研究目的
Investigating the therapeutic effects of photoluminescent functionalized carbon quantum dots loaded electroactive Silk fibroin/PLA nanofibrous bioactive scaffolds on cardiac tissue engineering and nursing care application.
研究成果
The study successfully developed CQD loaded SF/PLA nanofibrous bioactive scaffolds with improved mechanical properties and biocompatibility for cardiac tissue engineering. The scaffolds supported cardiomyocyte proliferation and enhanced the expression of cardiac marker genes, suggesting their potential for cardiac tissue engineering and nursing care applications.
研究不足
The study did not explore the long-term effects of the scaffolds in vivo or the potential immune response they might elicit. Additionally, the scalability of the scaffold fabrication process and its cost-effectiveness for clinical applications were not addressed.
1:Experimental Design and Method Selection:
The study involved the fabrication of electroactive CQD integrated Silk fibroin/PLA nanofibrous bioactive scaffolds using an electrochemical method for CQD synthesis and electrospinning for scaffold fabrication.
2:Sample Selection and Data Sources:
Rat cardiomyocytes were used to evaluate the scaffolds' biocompatibility and effectiveness in cardiac tissue engineering.
3:List of Experimental Equipment and Materials:
Included Shimadzu FTIR spectroscopic, Photoluminescence spectroscopic methods, JSM 6460 LA JEOL SEM, Philips CM100 TEM micrograph techniques, Malvern Zetasizer DLS, and atomic force microscopy (AFM).
4:Experimental Procedures and Operational Workflow:
The scaffolds were fabricated by electrospinning, characterized for their physical and chemical properties, and then tested for cell viability and gene expression.
5:Data Analysis Methods:
The data were analyzed using Statistical Package for Social Sciences (SPSS-version 17.0) statistical software and Graph Pad Prism 5.
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JSM 6460 LA JEOL SEM
JSM 6460 LA
JEOL
Used to study the exterior morphological surface and microporous behaviors of CQD loaded SF/PLA nanofibrous bioactive scaffolds.
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Malvern Zetasizer DLS
Zetasizer
Malvern
Used to examine the element size allocation of CQD nanoparticles.
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7500 Fast Real Time PCR system
7500 Fast
Applied Biosystems
Used for real-time PCR process.
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Shimadzu FTIR spectroscopic
Shimadzu
Used to evaluate the photoactive and surface interaction of CQD onto the natural polymers.
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Photoluminescence spectroscopic
Used to evaluate the photoactive and surface interaction of CQD onto the natural polymers.
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Philips CM100 TEM
CM100
Philips
Used to study the exterior morphological surface and microporous behaviors of CQD loaded SF/PLA nanofibrous bioactive scaffolds.
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Atomic force microscopy
Used to measure the young's modulus of CQD nanofibrous bioactive scaffolds assembles.
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High Resistance / Low Conductance Meter
HRLC
AlphaLab
Used to investigate the electrical assets of the scaffolds.
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biokit, ELx800 READER
ELx800
biokit
Used to calculate the amount of absorbance of the formazan.
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