| Literature DB >> 28243085 |
Cheng Zhong1, Jun Feng2, Xiangjin Lin1, Qi Bao3.
Abstract
Graphene oxide (Entities:
Keywords: BMP2; anti-inflammatory; controlled release; graphene oxide
Mesh:
Substances:
Year: 2017 PMID: 28243085 PMCID: PMC5315217 DOI: 10.2147/IJN.S124040
Source DB: PubMed Journal: Int J Nanomedicine ISSN: 1176-9114
Figure 1Characteristics of GO flakes.
Notes: (A) 2D representation of GO images as shown in AFM. GO flakes are of different sizes and are ~2 nm thick. (B) SEM analysis of GO flakes showing irregularly shaped sheets. (C) Size distribution of GO flakes, ranging from 81.1 nm to 45,749.7 nm. The most abundant size was 1,598.5 nm.
Abbreviations: AFM, atomic force microscopy; 2D, two-dimensional; GO, graphene oxide; SEM, scanning electron microscopy.
Figure 2BMP2 adsorbed onto GO flakes.
Notes: (A) BMP2-FITC and GO-DiL were observed by laser confocal microscopy (bar =1 mm). (B) FTIR spectroscopy showing the chemical ingredients involved in the interaction between GO and BMP2-GO. A peak value of 1,800 cm−1 showed that carboxyl (C=O) was involved in the process of adsorption. (C) Thermal gravimetric analysis shows no differences between various concentrations of BMP2 but significant differences with GO from 50°C to 200°C.
Abbreviations: AFM, atomic force microscopy; BMP2, bone morphogenetic protein 2; FITC, fluorescein isothiocyanate; FTIR, Fourier-transformed infrared spectroscopy; GO, graphene oxide; TGA, thermogravimetric analyzer; GO-DiL,Graphene oxide–1,1-dioctadecyl-3,3,3,3-tetramethylindocarbocyanine perchlorate.
Figure 3Cumulative release profiles of different BMP2 groups.
Notes: 20 µg/mL BMP2 release was apparently faster in reaching a 50% cumulative release compared to 10 µg/mL and 30 µg/mL BMP2. BMP2 was continuously released for at least 40 days. The inset image on the graph is the samples used in the cumulative release test on the constant 37°C.
Abbreviations: BMP2, bone morphogenetic protein 2; GO, graphene oxide.
Figure 4Cell proliferation, differentiation, and anti-inflammatory effect of GO.
Notes: (A) Cell morphology, cell cycle, and cell apoptosis of BMSCs and chondrocytes cultured in BMP2 show no significant differences from those of cells grown in BMP2-GO or GO (P>0.05; bar =100 µm). (B) Viability of BMSCs and chondrocytes cultured in BMP2 shows no significant differences from that of cells grown in BMP2-GO or GO (P>0.05). (C and D) After differentiation, PAS staining, ALP staining, and Giemsa staining of BMSCs showed that GO does not affect BMP2. (*P<0.05; bar =100 µm). (E) mRNA expression of BMSCs showed that GO improves cell differentiation. (*P<0.05, BMP2 compared with control and GO; #P<0.05, BMP2-GO compared with control and GO). (F) mRNA expression of chondrocytes showed that GO improves anti-inflammatory effect. (*P<0.05, BMP2 compared with control and GO; #P<0.05, BMP2-GO compared with control and GO). (G) Cell immunohistochemistry analysis of BMP2, GO, and BMP2-GO. Chondrocytes cultured in IL1 indicated that the protein expression levels of IRAK4, IKKα, IKKβ, and NF-κB decreased (bar =100 µm).
Abbreviations: BMSCs, bone marrow stem cells; BMP2, bone morphogenetic protein 2; GO, graphene oxide; IL, interleukin; CCK8, Cell Counting Kit-8; PSA, periodic acid-Schiff; ALP, alkaline phosphatase.
Figure 5Histological analyses in vivo experiment.
Notes: (A) The ACLT model. (B and C) Histological analyses in vivo. Quantitative assessment reveals significant differences between the control group and GO group with BMP2 and the BMP2-GO group (*P<0.05; bar =100 µm). (D) OA rats treated with BMP2 and BMP2-GO show significant differences in OARSI scores (*P<0.05).
Abbreviations: ACLT, anterior cruciate ligament transection; BMP2, bone morphogenetic protein 2; GO, graphene oxide; HE, hematoxylin–eosin; OA, osteoarthritis; OARSI, Osteoarthritis Research Society International.
Figure 6Immunohistochemistry analyses in vivo experiment.
Notes: (A and B) Immunohistochemistry analyses in vivo. Quantitative assessment reveals significant differences between the control group and GO group with BMP2 and the BMP2-GO group (*P<0.05; bar =100 µm). (C) GO influences the progression of cytokines such as IL-1a, IL-6, IL-10, and TNF-α via the NF-κB pathway.
Abbreviations: BMP2, bone morphogenetic protein 2; GO, graphene oxide; IL, interleukin.