Search bioRxivSearch

Biology subjects

Harris, R. C.

Publications and source records attributed to Harris, R. C..

2 recordsLinked to original sources

Autofluorescence microscopy as a label-free tool for renal histology and glomerular segmentation

Automated spatial segmentation models can enrich spatio-molecular omics analyses by providing a link to relevant biological structures. We developed segmentation models that use label-free autofluorescence (AF) microscopy to recognize multicellular functional tissue units (FTUs) (glomerulus, proximal tubule, descending thin limb, ascending thick limb, distal tubule, and collecting duct) and gross morphological structures (cortex, outer medulla, and inner medulla) in the human kidney. Annotations were curated using highly specific multiplex immunofluorescence and transferred to co-registered AF for model training. All FTUs (except the descending thin limb) and gross kidney morphology were segmented with high accuracy: >0.85 F1-score, and Dice-Sorensen coefficients >0.80, respectively. This workflow allowed lipids, profiled by imaging mass spectrometry, to be quantitatively associated with segmented FTUs. The segmentation masks were also used to acquire spatial transcriptomics data from collecting ducts. Consistent with previous literature, we demonstrated differing transcript expression of collecting ducts in the inner and outer medulla.

bioinformatics

Skeletal Muscle Histidine Containing Dipeptide Contents are Increased in Freshwater Turtles (Chrysemys picta bellii) with Cold-Acclimation

Freshwater turtles found in higher latitudes can experience extreme challenges to acid-base homeostasis while overwintering, due to a combination of cold temperatures along with the potential for environmental hypoxia. Histidine containing dipeptides (HCDs; carnosine, anserine and balenine) may facilitate pH regulation in response to these challenges, through their role as pH buffers. We measured the HCDs content of three tissues (liver, cardiac muscle and skeletal muscle) from the anoxia-tolerant painted turtle (Chrysemys picta bellii) acclimated to either 3 or 20{degrees}C. HCDs were detected in all tissues, with the highest content shown in the skeletal muscle. Turtles acclimated to 3{degrees}C had more HCD in their skeletal muscle than those acclimated to 20{degrees}C (carnosine = 20.8{+/-}4.5 vs 12.5{+/-}5.9 mmol{middle dot}kg DM-1; ES = 1.59 (95%CI: 0.16 - 3.00), P = 0.013). The higher HCD content observed in the skeletal muscle of the cold-acclimated turtles suggests a role in acid-base regulation in response to physiological challenges associated with living in the cold, with the increase possibly related to the temperature sensitivity of carnosines dissociation constant and buffering power of the skeletal muscle during anoxic submergence. HighlightsO_LIpH regulation is a major challenge for overwintering freshwater turtles. C_LIO_LIHistidine containing dipeptides are important intracellular buffers. C_LIO_LITurtles acclimated to 3{degrees}C had higher HCD content than those at 20{degrees}C. C_LIO_LIHCDs may be important pH regulators in cold-acclimated turtles. C_LI

physiology