Cargando…

An efficient autometallography approach to localize lead at ultra-structural levels of cultured cells

Understanding the precise intracellular localization of lead (Pb) is a key in deciphering processes in Pb-induced toxicology. However, it is a great challenge to trace Pb in vitro, especially in cultured cells. We aimed to find an innovative and efficient approach to investigate distribution of Pb i...

Descripción completa

Detalles Bibliográficos
Autores principales: Song, Han, Zheng, Gang, Shen, Xue-Feng, Zhao, Zai-Hua, Liu, Yang, Liu, Ying-Ying, Kang, Jun-Jun, Chen, Jing-Yuan, Luo, Wen-Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Biophysics Reports Editorial Office 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10240796/
https://www.ncbi.nlm.nih.gov/pubmed/37288309
http://dx.doi.org/10.1007/s41048-020-00116-9
_version_ 1785053850263093248
author Song, Han
Zheng, Gang
Shen, Xue-Feng
Zhao, Zai-Hua
Liu, Yang
Liu, Yang
Liu, Ying-Ying
Kang, Jun-Jun
Chen, Jing-Yuan
Luo, Wen-Jing
author_facet Song, Han
Zheng, Gang
Shen, Xue-Feng
Zhao, Zai-Hua
Liu, Yang
Liu, Yang
Liu, Ying-Ying
Kang, Jun-Jun
Chen, Jing-Yuan
Luo, Wen-Jing
author_sort Song, Han
collection PubMed
description Understanding the precise intracellular localization of lead (Pb) is a key in deciphering processes in Pb-induced toxicology. However, it is a great challenge to trace Pb in vitro, especially in cultured cells. We aimed to find an innovative and efficient approach to investigate distribution of Pb in cells and to validate it through determining the subcellular Pb content. We identified its ultra-structural distribution with autometallography under electron microscopy in a choroidal epithelial Z310 cell line. Electron microscopy in combination with energy-dispersive X-ray spectroscope (EDS) was employed to provide further evidence of Pb location. In addition, Pb content was determined in the cytosol, membrane/organelle, nucleus and cytoskeleton fractions with atomic absorption spectroscopy. Pb was found predominantly inside the nuclear membranes and some was distributed in the cytoplasm under low-concentration exposure. Nuclear existence of Pb was verified by EDS under electron microscopy. Once standardized for protein content, Pb percentage in the nucleus fraction reached the highest level (76%). Our results indicate that Pb is accumulated mainly in the nucleus of choroid plexus. This method is sensitive and precise in providing optimal means to study the ultra-structural localization of Pb for in vitro models. In addition, it offers the possibility of localization of other metals in cultured cells. Some procedures may also be adopted to detect target proteins via immunoreactions.
format Online
Article
Text
id pubmed-10240796
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Biophysics Reports Editorial Office
record_format MEDLINE/PubMed
spelling pubmed-102407962023-06-07 An efficient autometallography approach to localize lead at ultra-structural levels of cultured cells Song, Han Zheng, Gang Shen, Xue-Feng Zhao, Zai-Hua Liu, Yang Liu, Yang Liu, Ying-Ying Kang, Jun-Jun Chen, Jing-Yuan Luo, Wen-Jing Biophys Rep Method Understanding the precise intracellular localization of lead (Pb) is a key in deciphering processes in Pb-induced toxicology. However, it is a great challenge to trace Pb in vitro, especially in cultured cells. We aimed to find an innovative and efficient approach to investigate distribution of Pb in cells and to validate it through determining the subcellular Pb content. We identified its ultra-structural distribution with autometallography under electron microscopy in a choroidal epithelial Z310 cell line. Electron microscopy in combination with energy-dispersive X-ray spectroscope (EDS) was employed to provide further evidence of Pb location. In addition, Pb content was determined in the cytosol, membrane/organelle, nucleus and cytoskeleton fractions with atomic absorption spectroscopy. Pb was found predominantly inside the nuclear membranes and some was distributed in the cytoplasm under low-concentration exposure. Nuclear existence of Pb was verified by EDS under electron microscopy. Once standardized for protein content, Pb percentage in the nucleus fraction reached the highest level (76%). Our results indicate that Pb is accumulated mainly in the nucleus of choroid plexus. This method is sensitive and precise in providing optimal means to study the ultra-structural localization of Pb for in vitro models. In addition, it offers the possibility of localization of other metals in cultured cells. Some procedures may also be adopted to detect target proteins via immunoreactions. Biophysics Reports Editorial Office 2020-10-31 /pmc/articles/PMC10240796/ /pubmed/37288309 http://dx.doi.org/10.1007/s41048-020-00116-9 Text en Copyright 2020 Biophysics Reports https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-Share Alike 4.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/)
spellingShingle Method
Song, Han
Zheng, Gang
Shen, Xue-Feng
Zhao, Zai-Hua
Liu, Yang
Liu, Yang
Liu, Ying-Ying
Kang, Jun-Jun
Chen, Jing-Yuan
Luo, Wen-Jing
An efficient autometallography approach to localize lead at ultra-structural levels of cultured cells
title An efficient autometallography approach to localize lead at ultra-structural levels of cultured cells
title_full An efficient autometallography approach to localize lead at ultra-structural levels of cultured cells
title_fullStr An efficient autometallography approach to localize lead at ultra-structural levels of cultured cells
title_full_unstemmed An efficient autometallography approach to localize lead at ultra-structural levels of cultured cells
title_short An efficient autometallography approach to localize lead at ultra-structural levels of cultured cells
title_sort efficient autometallography approach to localize lead at ultra-structural levels of cultured cells
topic Method
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10240796/
https://www.ncbi.nlm.nih.gov/pubmed/37288309
http://dx.doi.org/10.1007/s41048-020-00116-9
work_keys_str_mv AT songhan anefficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT zhenggang anefficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT shenxuefeng anefficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT zhaozaihua anefficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT liuyang anefficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT liuyang anefficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT liuyingying anefficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT kangjunjun anefficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT chenjingyuan anefficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT luowenjing anefficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT songhan efficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT zhenggang efficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT shenxuefeng efficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT zhaozaihua efficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT liuyang efficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT liuyang efficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT liuyingying efficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT kangjunjun efficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT chenjingyuan efficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells
AT luowenjing efficientautometallographyapproachtolocalizeleadatultrastructurallevelsofculturedcells