Enhanced proliferation of rabbit chondrocytes by using a well circulated nanoshock system

Abstract The gold nanorods (GNRs) embedded alginate-chitosan (scaffold), which was designed and fabricated to produce efficient handling of the cell proliferations. Scaffold embedded GNR (SGNR) and NIR (near infrared) irradiations are developing into an interesting medical prognosis tool for rabbit...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Sitansu Sekhar Nanda, Tuntun Wang, Hong Yeol Yoon, Seong Soo A. An, K. P. S. S. Hembram, Kwangmeyung Kim, Dong Kee Yi
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
Materias:
R
Q
Acceso en línea:https://doaj.org/article/a4700e8691d04122b1c83b6141fa3598
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:a4700e8691d04122b1c83b6141fa3598
record_format dspace
spelling oai:doaj.org-article:a4700e8691d04122b1c83b6141fa35982021-12-02T17:17:39ZEnhanced proliferation of rabbit chondrocytes by using a well circulated nanoshock system10.1038/s41598-021-98929-22045-2322https://doaj.org/article/a4700e8691d04122b1c83b6141fa35982021-09-01T00:00:00Zhttps://doi.org/10.1038/s41598-021-98929-2https://doaj.org/toc/2045-2322Abstract The gold nanorods (GNRs) embedded alginate-chitosan (scaffold), which was designed and fabricated to produce efficient handling of the cell proliferations. Scaffold embedded GNR (SGNR) and NIR (near infrared) irradiations are developing into an interesting medical prognosis tool for rabbit chondrocyte (RC) proliferation. SGNR contained a pattern of uniform pores. Biocompatibility and cellular proliferation achieved by disclosures to NIR irradiations, providing high cell survival. SGNR and NIR irradiations could produce mechanical and biochemical cues for regulating RCs proliferations. To determine the thermal stress, it exposed RCs to 39–42 °C for 0–240 min at the start point of the cell culture cycle. It produced photothermal stress in cellular surrounding (cells located adjacent to and within scaffold) and it deals with the proliferation behavior of RC. All the processes were modeled with experimental criteria and time evolution process. Our system could help the cell proliferation by generating heat for cells. Hence, the present strategy could be implemented for supporting cell therapeutics after transplantation. This implementation would open new design techniques for integrating the interfaces between NIR irradiated and non-irradiated tissues.Sitansu Sekhar NandaTuntun WangHong Yeol YoonSeong Soo A. AnK. P. S. S. HembramKwangmeyung KimDong Kee YiNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Sitansu Sekhar Nanda
Tuntun Wang
Hong Yeol Yoon
Seong Soo A. An
K. P. S. S. Hembram
Kwangmeyung Kim
Dong Kee Yi
Enhanced proliferation of rabbit chondrocytes by using a well circulated nanoshock system
description Abstract The gold nanorods (GNRs) embedded alginate-chitosan (scaffold), which was designed and fabricated to produce efficient handling of the cell proliferations. Scaffold embedded GNR (SGNR) and NIR (near infrared) irradiations are developing into an interesting medical prognosis tool for rabbit chondrocyte (RC) proliferation. SGNR contained a pattern of uniform pores. Biocompatibility and cellular proliferation achieved by disclosures to NIR irradiations, providing high cell survival. SGNR and NIR irradiations could produce mechanical and biochemical cues for regulating RCs proliferations. To determine the thermal stress, it exposed RCs to 39–42 °C for 0–240 min at the start point of the cell culture cycle. It produced photothermal stress in cellular surrounding (cells located adjacent to and within scaffold) and it deals with the proliferation behavior of RC. All the processes were modeled with experimental criteria and time evolution process. Our system could help the cell proliferation by generating heat for cells. Hence, the present strategy could be implemented for supporting cell therapeutics after transplantation. This implementation would open new design techniques for integrating the interfaces between NIR irradiated and non-irradiated tissues.
format article
author Sitansu Sekhar Nanda
Tuntun Wang
Hong Yeol Yoon
Seong Soo A. An
K. P. S. S. Hembram
Kwangmeyung Kim
Dong Kee Yi
author_facet Sitansu Sekhar Nanda
Tuntun Wang
Hong Yeol Yoon
Seong Soo A. An
K. P. S. S. Hembram
Kwangmeyung Kim
Dong Kee Yi
author_sort Sitansu Sekhar Nanda
title Enhanced proliferation of rabbit chondrocytes by using a well circulated nanoshock system
title_short Enhanced proliferation of rabbit chondrocytes by using a well circulated nanoshock system
title_full Enhanced proliferation of rabbit chondrocytes by using a well circulated nanoshock system
title_fullStr Enhanced proliferation of rabbit chondrocytes by using a well circulated nanoshock system
title_full_unstemmed Enhanced proliferation of rabbit chondrocytes by using a well circulated nanoshock system
title_sort enhanced proliferation of rabbit chondrocytes by using a well circulated nanoshock system
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/a4700e8691d04122b1c83b6141fa3598
work_keys_str_mv AT sitansusekharnanda enhancedproliferationofrabbitchondrocytesbyusingawellcirculatednanoshocksystem
AT tuntunwang enhancedproliferationofrabbitchondrocytesbyusingawellcirculatednanoshocksystem
AT hongyeolyoon enhancedproliferationofrabbitchondrocytesbyusingawellcirculatednanoshocksystem
AT seongsooaan enhancedproliferationofrabbitchondrocytesbyusingawellcirculatednanoshocksystem
AT kpsshembram enhancedproliferationofrabbitchondrocytesbyusingawellcirculatednanoshocksystem
AT kwangmeyungkim enhancedproliferationofrabbitchondrocytesbyusingawellcirculatednanoshocksystem
AT dongkeeyi enhancedproliferationofrabbitchondrocytesbyusingawellcirculatednanoshocksystem
_version_ 1718381161588195328