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Photobleaching alters the morphometric analysis of fluorescently labeled neurons and microglial cells

Polgár, Tamás Ferenc and Spisák, Krisztina and Kádár, Zalán and Alodah, Nora and Szebeni, Gábor and Klein, Kata and Patai, Roland and Siklós, László and Nógrádi, Bernát (2025) Photobleaching alters the morphometric analysis of fluorescently labeled neurons and microglial cells. PATHOLOGY AND ONCOLOGY RESEARCH, 31. ISSN 1219-4956

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Abstract

Photobleaching of immunofluorescence signal is a well-known phenomenon, however, its impact on derived parameters characterizing number and shape of different cell types in tissue sections is less understood. Our aim was to determine whether the duration of illumination and the type of fluorophore (Alexa Fluor 546 (A546), and Alexa Fluor 488 Plus (A488)) can influence the acquired morphometric parameters of cells in the nervous system. Immunofluorescent staining of microglia and neurons was performed on mouse spinal cord sections. Mean color intensity in a field of view, number of detectable neuronal cell profiles, partial coverage of microglial profiles, and fractal geometrical parameters were determined. All measurements were made using epifluorescence microscopy with identical acquisition parameters. Most of the measured parameters suffered significant alternation after 30–60 s of illumination. The data-altering effect of photobleaching was most prominent in the case of mean fluorescent intensity. Thus, while immunofluorescent staining is useful for co-localizing different groups of cells, cell-specific quantitative morphological measurements require photostable staining. Possibility of the combination of these methods on the same section in order to achieve multi-channel localization without photobleaching is exemplified.

Item Type: Article
Additional Information: Funding Agency and Grant Number: NKFIH (National Research,Development, and Innovation Office) [FK-143326]; Gedeon Richter Talentum Foundation; New national excellence program [UNKP-23-3-SZTE-315]; Ministry for culture and innovation [EKOEP-24-4 - SZTE-393]; Ministry of Human Capacities [NTP-NFTOE-22-B-0027, NTP-NFTO-22-B-0069]; National Research, Development, and Innovation Office (NKFI),Hungary [2023-1.1.1-PIACI_FOKUSZ-2024-00036, 142877 FK22]; Janos Bolyai Research Scholarship of the Hungarian Academy of Sciences [BO/00582/22/8] Funding text: The author(s) declare that financial support was received for the research and/or publication of this article. This work was partially supported with financial aid by the NKFIH (National Research,Development, and Innovation Office) through the FK-143326 program. TP was financially aided by Gedeon Richter Talentum Foundation in the framework of Gedeon Richter Excellence PhD Scholarship of Gedeon Richter, therefore, the scientific work publicized in this article was reached with the sponsorship of Gedeon Richter Talentum Foundation in the framework of Gedeon Richter Excellence PhD Scholarship of Gedeon Richter. TP was also supported by the UNKP-23-3-SZTE-315 new national excellence program and EKOEP-24-4 - SZTE-393 of the ministry for culture and innovation from the source of thenational research, development and innovation fund. KS and RPwere supported by the National Talent Program with the financial aid of the Ministry of Human Capacities (NTP-NFTOE-22-B-0027;NTP-NFTO-22-B-0069). This research was funded by the 2023-1.1.1-PIACI_FOKUSZ-2024-00036, and 142877 FK22, grant from the National Research, Development, and Innovation Office (NKFI),Hungary. This work was supported by the Janos Bolyai Research Scholarship of the Hungarian Academy of Sciences BO/00582/22/8 (GS)
Uncontrolled Keywords: photobleaching, immunofluorescence, morphometry, morphology, fractal analysis
Subjects: Q Science / természettudomány > QH Natural history / természetrajz > QH301 Biology / biológia
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 03 Sep 2025 06:32
Last Modified: 03 Sep 2025 06:32
URI: https://real.mtak.hu/id/eprint/223220

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