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Impact of Polyrhodanine Manganese Ferrite Binary Nanohybrids (PRHD@MnFe(2)O(4)) on Osteoblasts and Osteoclasts Activities—A Key Factor in Osteoporosis Treatment

Osteoporosis is characterized by the reduction of bone mineral density and the weakness of the bone strength leading to fractures. Searching for new compounds that stimulate bone activity and their ability to reconstruct seems to be a promising tool in osteoporosis treatment. Here, we performed anal...

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Autores principales: Marycz, Krzysztof, Kowalczuk, Anna, Turlej, Eliza, Zachanowicz, Emilia, Tomaszewska, Anna, Kulpa-Greszta, Magdalena, Kępska, Martyna, Steczkiewicz, Zofia, Pązik, Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181943/
https://www.ncbi.nlm.nih.gov/pubmed/35683288
http://dx.doi.org/10.3390/ma15113990
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author Marycz, Krzysztof
Kowalczuk, Anna
Turlej, Eliza
Zachanowicz, Emilia
Tomaszewska, Anna
Kulpa-Greszta, Magdalena
Kępska, Martyna
Steczkiewicz, Zofia
Pązik, Robert
author_facet Marycz, Krzysztof
Kowalczuk, Anna
Turlej, Eliza
Zachanowicz, Emilia
Tomaszewska, Anna
Kulpa-Greszta, Magdalena
Kępska, Martyna
Steczkiewicz, Zofia
Pązik, Robert
author_sort Marycz, Krzysztof
collection PubMed
description Osteoporosis is characterized by the reduction of bone mineral density and the weakness of the bone strength leading to fractures. Searching for new compounds that stimulate bone activity and their ability to reconstruct seems to be a promising tool in osteoporosis treatment. Here, we performed analyses comparing the impact of polyrhodanine (PRHD) and its derivatives on the viability (anti-proliferative tests), morphology and mitochondrial network (confocal microscopy) towards pre-osteoblasts (MC3T3-E1 cell line) and osteoclasts (4B12 cell line). Moreover, we assessed the expression of genes associated with the apoptosis, inflammation and osteogenic differentiation by qPCR technique. Our results clearly demonstrated that PRHD and its modification at ratio 10/90 significantly improves the pre-osteoblast’s proliferative abilities, while reducing osteoclast function. The observed effects were strongly correlated with the cytoskeleton and mitochondrial network development and arrangement. Additionally, the expression profile of genes revealed enhanced apoptosis of osteoclasts in the case of PRHD and its modification at ratio 10/90. Moreover, in this case we also observed strong anti-inflammatory properties demonstrated by decreased expression of Il1b, Tnfa and Tgfb in pre-osteoblasts and osteoclasts. On the other hand, enhanced expression of the markers associated with bone remodeling, namely, osteopontin (OPN), osteocalcin (OCL) and alkaline phosphatase (ALP), seem to confirm the role of PRHD@MnFe(2)O(4) in the promotion of differentiation of pre-osteoblasts through the ALP-OPN-OCL axis. Based on these observations, PRHD@MnFe(2)O(4) could be a potential agent in osteoporosis treatment in future, however, further studies are still required.
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spelling pubmed-91819432022-06-10 Impact of Polyrhodanine Manganese Ferrite Binary Nanohybrids (PRHD@MnFe(2)O(4)) on Osteoblasts and Osteoclasts Activities—A Key Factor in Osteoporosis Treatment Marycz, Krzysztof Kowalczuk, Anna Turlej, Eliza Zachanowicz, Emilia Tomaszewska, Anna Kulpa-Greszta, Magdalena Kępska, Martyna Steczkiewicz, Zofia Pązik, Robert Materials (Basel) Article Osteoporosis is characterized by the reduction of bone mineral density and the weakness of the bone strength leading to fractures. Searching for new compounds that stimulate bone activity and their ability to reconstruct seems to be a promising tool in osteoporosis treatment. Here, we performed analyses comparing the impact of polyrhodanine (PRHD) and its derivatives on the viability (anti-proliferative tests), morphology and mitochondrial network (confocal microscopy) towards pre-osteoblasts (MC3T3-E1 cell line) and osteoclasts (4B12 cell line). Moreover, we assessed the expression of genes associated with the apoptosis, inflammation and osteogenic differentiation by qPCR technique. Our results clearly demonstrated that PRHD and its modification at ratio 10/90 significantly improves the pre-osteoblast’s proliferative abilities, while reducing osteoclast function. The observed effects were strongly correlated with the cytoskeleton and mitochondrial network development and arrangement. Additionally, the expression profile of genes revealed enhanced apoptosis of osteoclasts in the case of PRHD and its modification at ratio 10/90. Moreover, in this case we also observed strong anti-inflammatory properties demonstrated by decreased expression of Il1b, Tnfa and Tgfb in pre-osteoblasts and osteoclasts. On the other hand, enhanced expression of the markers associated with bone remodeling, namely, osteopontin (OPN), osteocalcin (OCL) and alkaline phosphatase (ALP), seem to confirm the role of PRHD@MnFe(2)O(4) in the promotion of differentiation of pre-osteoblasts through the ALP-OPN-OCL axis. Based on these observations, PRHD@MnFe(2)O(4) could be a potential agent in osteoporosis treatment in future, however, further studies are still required. MDPI 2022-06-03 /pmc/articles/PMC9181943/ /pubmed/35683288 http://dx.doi.org/10.3390/ma15113990 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Marycz, Krzysztof
Kowalczuk, Anna
Turlej, Eliza
Zachanowicz, Emilia
Tomaszewska, Anna
Kulpa-Greszta, Magdalena
Kępska, Martyna
Steczkiewicz, Zofia
Pązik, Robert
Impact of Polyrhodanine Manganese Ferrite Binary Nanohybrids (PRHD@MnFe(2)O(4)) on Osteoblasts and Osteoclasts Activities—A Key Factor in Osteoporosis Treatment
title Impact of Polyrhodanine Manganese Ferrite Binary Nanohybrids (PRHD@MnFe(2)O(4)) on Osteoblasts and Osteoclasts Activities—A Key Factor in Osteoporosis Treatment
title_full Impact of Polyrhodanine Manganese Ferrite Binary Nanohybrids (PRHD@MnFe(2)O(4)) on Osteoblasts and Osteoclasts Activities—A Key Factor in Osteoporosis Treatment
title_fullStr Impact of Polyrhodanine Manganese Ferrite Binary Nanohybrids (PRHD@MnFe(2)O(4)) on Osteoblasts and Osteoclasts Activities—A Key Factor in Osteoporosis Treatment
title_full_unstemmed Impact of Polyrhodanine Manganese Ferrite Binary Nanohybrids (PRHD@MnFe(2)O(4)) on Osteoblasts and Osteoclasts Activities—A Key Factor in Osteoporosis Treatment
title_short Impact of Polyrhodanine Manganese Ferrite Binary Nanohybrids (PRHD@MnFe(2)O(4)) on Osteoblasts and Osteoclasts Activities—A Key Factor in Osteoporosis Treatment
title_sort impact of polyrhodanine manganese ferrite binary nanohybrids (prhd@mnfe(2)o(4)) on osteoblasts and osteoclasts activities—a key factor in osteoporosis treatment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181943/
https://www.ncbi.nlm.nih.gov/pubmed/35683288
http://dx.doi.org/10.3390/ma15113990
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