| Literature DB >> 28053978 |
Ming-Hui Yang1, Ko-Chin Chen2, Pei-Wen Chiang3, Tze-Wen Chung4, Wan-Jou Chen3, Pei-Yu Chu5, Sharon Chia-Ju Chen3, Yi-Shan Lu6, Cheng-Hui Yuan7, Ming-Chen Wang8, Chia-Yang Lin9, Ying-Fong Huang9, Shiang-Bin Jong9, Po-Chiao Lin10, Yu-Chang Tyan11.
Abstract
The microenvironment of neuron cells plays a crucial role in regulating neural development and regeneration. Hyaluronic acid (HA) biomaterial has been applied in a wide range of medical and biological fields and plays important roles in neural regeneration. PC12 cells have been reported to be capable of endogenous NGF synthesis and secretion. The purpose of this research was to assess the effect of HA biomaterial combining with PC12 cells conditioned media (PC12 CM) in neural regeneration. Using SH-SY5Y cells as an experimental model, we found that supporting with PC12 CM enhanced HA function in SH-SY5Y cell proliferation and adhesion. Through RP-nano-UPLC-ESI-MS/MS analyses, we identified increased expression of HSP60 and RanBP2 in SH-SY5Y cells grown on HA-modified surface with cotreatment of PC12 CM. Moreover, we also identified factors that were secreted from PC12 cells and may promote SH-SY5Y cell proliferation and adhesion. Here, we proposed a biomaterial surface enriched with neurotrophic factors for nerve regeneration application.Entities:
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Year: 2016 PMID: 28053978 PMCID: PMC5174748 DOI: 10.1155/2016/1917394
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Frequency shifts of QCM and weights of adhered SH-SY5Y cells on the electrodes decorated with HA-modified surface for 24 to 72 hours of cell incubation.
| Cell adhesion | Δ | Δ |
|---|---|---|
| DMEM/F12 medium | ||
| 24 hrs | −3.68 ± 0.42 | 1.13 ± 0.13 |
| 48 hrs | −4.70 ± 0.48 | 1.44 ± 0.15 |
| 72 hrs | −4.93 ± 0.69 | 1.51 ± 0.21 |
| DMEM/F12 medium-PC12 CM | ||
| 24 hrs | −6.30 ± 1.35 | 1.94 ± 0.42 |
| 48 hrs | −10.83 ± 0.58 | 3.33 ± 0.18 |
| 72 hrs | −10.47 ± 0.27 | 3.22 ± 0.08 |
Data are expressed as mean ± standard error, n = 10, p < 0.05 (t-test).
Figure 1The FT-IR spectra show the frequency region from 4000 to 500 cm−1 of modified surfaces and (a) nonmodified and (b) HA-modified coverslips.
The assignment of FT-IR bands for HA-modified surface.
| Function group | Wavenumber (cm−1) |
|---|---|
| C-O-C stretching, O-H deformation, C=O deformation | 894.9 |
| C-O-C, C-O, C-O-H stretching | 1049.1 |
| CH2, CH3 C-O-H deformation, C-O with C=O combination | 1321.0 |
| NH deformation | 1406.9 |
| C=O carboxyl amide I | 1616.1 |
| CH stretching | 2893.8 |
| NH with C=O combination | 3261.2 |
| NH stretching and OH stretching | 3433.8 |
Figure 2The relative percentage of cell viability obtained from BrdU cell proliferation assay. Differential treatments of SH-SY5Y cells were seeded in 96-well tissue culture plates and incubated for 24 to 72 h. Cells were treated with BrdU reagent for 2 h and fixed before the absorbance was measured at 450 nm.
Proteins identified by the higher confidence level (at least three unique peptide sequences matched) in the PC12 CM which were involved in neuron generation function.
| Accession numbers | Protein name | Biological process | Molecular function |
|---|---|---|---|
| Q66HC8 | Gametogenetin | Cell differentiation | |
| Double-strand break repair | |||
| Embryo implantation | |||
| Spermatogenesis | |||
| P43145 | ADM | Aging | Adrenomedullin receptor binding |
| Androgen metabolic process | |||
| Calcium ion homeostasis | |||
| cAMP-mediated signaling | |||
| Hormone secretion | |||
| Vasculogenesis | |||
| Cell proliferation | |||
| Apoptotic process | |||
| Q9JKU6 | Spermatid perinuclear RNA-binding protein | Cell differentiation | DNA binding |
| Multicellular organismal development | RNA binding | ||
| Spermatogenesis | |||
| O35569 | Pro-neuregulin-2, membrane-bound isoform | Epidermal growth factor receptor signaling pathway | Epidermal growth factor receptor binding |
| Intracellular signal transduction | ErbB-3 class receptor binding | ||
| Organ development | |||
| Q62956 | Receptor tyrosine-protein kinase erbB-4 | Cardiac muscle tissue regeneration | ATP binding |
| Cell migration | Receptor signaling protein tyrosine kinase activity | ||
| Nervous system development | Transmembrane receptor protein tyrosine kinase activity | ||
| Apoptotic process | |||
| Cell proliferation | |||
| Glucose import | |||
| Odontogenesis | |||
| Protein tyrosine kinase Signaling pathway | |||
| P01026 | Complement C3 | Blood coagulation | C5L2 anaphylatoxin chemotactic receptor binding |
| Chemotaxis | Cofactor binding | ||
| Fatty acid metabolic process | Endopeptidase inhibitor activity | ||
| Inflammatory response | Lipid binding | ||
| Glucose transport | |||
| Triglyceride biosynthetic process | |||
| Response to progesterone and estrogen | |||
| Q9R172 | Neurogenic locus notch homolog protein 3 | Cell differentiation | Calcium ion binding |
| Multicellular organismal development | |||
| Notch signaling pathway | |||
| Regulation of transcription, DNA-templated | |||
| Tissue regeneration |
Figure 3The protein-protein interaction pathways are illustrated. (a) Proteins identified in this study are marked by arrows (red: SH-SY5Y; green: PC12). (b) Two proteins, HSP60 and RanBP2, may turn on the ubiquitin (UBC) pathway, which is responsible for the proliferation and is required for survival of the majority of cells.
Figure 4The detection of HSP60 protein expression on SH-SY5Y cells. (a) Western blotting of HSP60 and β-actin from SH-SY5Y cells cultured on different surfaces and/or different medium. The signals were quantified and the data are presented as the means ± SEMs; p < 0.05 or 0.001 indicates statistical significance, as determined by unpaired Student's t-test. (b) Analyses of representative samples of SH-SY5Y cells expression of vimentin and HSP60 are shown. Immunochemical stains for DAPI (blue), vimentin (green), and HSP60 (red) for adhered SH-SY5Y cells on indicated surfaces and/or conditioned media for 24 h (scale bars, 10 μm; confocal microscope, 400x). p < 0.05 and p < 0.001.
Figure 5The detection of RanBP2 protein expression on SH-SY5Y cells. (a) Western blotting of RanBP2 and β-actin from SH-SY5Y cells cultured on different surfaces and/or different medium. The signals were quantified and the data are presented as the means ± SEMs; p < 0.001 indicates statistical significance, as determined by unpaired Student's t-test. (b) Analyses of representative samples of SH-SY5Y cells expression of vimentin and RanBP2 are shown. Immunochemical stains for DAPI (blue), vimentin (green), and RanBP2 (red) for adhered SH-SY5Y cells on indicated surfaces and/or conditioned media for 24 h (scale bars, 10 μm; confocal microscope, 400x). p < 0.001.