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Regulatory Role of Stanniocaicin 1 in Osteoblastic and Osteoclastic Differentiation : 조골세포와 파골세포 분화에 미치는 Stanniocalcin 1의 조절작용

DC Field Value Language
dc.contributor.advisor백정화-
dc.contributor.author채화성-
dc.date.accessioned2017-07-14T05:45:23Z-
dc.date.available2017-10-23T07:49:52Z-
dc.date.issued2016-08-
dc.identifier.other000000137107-
dc.identifier.urihttps://hdl.handle.net/10371/125126-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 치의과학과, 2016. 8. 백정화.-
dc.description.abstractABSTRACT

Regulatory Role of Stanniocalcin1
in Osteoblastic and Osteoclastic Differentiation

Hwa Sung Chae
Department of Molecular Genetics
The Graduate School
Seoul National University
(Directed by Prof. Jeong-Hwa Baek, D.D.S., Ph.D.)

According to the pressure-tension theory in orthodontics, the first physiologic response in the pressure side during tooth movement is hypoxia in periodontal ligament (PDL). We recently performed a preliminary microarray analysis to examine differentially expressed genes in human PDL exposed to hypoxic condition for 24 hours and identified Stanniocalcin 1 (STC1) as one of the most significantly upregulated genes. The purpose of this thesis was to study the functional role of STC1 in the regulation of cell viability, osteoblast differentiation and osteoclast differentiation.
To address the purposes, the primary cultured PDL cells were purchased from ATCC. Gaspak pouch was used to induce hypoxia. To evaluate apoptosis, quantification of the cells positively stained with Annexin V/Propidium Iodide and western blot analysis against Caspase 3 were performed. To investigate the effect of STC1, overexpression or knockdown of STC1 was induced. Treatment of cells with recombinant STC1 protein or neutralizing antibody to STC1 was also used. Osteogenic differentiation was evaluated by examining the expression levels of osteogenic marker genes, the activity of alkaline phosphatase, and matrix calcification. Osteoclastogenesis was induced by treating RAW264.7 or primary cultured mouse bone marrow-derived macrophages with RANKL. Osteoclast differentiation was evaluated by examining the expression levels of osteoclastogenesis related genes and the number of tartrate-resistant acid phosphatase (TRAP)-positive multinucleated cells.
Under the hypoxic condition, PDL cells exhibited increased the expression levels of STC1. In addition, hypoxia increased the number of apoptotic cells and activation of caspase 3, which were attenuated by addition of rhSTC1. Under the normoxic conditions, knockdown of STC1 promoted apoptosis. When PDL cells were induced to undergo osteogenic differentiation, the expression of STC1 increased in a time-dependent manner. Overexpression of STC1 or recombinant STC treatment significantly increased osteogenic differentiation of PLD cells, whereas knockdown of STC1 or addition of STC1-neutralizing antibody attenuated osteogenic differentiation. STC1 induced the expression of VEGF, and knockdown of VEGF significantly suppressed STC1-induced osteogenic differentiation. STC1 inhibited the formation of TRAP-positive multinucleated cells as well as the expression of osteoclast marker genes.
Taken together, these results suggest that hypoxia-induced STC1 in compression side contribute to the prevention of excessive alveolar bone loss or root resorption by protecting the cells from apoptotic cell death, enhancing osteogenic differentiation and inhibiting osteoclast differentiation.
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dc.description.tableofcontentsI. LITERATURE REVIEW 1
I.1. Stanniocalcin 1
I.2. STC1 on bone 2
I.3. Markers used to examine the osteogenic differentiation of PDL cells 3
I.4. STC1 and tumorigenesis 5
I.5. VEGF 6
I.6. Periodontal ligament stems cells 7
I.7. Osteoclast differentiation 8

II. INTRODUCTION 11

III. PURPOSE OF THE STUDY 17

IV. MATERIALS AND METHODS 19
IV.1. Reagents and antibodies 19
IV.2. Culture of PDL cells and hypoxic treatment 20
IV.3. Evaluation of matrix mineralization 21
IV.4. ALP staining and ALP activity assay 21
IV.5. Reverse transcription-polymerase chain reaction (RT-PCR) 22
IV.6. Western blot analysis 22
IV.7. Overexpression and knockdown of genes using small Interfering RNA(siRNA) 26
IV.8. Function blocking of STC1 and VEGF-A 27
IV.9. Enzyme-linked immunosorbent assay(ELISA) of STC1 and VEGF-A protein 27
IV.10. Osteoclastogenesis 28
IV.11. TRAP staining and TRAP activity assay 29
IV.12. Cell proliferation assay 29
IV.13. Flow cytometry analysis of apoptosis 29
IV. 14. Statistics 30

V. RESULTS 31
V.1. Hypoxic conditions induce the expression of STC1 in human PDL Cells 31
V.2. STC1 expression is highly upregulated during osteogenic differentiation of PDL cells 33
V.3. Overexpression of STC1 enhances osteogenic differentiation of PDL cells 35
V.4. rhSTC1 promotes osteoblastic differentiation of PDL cells 38
V.5. STC1 knockdown attenuates osteogenic differentiation of PDL cells 41
V.6. STC1 neutralizing antibody inhibits osteogenic differentiation of PDL cells 44
V.7. rhSTC1 induces VEGF expression in PDL cells 47
V.8. VEGF enhances osteogenic differentiation of PDL cells 49
V.9. VEGF mediates STC1-induced osteogenic differentiation of PDL cells 52
V.10. rhSTC1 increases the cell viability of PDL cells 56
V.11. rhSTC1 protects PDL cells from hypoxia-induced Apoptosis 58
V.12. Knockdown of endogenous STC1 increases apoptotic cell death of PDL cells 60
V.13. rhSTC1 suppressed osteoclastogenesis 63

VI. DISCUSSION 67
PART I. The role of STC1 in osteogenic differentiation of PDL cells 67
PART II. The involvement of VEGF in STC1-induced osteogenic differentiation of PDL cells 72
PART III. Cell protective effect of STC1 in terms of suppression of cell death in PDL cells 74
PART IV. STC1 suppresses osteoclastogenesis in RAW264.7 and BMM cells 76

VII. CONCLUSION 78

VIII. REFERENCES 80

IX. KOREAN ABSTRACT 96
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dc.formatapplication/pdf-
dc.format.extent2797067 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjecthuman periodontal ligament cells-
dc.subjectStanniocalcin 1-
dc.subjecthypoxia-
dc.subjectosteogenic differentiation-
dc.subjectapoptosis-
dc.subjectosteoclast differentiation-
dc.subject.ddc617-
dc.titleRegulatory Role of Stanniocaicin 1 in Osteoblastic and Osteoclastic Differentiation-
dc.title.alternative조골세포와 파골세포 분화에 미치는 Stanniocalcin 1의 조절작용-
dc.typeThesis-
dc.description.degreeDoctor-
dc.citation.pages99-
dc.contributor.affiliation치의학대학원 치의과학과-
dc.date.awarded2016-08-
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