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  4. Intramedullary cavity as implantation site for bioartifical pancreas: Preliminary in vivo study
 
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Intramedullary cavity as implantation site for bioartifical pancreas: Preliminary in vivo study

Journal
Transplantation Proceedings
Journal Volume
42
Journal Issue
7
Pages
2666-2668
Date Issued
2010
Author(s)
Yang, K.-C.
Wu, C.-C.
Kuo, Z.-F.
CHING-YAO YANG  
TZONG-FU KUO  
FENG-HUEI LIN  
DOI
10.1016/j.transproceed.2010.04.027
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-77956455318&doi=10.1016%2fj.transproceed.2010.04.027&partnerID=40&md5=e7aafd3f249e9609b4466b43f9fe28c5
https://scholars.lib.ntu.edu.tw/handle/123456789/461778
Abstract
Background The intramedullary cavity is a widely distributed well-vascularized microenvironment capable of sustaining grafts, and is a potential site for islet transplantation. The bone marrow offers sufficient space that may also be suitable for bioartificial pancreas (BAP) implantation. Objective To evaluate the feasibility of bone marrow as an implantation site for BAPs. Materials and Methods A calcium phosphate cement chamber satisfies the criteria for immunoisolation. Mouse insulinoma cells were suspended with agarose gel and enclosed in a calcium phosphate cement chamber to create a BAP, which was implanted in the intramuscular space in diabetic swine or the intramedullary cavity in diabetic dogs. Blood glucose and C-peptide concentrations were determined perioperatively. Results In the swine, the mean ± SD blood glucose concentration decreased from 413 ± 24 mg/dL to 285 ± 47 mg/dL, and was maintained in the range of 285 to 336 mg/dL for 15 days. It increased to 368 to 450 mg/dL after the BAPs were implanted in the intramuscular space. In the dogs, the blood glucose concentration decreased from 422 ± 32 mg/dL to 247 ± 52 mg/dL, and was maintained in the range of 247 to 347 mg/dL after the BAPs were implanted in the intramedullary cavity. The C-peptide concentration increased from 6.1 ± 2.8 pmol/L to 104.7 ± 16.4 pmol/L when the BAPs were implanted in the intramedullary cavity. Conclusion This study indicates superior effectiveness of BAPs implanted in the intramedullary cavity compared with the intramuscular space. This observation may be attributed to the greater oxygen tension in the bone marrow. The BAPs in direct contact with the circulatory system receive sufficient blood flow for function and survival. This preliminary study demonstrates that the intramedullary cavity may be an implantation site for BAP transplantation. ? 2010 by Elsevier Inc. All rights reserved.
SDGs

[SDGs]SDG3

Other Subjects
agarose; C peptide; calcium phosphate; cement; glucose; animal cell; animal experiment; animal model; animal tissue; article; bioartificial organ; bone marrow transplantation; cortical bone; diabetes mellitus; experimental dog; experimental pig; glucose blood level; in vivo study; insulinoma; intramedullary cavity; nonhuman; pancreas; perioperative period; priority journal; tumor cell; Animals; Bioartificial Organs; Blood Glucose; Bone Cements; Bone Marrow; C-Peptide; Dogs; Insulinoma; Kidney Medulla; Mice; Pancreas Transplantation; Prostheses and Implants; Swine
Type
journal article

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