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The Antioxidant Supplementation with Filipendula ulmaria Extract Attenuates the Systemic Adverse Effects of Nanosized Calcium Phosphates in Rats

The aim of this study was to investigate and compare the systemic toxicity of three nanosized calcium phosphates (CaPs): hydroxyapatite (HA), tricalcium phosphate (TCP), and amorphous calcium phosphate (ACP) in rats. Since those metallic compounds are widely used as bone replacement materials, inclu...

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Autores principales: Scepanovic, Radomir, Selakovic, Dragica, Katanic Stankovic, Jelena S., Arsenijevic, Natalija, Andjelkovic, Marija, Milenkovic, Jovana, Milanovic, Pavle, Vasovic, Miroslav, Jovicic, Nemanja, Rosic, Gvozden
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8384520/
https://www.ncbi.nlm.nih.gov/pubmed/34447488
http://dx.doi.org/10.1155/2021/8207283
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author Scepanovic, Radomir
Selakovic, Dragica
Katanic Stankovic, Jelena S.
Arsenijevic, Natalija
Andjelkovic, Marija
Milenkovic, Jovana
Milanovic, Pavle
Vasovic, Miroslav
Jovicic, Nemanja
Rosic, Gvozden
author_facet Scepanovic, Radomir
Selakovic, Dragica
Katanic Stankovic, Jelena S.
Arsenijevic, Natalija
Andjelkovic, Marija
Milenkovic, Jovana
Milanovic, Pavle
Vasovic, Miroslav
Jovicic, Nemanja
Rosic, Gvozden
author_sort Scepanovic, Radomir
collection PubMed
description The aim of this study was to investigate and compare the systemic toxicity of three nanosized calcium phosphates (CaPs): hydroxyapatite (HA), tricalcium phosphate (TCP), and amorphous calcium phosphate (ACP) in rats. Since those metallic compounds are widely used as bone replacement materials, including their use in oral surgery, CaPs were applied (per os) equimollary (17.8 mg/kg, 11 mg/kg, and 9.65 mg/kg b.w., respectively) for 30 days in order to mimic the previously described release rate from dental composites. Also, we employed antioxidant supplementation with Filipendula ulmaria (FU) extract. All the applied CaPs significantly increased serum calcium, triglycerides, LDL, and LDH, while serum levels of testosterone and LH declined, with no alterations in the liver enzymes. The evaluation of oxidative stress markers (in the liver, kidney, and testicle) showed an increase in TBARS values, while SOD and CAT activities and GSH levels were significantly reduced. The relative gene expression of Bax and Bcl-2 was shifted to proapoptotic action, accompanied by intense characteristic histological changes in architecture in all investigated organs. The toxic effects were most prominent in groups treated by ACP. FU administration attenuated the majority of nanosized CaP-induced adverse effects, thus recommending this therapeutic approach to minimize nano-CaP systemic toxicities.
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spelling pubmed-83845202021-08-25 The Antioxidant Supplementation with Filipendula ulmaria Extract Attenuates the Systemic Adverse Effects of Nanosized Calcium Phosphates in Rats Scepanovic, Radomir Selakovic, Dragica Katanic Stankovic, Jelena S. Arsenijevic, Natalija Andjelkovic, Marija Milenkovic, Jovana Milanovic, Pavle Vasovic, Miroslav Jovicic, Nemanja Rosic, Gvozden Oxid Med Cell Longev Research Article The aim of this study was to investigate and compare the systemic toxicity of three nanosized calcium phosphates (CaPs): hydroxyapatite (HA), tricalcium phosphate (TCP), and amorphous calcium phosphate (ACP) in rats. Since those metallic compounds are widely used as bone replacement materials, including their use in oral surgery, CaPs were applied (per os) equimollary (17.8 mg/kg, 11 mg/kg, and 9.65 mg/kg b.w., respectively) for 30 days in order to mimic the previously described release rate from dental composites. Also, we employed antioxidant supplementation with Filipendula ulmaria (FU) extract. All the applied CaPs significantly increased serum calcium, triglycerides, LDL, and LDH, while serum levels of testosterone and LH declined, with no alterations in the liver enzymes. The evaluation of oxidative stress markers (in the liver, kidney, and testicle) showed an increase in TBARS values, while SOD and CAT activities and GSH levels were significantly reduced. The relative gene expression of Bax and Bcl-2 was shifted to proapoptotic action, accompanied by intense characteristic histological changes in architecture in all investigated organs. The toxic effects were most prominent in groups treated by ACP. FU administration attenuated the majority of nanosized CaP-induced adverse effects, thus recommending this therapeutic approach to minimize nano-CaP systemic toxicities. Hindawi 2021-08-17 /pmc/articles/PMC8384520/ /pubmed/34447488 http://dx.doi.org/10.1155/2021/8207283 Text en Copyright © 2021 Radomir Scepanovic et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Scepanovic, Radomir
Selakovic, Dragica
Katanic Stankovic, Jelena S.
Arsenijevic, Natalija
Andjelkovic, Marija
Milenkovic, Jovana
Milanovic, Pavle
Vasovic, Miroslav
Jovicic, Nemanja
Rosic, Gvozden
The Antioxidant Supplementation with Filipendula ulmaria Extract Attenuates the Systemic Adverse Effects of Nanosized Calcium Phosphates in Rats
title The Antioxidant Supplementation with Filipendula ulmaria Extract Attenuates the Systemic Adverse Effects of Nanosized Calcium Phosphates in Rats
title_full The Antioxidant Supplementation with Filipendula ulmaria Extract Attenuates the Systemic Adverse Effects of Nanosized Calcium Phosphates in Rats
title_fullStr The Antioxidant Supplementation with Filipendula ulmaria Extract Attenuates the Systemic Adverse Effects of Nanosized Calcium Phosphates in Rats
title_full_unstemmed The Antioxidant Supplementation with Filipendula ulmaria Extract Attenuates the Systemic Adverse Effects of Nanosized Calcium Phosphates in Rats
title_short The Antioxidant Supplementation with Filipendula ulmaria Extract Attenuates the Systemic Adverse Effects of Nanosized Calcium Phosphates in Rats
title_sort antioxidant supplementation with filipendula ulmaria extract attenuates the systemic adverse effects of nanosized calcium phosphates in rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8384520/
https://www.ncbi.nlm.nih.gov/pubmed/34447488
http://dx.doi.org/10.1155/2021/8207283
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