Cargando…

Fluro-Protein C-Phycocyanin Docked Silver Nanocomposite Accelerates Cell Migration through NFĸB Signaling Pathway

Currently, there is a great demand for the development of nanomedicine aided wound tissue regeneration via silver doped nanoceuticals. Unfortunately, very little research is being carried out on antioxidants-doped silver nanometals and their interaction on the signaling axis during the bio-interface...

Descripción completa

Detalles Bibliográficos
Autores principales: Madhyastha, Harishkumar, Madhyastha, Radha, Chakraborty, Eshika, Banerjee, Kaushita, Shah, Kamal, Nakajima, Yuichi, Chauhan, Nagendra Singh, Sudhakaran, Sajitha Lulu, Ohe, Kaoru, Muthukaliannan, Gothandam Kodiveri, Gopalakrishnan, Abilash Valsala, Maruyama, Masugi, Watanabe, Nozomi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9962756/
https://www.ncbi.nlm.nih.gov/pubmed/36834597
http://dx.doi.org/10.3390/ijms24043184
_version_ 1784896084713144320
author Madhyastha, Harishkumar
Madhyastha, Radha
Chakraborty, Eshika
Banerjee, Kaushita
Shah, Kamal
Nakajima, Yuichi
Chauhan, Nagendra Singh
Sudhakaran, Sajitha Lulu
Ohe, Kaoru
Muthukaliannan, Gothandam Kodiveri
Gopalakrishnan, Abilash Valsala
Maruyama, Masugi
Watanabe, Nozomi
author_facet Madhyastha, Harishkumar
Madhyastha, Radha
Chakraborty, Eshika
Banerjee, Kaushita
Shah, Kamal
Nakajima, Yuichi
Chauhan, Nagendra Singh
Sudhakaran, Sajitha Lulu
Ohe, Kaoru
Muthukaliannan, Gothandam Kodiveri
Gopalakrishnan, Abilash Valsala
Maruyama, Masugi
Watanabe, Nozomi
author_sort Madhyastha, Harishkumar
collection PubMed
description Currently, there is a great demand for the development of nanomedicine aided wound tissue regeneration via silver doped nanoceuticals. Unfortunately, very little research is being carried out on antioxidants-doped silver nanometals and their interaction on the signaling axis during the bio-interface mechanism. In this study, c-phycocyanin primed silver nano hybrids (AgcPCNP) were prepared and analyzed for properties such as cytotoxicity, metal decay, nanoconjugate stability, size expansion, and antioxidant features. Fluctuations in the expression of marker genes during cell migration phenomena in in vitro wound healing scenarios were also validated. Studies revealed that physiologically relevant ionic solutions did not exhibit any adverse effects on the nanoconjugate stability. However, acidic, alkali, and ethanol solutions completely denatured the AgcPCNP conjugates. Signal transduction RT(2)PCR array demonstrated that genes associated with NFĸB- and PI3K-pathways were significantly (p < 0.5%) altered between AgcPCNP and AgNP groups. Specific inhibitors of NFĸB (Nfi) and PI3K (LY294002) pathways confirmed the involvement of NFĸB signaling axes. In vitro wound healing assay demonstrated that NFĸB pathway plays a prime role in the fibroblast cell migration. In conclusion, the present investigation revealed that surface functionalized AgcPCNP accelerated the fibroblast cell migration and can be further explored for wound healing biomedical applications.
format Online
Article
Text
id pubmed-9962756
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99627562023-02-26 Fluro-Protein C-Phycocyanin Docked Silver Nanocomposite Accelerates Cell Migration through NFĸB Signaling Pathway Madhyastha, Harishkumar Madhyastha, Radha Chakraborty, Eshika Banerjee, Kaushita Shah, Kamal Nakajima, Yuichi Chauhan, Nagendra Singh Sudhakaran, Sajitha Lulu Ohe, Kaoru Muthukaliannan, Gothandam Kodiveri Gopalakrishnan, Abilash Valsala Maruyama, Masugi Watanabe, Nozomi Int J Mol Sci Article Currently, there is a great demand for the development of nanomedicine aided wound tissue regeneration via silver doped nanoceuticals. Unfortunately, very little research is being carried out on antioxidants-doped silver nanometals and their interaction on the signaling axis during the bio-interface mechanism. In this study, c-phycocyanin primed silver nano hybrids (AgcPCNP) were prepared and analyzed for properties such as cytotoxicity, metal decay, nanoconjugate stability, size expansion, and antioxidant features. Fluctuations in the expression of marker genes during cell migration phenomena in in vitro wound healing scenarios were also validated. Studies revealed that physiologically relevant ionic solutions did not exhibit any adverse effects on the nanoconjugate stability. However, acidic, alkali, and ethanol solutions completely denatured the AgcPCNP conjugates. Signal transduction RT(2)PCR array demonstrated that genes associated with NFĸB- and PI3K-pathways were significantly (p < 0.5%) altered between AgcPCNP and AgNP groups. Specific inhibitors of NFĸB (Nfi) and PI3K (LY294002) pathways confirmed the involvement of NFĸB signaling axes. In vitro wound healing assay demonstrated that NFĸB pathway plays a prime role in the fibroblast cell migration. In conclusion, the present investigation revealed that surface functionalized AgcPCNP accelerated the fibroblast cell migration and can be further explored for wound healing biomedical applications. MDPI 2023-02-06 /pmc/articles/PMC9962756/ /pubmed/36834597 http://dx.doi.org/10.3390/ijms24043184 Text en © 2023 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
Madhyastha, Harishkumar
Madhyastha, Radha
Chakraborty, Eshika
Banerjee, Kaushita
Shah, Kamal
Nakajima, Yuichi
Chauhan, Nagendra Singh
Sudhakaran, Sajitha Lulu
Ohe, Kaoru
Muthukaliannan, Gothandam Kodiveri
Gopalakrishnan, Abilash Valsala
Maruyama, Masugi
Watanabe, Nozomi
Fluro-Protein C-Phycocyanin Docked Silver Nanocomposite Accelerates Cell Migration through NFĸB Signaling Pathway
title Fluro-Protein C-Phycocyanin Docked Silver Nanocomposite Accelerates Cell Migration through NFĸB Signaling Pathway
title_full Fluro-Protein C-Phycocyanin Docked Silver Nanocomposite Accelerates Cell Migration through NFĸB Signaling Pathway
title_fullStr Fluro-Protein C-Phycocyanin Docked Silver Nanocomposite Accelerates Cell Migration through NFĸB Signaling Pathway
title_full_unstemmed Fluro-Protein C-Phycocyanin Docked Silver Nanocomposite Accelerates Cell Migration through NFĸB Signaling Pathway
title_short Fluro-Protein C-Phycocyanin Docked Silver Nanocomposite Accelerates Cell Migration through NFĸB Signaling Pathway
title_sort fluro-protein c-phycocyanin docked silver nanocomposite accelerates cell migration through nfĸb signaling pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9962756/
https://www.ncbi.nlm.nih.gov/pubmed/36834597
http://dx.doi.org/10.3390/ijms24043184
work_keys_str_mv AT madhyasthaharishkumar fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT madhyastharadha fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT chakrabortyeshika fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT banerjeekaushita fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT shahkamal fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT nakajimayuichi fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT chauhannagendrasingh fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT sudhakaransajithalulu fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT ohekaoru fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT muthukaliannangothandamkodiveri fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT gopalakrishnanabilashvalsala fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT maruyamamasugi fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway
AT watanabenozomi fluroproteincphycocyanindockedsilvernanocompositeacceleratescellmigrationthroughnfĸbsignalingpathway