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Encapsulation of Islets with Matrigel in Cldrosome in a Xenograft Murine Model

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dc.contributor.advisorYoungro Byun-
dc.contributor.author로니-
dc.date.accessioned2017-07-19T11:04:50Z-
dc.date.available2017-07-19T11:04:50Z-
dc.date.issued2013-08-
dc.identifier.other000000013294-
dc.identifier.urihttps://hdl.handle.net/10371/133333-
dc.description학위논문 (석사)-- 서울대학교 융합과학기술대학원 : 분자의학 및 바이오제약학과, 2013. 8. 변영로.-
dc.description.abstractThe purpose of this study is to develop a potent immunosuppressive system to prevent islet rejection after transplantation for the treatment of type 1 diabetes. This strategy is to encapsulate islets in matrigel containing liposomal clodronate Clodrosome® to inhibit activation of macrophages and immune cells in the early stage of transplantation. Liposomal clodronate, clodronate-encapsulated liposomes, can deplete macrophages, thereby preventing macrophage activation. The molecular imaging of Cy5.5 labeled liposome in matrigel demonstrated that liposomal clodronate remained in the matrigel for over 7 days. To evaluate the therapeutic efficacy of transplanted islets, four groups of islet transplanted mice (n=6 in each group) were prepared, such as below 1) Islet group, 2) Islet-Matrigel group, 3) Islet-Clodrosome group, and 4) Islet-Matrigel-Clodrosome group, where 2000 IEQ islets were subcutaneously transplanted and the dose of clodronate was 6.25 mg/kg. When islets were transplanted in matrigel containing liposomal clodronate (Islet-Matrigel-Clorosome group), the median survival time (MST) of transplanted islets was significantly increased (> 60 days) when compared to other groups. Immunohistochemical staining of islet-grafted tissues in matrigel demonstrated that locally delivered liposomal clodronate in matrigel effectively inhibited the activation of macrophage after islet transplantation. In addition, liposomal clodronate was effective on inhibiting immune cell migration and activation, and pro-inflammatory cytokine secretion was significantly down-regulated. In conclusion, locally delivered liposomal clodronate in matrigel effectively improved the grafted survival time of grafted islets.-
dc.description.tableofcontentsTABLE OF CONTENTS
ABSTRACTS..i
LIST OF CONTENTS..iii
LIST OF TABLES..v
LIST OF FIGURES..vi
ABBREVIATIONS..viii
1. INTRODUCTION
1.1 Diabetes Mellitus..1
1.2 Type 1 Diabetes (T1D)..3
1.3 Treatments of T1D..5
1.3.1 Pancreatic islet cell transplantation..7
1.4 Role of macrophages on rejection of transplanted islets..10
1.5 Targeting macrophages by liposomal clodronate..12
1.6 Subcutaneous route of transplantation..15
1.7 Extracellular matrix (ECM) based hydrogel as transplant scaffold..17
1.8 Rationale..19

2. MATERIALS AND METHODS
2.1 Animal..20
2.2 Pancreatic islet isolation..21
2.3 Optical imaging of liposomal clodronate..21
2.4 Islet transplantation..22
2.5 Intraperitoneal glucose tolerance test (IPGTT)..25
2.6 Quantification of insulin and cytokine levels in serum..25
2.7 Quantification of insulin and cytokine levels in matrigel..25
2.8 Immunohistochemistry..26
2.9 Statistical analysis..27

3. RESULTS
3.1 Releasing profiles of Cy5.5 labeled liposome from the transplanted matrigel in nude mouse..27
3.2 Survival time of transplanted islets..29
3.3 Inhibition effects of liposomal clodronate and matrigel on inflammation and immune cell activation..32

4. DISCUSSION..37
5. CONCLUSION..38
6. REFERENCES..41
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dc.formatapplication/pdf-
dc.format.extent1455583 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectIslet cell transplantation-
dc.subject.ddc610-
dc.titleEncapsulation of Islets with Matrigel in Cldrosome in a Xenograft Murine Model-
dc.typeThesis-
dc.description.degreeMaster-
dc.citation.pages44-
dc.contributor.affiliation융합과학기술대학원 분자의학 및 바이오제약학과-
dc.date.awarded2013-08-
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