Isolation and characterization of exosomes derived from supernatant of rabbit kidney tubular cells culture

Introduction: Different vesicles are created by the cells into extra-cellular space, of which researchers mostly considered exosomes. In fact, the vesicles are secreted by each cell type and are found in the body fluids like urine, blood and breast milk and consist of a certain ingredient of protein...

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Main Authors: Fereshtesadat Fakhredini, Esrafil Mansouri, Mahmoud Orazizadeh
Format: Article
Language:English
Published: Society of Diabetic Nephropathy Prevention 2022-07-01
Series:Journal of Preventive Epidemiology
Subjects:
Online Access:https://jprevepi.com/PDF/jpe-7-e26161.pdf
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author Fereshtesadat Fakhredini
Esrafil Mansouri
Mahmoud Orazizadeh
author_facet Fereshtesadat Fakhredini
Esrafil Mansouri
Mahmoud Orazizadeh
author_sort Fereshtesadat Fakhredini
collection DOAJ
description Introduction: Different vesicles are created by the cells into extra-cellular space, of which researchers mostly considered exosomes. In fact, the vesicles are secreted by each cell type and are found in the body fluids like urine, blood and breast milk and consist of a certain ingredient of proteins, RNA, lipids and DNA. Objectives: The present study attempted to examine the exosomes derived from tubular cells of the rabbit kidney. Materials and Methods: Exosomes have been derived from rabbit kidney tubular cell line (RK13Cs) supernatant by ultracentrifugation centrifugation treatment techniques. In the next stage, RK13Cs-Exo has been validated by the dimension, morphology and certain bio-markers through the transmission electron microscopy (TEM) and scanning electron microscopy (SEM), Zetasizer nano-analysis, atomic force microscopy (AFM) and western blotting. Results: The morphology of RK13Cs-Exo under TEM and SEM revealed that they have been vesicles shaped like a sphere ~150 nm. Zetasizer nano also indicated that RK13Cs-Exo size has been nearly 50 to 100 nm. Atomic force microscopy image of RK13Cs-Exo showed distinct spherical particles in size range between 50 and 100 nm, corresponding to the TEM. According to the western blotting outputs, exosome markers CD63 and CD9 have been expressed in the RK13Cs-Exo. Conclusion: Tubular cells of the rabbit kidney synthesize large amounts of exosomes under critical environmental conditions, which can extract the produced exosomes. According to the characterization of derived exosomes, they are ideal vehicles for drug delivery.
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spelling doaj.art-25b8dd087a32455489a40eb0bbdd22a32022-12-22T02:34:27ZengSociety of Diabetic Nephropathy PreventionJournal of Preventive Epidemiology2476-39342022-07-0172e26161e2616110.34172/jpe.2022.26161jpe-26161Isolation and characterization of exosomes derived from supernatant of rabbit kidney tubular cells cultureFereshtesadat Fakhredini0Esrafil Mansouri1Mahmoud Orazizadeh2Department of Anatomy Sciences, Cellular and Molecular Research Center, Faculty of Medicine, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, IranDepartment of Anatomy Sciences, Cellular and Molecular Research Center, Faculty of Medicine, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, IranDepartment of Anatomy Sciences, Cellular and Molecular Research Center, Faculty of Medicine, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, IranIntroduction: Different vesicles are created by the cells into extra-cellular space, of which researchers mostly considered exosomes. In fact, the vesicles are secreted by each cell type and are found in the body fluids like urine, blood and breast milk and consist of a certain ingredient of proteins, RNA, lipids and DNA. Objectives: The present study attempted to examine the exosomes derived from tubular cells of the rabbit kidney. Materials and Methods: Exosomes have been derived from rabbit kidney tubular cell line (RK13Cs) supernatant by ultracentrifugation centrifugation treatment techniques. In the next stage, RK13Cs-Exo has been validated by the dimension, morphology and certain bio-markers through the transmission electron microscopy (TEM) and scanning electron microscopy (SEM), Zetasizer nano-analysis, atomic force microscopy (AFM) and western blotting. Results: The morphology of RK13Cs-Exo under TEM and SEM revealed that they have been vesicles shaped like a sphere ~150 nm. Zetasizer nano also indicated that RK13Cs-Exo size has been nearly 50 to 100 nm. Atomic force microscopy image of RK13Cs-Exo showed distinct spherical particles in size range between 50 and 100 nm, corresponding to the TEM. According to the western blotting outputs, exosome markers CD63 and CD9 have been expressed in the RK13Cs-Exo. Conclusion: Tubular cells of the rabbit kidney synthesize large amounts of exosomes under critical environmental conditions, which can extract the produced exosomes. According to the characterization of derived exosomes, they are ideal vehicles for drug delivery.https://jprevepi.com/PDF/jpe-7-e26161.pdfkidney tubular cellsexosometemwestern blot
spellingShingle Fereshtesadat Fakhredini
Esrafil Mansouri
Mahmoud Orazizadeh
Isolation and characterization of exosomes derived from supernatant of rabbit kidney tubular cells culture
Journal of Preventive Epidemiology
kidney tubular cells
exosome
tem
western blot
title Isolation and characterization of exosomes derived from supernatant of rabbit kidney tubular cells culture
title_full Isolation and characterization of exosomes derived from supernatant of rabbit kidney tubular cells culture
title_fullStr Isolation and characterization of exosomes derived from supernatant of rabbit kidney tubular cells culture
title_full_unstemmed Isolation and characterization of exosomes derived from supernatant of rabbit kidney tubular cells culture
title_short Isolation and characterization of exosomes derived from supernatant of rabbit kidney tubular cells culture
title_sort isolation and characterization of exosomes derived from supernatant of rabbit kidney tubular cells culture
topic kidney tubular cells
exosome
tem
western blot
url https://jprevepi.com/PDF/jpe-7-e26161.pdf
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