Cargando…

The Performance of Nonwoven PLLA Scaffolds of Different Thickness for Stem Cells Seeding and Implantation

The 3D reconstruction of 100 μm- and 600 μm-thick fibrous poly-L/L-lactide scaffolds was performed by confocal laser scanning microscopy and supported by scanning electron microscopy and showed that the density of the fibers on the side adjacent to the electrode is higher, which can affect cell diff...

Descripción completa

Detalles Bibliográficos
Autores principales: Tenchurin, Timur Kh., Rodina, Alla V., Saprykin, Vladimir P., Gorshkova, Lada V., Mikhutkin, Alexey A., Kamyshinsky, Roman A., Yakovlev, Dmitry S., Vasiliev, Alexander L., Chvalun, Sergey N., Grigoriev, Timofey E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9610477/
https://www.ncbi.nlm.nih.gov/pubmed/36297930
http://dx.doi.org/10.3390/polym14204352
_version_ 1784819278989492224
author Tenchurin, Timur Kh.
Rodina, Alla V.
Saprykin, Vladimir P.
Gorshkova, Lada V.
Mikhutkin, Alexey A.
Kamyshinsky, Roman A.
Yakovlev, Dmitry S.
Vasiliev, Alexander L.
Chvalun, Sergey N.
Grigoriev, Timofey E.
author_facet Tenchurin, Timur Kh.
Rodina, Alla V.
Saprykin, Vladimir P.
Gorshkova, Lada V.
Mikhutkin, Alexey A.
Kamyshinsky, Roman A.
Yakovlev, Dmitry S.
Vasiliev, Alexander L.
Chvalun, Sergey N.
Grigoriev, Timofey E.
author_sort Tenchurin, Timur Kh.
collection PubMed
description The 3D reconstruction of 100 μm- and 600 μm-thick fibrous poly-L/L-lactide scaffolds was performed by confocal laser scanning microscopy and supported by scanning electron microscopy and showed that the density of the fibers on the side adjacent to the electrode is higher, which can affect cell diffusion, while the pore size is generally the same. Bone marrow mesenchymal stem cells cultured in a 600 μm-thick scaffold formed colonies and produced conditions for cell differentiation. An in vitro study of stem cells after 7 days revealed that cell proliferation and hepatocyte growth factor release in the 600 μm-thick scaffold were higher than in the 100 μm-thick scaffold. An in vivo study of scaffolds with and without stem cells implanted subcutaneously onto the backs of recipient mice was carried out to test their biodegradation and biocompatibility over a 0–3-week period. The cells seeded onto the 600 μm-thick scaffold promoted significant neovascularization in vivo. After 3 weeks, a significant number of donor cells persisted only on the inside of the 600 μm-thick scaffold. Thus, the use of bulkier matrices allows to prolong the effect of secretion of growth factors by stem cells during implantation. These 600 μm-thick scaffolds could potentially be utilized to repair and regenerate injuries with stem cell co-culture for vascularization of implant.
format Online
Article
Text
id pubmed-9610477
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96104772022-10-28 The Performance of Nonwoven PLLA Scaffolds of Different Thickness for Stem Cells Seeding and Implantation Tenchurin, Timur Kh. Rodina, Alla V. Saprykin, Vladimir P. Gorshkova, Lada V. Mikhutkin, Alexey A. Kamyshinsky, Roman A. Yakovlev, Dmitry S. Vasiliev, Alexander L. Chvalun, Sergey N. Grigoriev, Timofey E. Polymers (Basel) Article The 3D reconstruction of 100 μm- and 600 μm-thick fibrous poly-L/L-lactide scaffolds was performed by confocal laser scanning microscopy and supported by scanning electron microscopy and showed that the density of the fibers on the side adjacent to the electrode is higher, which can affect cell diffusion, while the pore size is generally the same. Bone marrow mesenchymal stem cells cultured in a 600 μm-thick scaffold formed colonies and produced conditions for cell differentiation. An in vitro study of stem cells after 7 days revealed that cell proliferation and hepatocyte growth factor release in the 600 μm-thick scaffold were higher than in the 100 μm-thick scaffold. An in vivo study of scaffolds with and without stem cells implanted subcutaneously onto the backs of recipient mice was carried out to test their biodegradation and biocompatibility over a 0–3-week period. The cells seeded onto the 600 μm-thick scaffold promoted significant neovascularization in vivo. After 3 weeks, a significant number of donor cells persisted only on the inside of the 600 μm-thick scaffold. Thus, the use of bulkier matrices allows to prolong the effect of secretion of growth factors by stem cells during implantation. These 600 μm-thick scaffolds could potentially be utilized to repair and regenerate injuries with stem cell co-culture for vascularization of implant. MDPI 2022-10-15 /pmc/articles/PMC9610477/ /pubmed/36297930 http://dx.doi.org/10.3390/polym14204352 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
Tenchurin, Timur Kh.
Rodina, Alla V.
Saprykin, Vladimir P.
Gorshkova, Lada V.
Mikhutkin, Alexey A.
Kamyshinsky, Roman A.
Yakovlev, Dmitry S.
Vasiliev, Alexander L.
Chvalun, Sergey N.
Grigoriev, Timofey E.
The Performance of Nonwoven PLLA Scaffolds of Different Thickness for Stem Cells Seeding and Implantation
title The Performance of Nonwoven PLLA Scaffolds of Different Thickness for Stem Cells Seeding and Implantation
title_full The Performance of Nonwoven PLLA Scaffolds of Different Thickness for Stem Cells Seeding and Implantation
title_fullStr The Performance of Nonwoven PLLA Scaffolds of Different Thickness for Stem Cells Seeding and Implantation
title_full_unstemmed The Performance of Nonwoven PLLA Scaffolds of Different Thickness for Stem Cells Seeding and Implantation
title_short The Performance of Nonwoven PLLA Scaffolds of Different Thickness for Stem Cells Seeding and Implantation
title_sort performance of nonwoven plla scaffolds of different thickness for stem cells seeding and implantation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9610477/
https://www.ncbi.nlm.nih.gov/pubmed/36297930
http://dx.doi.org/10.3390/polym14204352
work_keys_str_mv AT tenchurintimurkh theperformanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT rodinaallav theperformanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT saprykinvladimirp theperformanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT gorshkovaladav theperformanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT mikhutkinalexeya theperformanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT kamyshinskyromana theperformanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT yakovlevdmitrys theperformanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT vasilievalexanderl theperformanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT chvalunsergeyn theperformanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT grigorievtimofeye theperformanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT tenchurintimurkh performanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT rodinaallav performanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT saprykinvladimirp performanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT gorshkovaladav performanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT mikhutkinalexeya performanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT kamyshinskyromana performanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT yakovlevdmitrys performanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT vasilievalexanderl performanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT chvalunsergeyn performanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation
AT grigorievtimofeye performanceofnonwovenpllascaffoldsofdifferentthicknessforstemcellsseedingandimplantation