, taken from https://doi.org/10.1002/(SICI)1097-0169(1999)43:4<296::AID-CM3>3.0.CO;2-U

Live cell confocal imaging of centripetal flow of actin filaments positioned at the 
leading edge of a crawling epithelial cell following scratch wounding.  Actin was labeled with rhodamine-phalloidin.

 

micrograph
Courtesy of Friedman lab from DOI: https://doi.org/10.1523/JNEUROSCI.0990-19.2019

Confocal micrograph of the cerebellum from postnatal day 7 mice identifying Purkinje cells (green), 
proliferating cells (cyan), and cell nuclei (purple) in a postnatal day 7 mouse cerebellum. 

 

micrograph
Friedman Lab, cover page 2019 Journal of Neuroscience, 39:9119-9129.
 DOI: https://doi.org/10.1523/JNEUROSCI.0990-19.2019

 

micrograph
Courtesy of Friedman Lab from thesis work of Subhashini Joshi.  Confocal image of an optical slice taken through the subventricular zone of rat brain from a 7-day old animal.  The tissue was stained by indirect immunofluorescence for neurotrophin receptor p75NTR (green) and the proliferation marker Ki67 (red). Scale bar represents 50µm.

 

micrograph
Courtesy of Friedman Lab from thesis work of Subhashini Joshi.  Confocal image of an optical slice taken through the subventricular zone of rat brain from a 7-day old animal.  The tissue was stained by indirect immunofluorescence for neurotrophin receptor p75NTR (green) and the proliferation marker Ki67 (red). Scale bar represents 50µm.

 

micrograph
Courtesy of Dr. Juan Zanin of Friedman Lab.  P15 mouse cerebellum. Purkinje cells stained with calbindin (green), Basket Cells stained with parvalbumin (magenta) and Dapi (blue).

 

micrograph
Courtesy of Dr. Juan Zanin of Friedman Lab.  P8 mouse cerebellum. Purkinje cells and Granule Cell Precursors stained for p75NTR (red), Proliferating cells stained with Ki67 (cyan).

 

micrograph
Courtesy of Dr. Juan Zanin of Friedman Lab.  Hippocampal cell in culture. TrkB (green), p75NTR (magenta), Rab 5 (white) and Dapi (blue).

 

Courtesy of Gao lab, fun gut image by Dr. Soumya Das former graduate student in Gao lab 
Courtesy of Gao lab, fun gut image by Dr. Soumya Das former graduate student in Gao lab.

 

Courtesy of Gao lab, fun gut image by Dr. Soumya Das former graduate student
Courtesy of Gao lab, fun gut image by Dr. Soumya Das former graduate student 

 

 

   
Courtesy of Maurel Lab from  https:// DOI10.1074/jbc.M116.747816 ​ ​ ​ Confocal micrograph of adult rat sciatic nerves imaged following  labeling with anti-CTL1 (red) and anti-P0 (green) antibodies. Both NECL4 and CTL1 localize to the Schwann internode/axo-glial interface (arrowheads) and Schmidt-Lanterman incisures (arrowheads).
Courtesy of Maurel Lab

​Confocal micrograph of adult rat sciatic nerves imaged following  labeling with anti-CTL1 (red) and anti-P0 (green) antibodies. Both NECL4 and CTL1 localize to the Schwann internode/axo-glial interface (arrowheads) and Schmidt-Lanterman incisures (arrowheads). 
Courtesy of Dobrowolski lab, taken from Nnah et al.  2019. Autophagy, 15:151-164​  https://doi.org/10.1080/15548627.2018.1511504
Courtesy of Dobrowolski lab, taken from Nnah et al.  2019. Autophagy, 15:151-164​