研究目的
Investigating the immobilization of functional polymers on poly(4-benzoyl-pxylylene-co-p-xylylene) films via photochemical conjugation for modulation of cell adhesion.
研究成果
The study demonstrates that Benzoyl-PPX is an effective photoreactive platform for the conjugation of functional polymers like PEG and PNIPAAm, enabling modulation of cell adhesion and detachment. PEG films with specific thickness and hydrophilicity can effectively inhibit cell attachment, while PNIPAAm films allow for temperature-responsive cell sheet detachment.
研究不足
The study highlights the need for further optimization of PNIPAAm deposition conditions to improve the detachment efficiency of cell sheets.
1:Experimental Design and Method Selection:
The study involved the conjugation of PEG and PNIPAAm onto Benzoyl-PPX films via UV illumination to investigate their effects on protein adsorption and cell adhesion.
2:Sample Selection and Data Sources:
L929 fibroblasts and C2C12 skeletal muscle cells were used to evaluate cell adhesion and detachment.
3:List of Experimental Equipment and Materials:
Included PEG of various molecular weights, PNIPAAm, [2,2]paracyclophane, and equipment like QCM devices, FTIR, and XPS.
4:Experimental Procedures and Operational Workflow:
Detailed steps included UV illumination for polymer conjugation, surface characterization, and cell culture experiments.
5:Data Analysis Methods:
Protein adsorption was quantified using QCM, and cell adhesion was evaluated through microscopic imaging and counting.
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PEG
200, 2000, and 20,000 Da
Sigma-Aldrich
Reduction of protein adsorption and cell attachment
-
FTIR
Spectrum 100
PerkinElmer
Surface quantitative analysis
-
XPS
Theta Probe
Thermo Scientific
Surface quantitative analysis
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PNIPAAm
40,000 Da
Polyscience Inc.
Thermal-responsive modulation of cell attachment
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[2,2]paracyclophane
Jiangsu Miaoqiao Synthesis Chemical Co., Ltd.
Substrate for polymer conjugation
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Aluminum chloride
Alfa Aesar
-
Benzoyl chloride
99%
Alfa Aesar
-
QCM devices
ANT Technologies Co.
Determination of protein adsorption
-
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