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Isolation and characterization of human cord blood mesenchymal stem cells multipotent clones / Noha Mohamed Abdelrahman Ali ; Supervised Shereen Mahmoud Kamel , Zeinab AbouBakr Demerdash , Rania Hassan Khalifa

By: Contributor(s): Material type: TextTextLanguage: English Publication details: Cairo : Noha Mohamed Abdelrahman Ali , 2016Description: 157 P. : charts , facsimiles ; 25cmOther title:
  • {uFED3}{uFEBB}{uFEDE} و {uئإ٩٧}{uئإإ٣}{uئآئإ}{uئآئإ}ز ا{uئإؤئ}{uئإإ٣}{uئإآ٣}{uئإ٩٧}{uئإإ٧}{uئإآ٣}{uئإء٧}{uئإ٨إ}ت {uئإإ٣}{uئإ٩٧}{uئإأأ}ددة ا{uئإؤئ}{uئإؤ٨}وى ا{uئإؤئ}{uئإإ٣}{uئإآ٧}{uئإ٩٧}{uئإؤ٨}{uئإ٩٤} {uئإإ٣}ن ا{uئإؤئ}{uئإء٧}{uئإئأ}يا ا{uئإؤئ}{uئإ٩ئ}ذ{uئإأآ}ية ا{uئإؤئ}{uئإإ٣}{uئآئإ}ز{uئإإ٧}{uئإآ٧}ية {uئإإ٣}ن دم ا{uئإؤئ}{uئإء٣}{uئإ٩١}{uئإؤإ} ا{uئإؤئ}{uئإآ٣}رى ا{uئإئ٥}دمى [Added title page title]
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Dissertation note: Thesis (Ph.D.) - Cairo University - Faculty of Medicine - Department of Clinical and Chemical Pathology Summary: Background: Mesenchymal stem cells (MSCs) are self-renewing cells that have extensive capacity for in vitro expansion with high yield and immunomodulatory effects, that's why they are excellent choice in regenerative medicine. However, clonal analysis of these cells has revealed that they are a heterogeneous mixture of cells. Therefore, clones derived from a single cell would provide a homogeneous population of MSCs and therapeutic efficacy of MSCs population may be enhanced by the use of selected multilineage clones. Aim of the work: Cloning of umbilical cord blood MSCs, by limiting dilution method, could provide a better source for MSCs with high stemness calibre to meet clinical demands. Methodology: Isolation, expansion and cloning by limiting dilution method of human umbilical cord blood MSCs were done. Two cord blood samples, mother (A) and mother (B) were compared with their corresponding daughter clones regarding their proliferation efficiency, surface antigen expression, pluripotent and proliferation genes expression, as well as, their differentiation potentials. Results: MSCs were successfully isolated from two cord blood samples (Mother (A) and Mother (B)) and cloned by limiting dilution method to give 7 single clones for Mother (A) and 8 single clones for Mother (B). Mother (B) was fast growing, with higher PD and shorter PDT than Mother (A). It showed higher pluripotency and proliferation genes expression, as well as, a higher differentiation percent on the three mesodermal lineages level. The daughter clones (A2, A5) had a higher stemness criteria than their mother (A) and other clones, whereas, mother (B) showed a higher stemness characteristics than its daughter clones, except for clone B6 which showed comparable result to its mother
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Thesis Thesis قاعة الرسائل الجامعية - الدور الاول المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.11.07.Ph.D.2016.No.I (Browse shelf(Opens below)) Not for loan 01010110072070000
CD - Rom CD - Rom مخـــزن الرســائل الجـــامعية - البدروم المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.11.07.Ph.D.2016.No.I (Browse shelf(Opens below)) 72070.CD Not for loan 01020110072070000

Thesis (Ph.D.) - Cairo University - Faculty of Medicine - Department of Clinical and Chemical Pathology

Background: Mesenchymal stem cells (MSCs) are self-renewing cells that have extensive capacity for in vitro expansion with high yield and immunomodulatory effects, that's why they are excellent choice in regenerative medicine. However, clonal analysis of these cells has revealed that they are a heterogeneous mixture of cells. Therefore, clones derived from a single cell would provide a homogeneous population of MSCs and therapeutic efficacy of MSCs population may be enhanced by the use of selected multilineage clones. Aim of the work: Cloning of umbilical cord blood MSCs, by limiting dilution method, could provide a better source for MSCs with high stemness calibre to meet clinical demands. Methodology: Isolation, expansion and cloning by limiting dilution method of human umbilical cord blood MSCs were done. Two cord blood samples, mother (A) and mother (B) were compared with their corresponding daughter clones regarding their proliferation efficiency, surface antigen expression, pluripotent and proliferation genes expression, as well as, their differentiation potentials. Results: MSCs were successfully isolated from two cord blood samples (Mother (A) and Mother (B)) and cloned by limiting dilution method to give 7 single clones for Mother (A) and 8 single clones for Mother (B). Mother (B) was fast growing, with higher PD and shorter PDT than Mother (A). It showed higher pluripotency and proliferation genes expression, as well as, a higher differentiation percent on the three mesodermal lineages level. The daughter clones (A2, A5) had a higher stemness criteria than their mother (A) and other clones, whereas, mother (B) showed a higher stemness characteristics than its daughter clones, except for clone B6 which showed comparable result to its mother

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