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Algorithm-based quantification of tissue vascularization in immunohistochemical stainings of tissue sections.

Algorithm-based quantification of tissue vascularization in immunohistochemical stainings of tissue sections.

期刊: Scientific reports 日期: 2026-06-08 PMID: 42260122 DOI: 10.1038/s41598-026-56867-x 浏览: 32
作者: Dastmaltschi A, Bozoglu T, Rajendran V, Shakouri SA, Bhardwaz S, Messerer D, Renner S, Bähr A, Wolf E, Weinberger T
A, D., T, B., V, R., SA, S., S, B., D, M., S, R., A, B., E, W., & T, W. (2026). Algorithm-based quantification of tissue vascularization in immunohistochemical stainings of tissue sections.. Scientific reports. https://doi.org/10.1038/s41598-026-56867-x
A D, T B, V R, SA S, S B, D M, et al. Algorithm-based quantification of tissue vascularization in immunohistochemical stainings of tissue sections.. Scientific reports. 2026; doi: 10.1038/s41598-026-56867-x
A D, T B, V R, et al. Algorithm-based quantification of tissue vascularization in immunohistochemical stainings of tissue sections.[J]. Scientific reports. 2026. DOI: 10.1038/s41598-026-56867-x.
@article{a2026,
  author = {Dastmaltschi A and Bozoglu T and Rajendran V and Shakouri SA and Bhardwaz S and Messerer D and Renner S and Bähr A and Wolf E and Weinberger T},
  title = {Algorithm-based quantification of tissue vascularization in immunohistochemical stainings of tissue sections.},
  journal = {Scientific reports},
  year = {2026},
  doi = {10.1038/s41598-026-56867-x},
  note = {PMID: 42260122},
}
TY  - JOUR
AU  - Dastmaltschi A
AU  - Bozoglu T
AU  - Rajendran V
AU  - Shakouri SA
AU  - Bhardwaz S
AU  - Messerer D
AU  - Renner S
AU  - Bähr A
AU  - Wolf E
AU  - Weinberger T
TI  - Algorithm-based quantification of tissue vascularization in immunohistochemical stainings of tissue sections.
T2  - Scientific reports
PY  - 2026
DO  - 10.1038/s41598-026-56867-x
AN  - PMID:42260122
ER  - 

摘要

The vascular system ensures sufficient blood supply and tissue homeostasis and consists of different cell types. Endothelial cells represent the structural backbone of blood vessels and are accompanied by mural cells, specifically pericytes in the microcirculation as well as vascular smooth muscle cells (vSMC) along the larger vessels (arteries, arterioles and veins). Distinguishing these different cell types in immunohistochemical stainings presents a challenge due to their close proximity and the unreliable marker distribution of mural cells. Furthermore, manual quantification of capillaries and pericytes is highly examiner-dependent, hindering inter-examiner and inter-laboratory comparisons. To address these issues, we developed an automated algorithm-based analysis software designed to standardize quantification of vascular structures in immunohistochemical images, named CAPPER (Capillary / Pericyte Quantification Tool). Through the implementation of adaptive thresholding, morphological operations, and domain-specific knowledge, CAPPER excels in the quantification of capillary densities and pericyte coverage in different organs (brain, heart, muscle, and kidney), species (mouse and pig) as well as a plethora of disease states. We furthermore propose a robust pericyte marker array to more accurately identify this elusive cell type.

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