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Keyword [Insulin-producing cells]
Result: 61 - 78 | Page: 4 of 4
61. Construction High-Througout Model To Promote Islet-Progenitor Cells Differentiation Into Insulin-Producing Cells And Compounds Screening
62. The Key Regulation Of MiR-124-3p During Reprogramming Of Primary Mouse Hepatocytes Into Insulin Producing Cells
63. Study On Differentiation Of Cynomolgus Macaque Bone Marrow Derieved Mesenchymal Stem Cells Into Insulin Producing Cells
64. Differentiation Of Human Umbilical Cord Mesenchymal Stem Cells Into Insulin-producing Cells
65. Wnt/β-catenin Signaling Pathway Promotes The Differentiation Of Mouse Embryonic Stem Cells Into Insulin Producing Cells
66. Effects Of Ngn3 Overexpression On The Differentiation Of Human Umbilical-cord Mesenchymal Stem Cells Into Insulin-producing Cells
67. Coencapsulation of Insulin-Producing Cells and Mesenchymal Stromal Cells in Pegda Hydrogels to Enhance Chronic Wound Healin
68. Stem cell and gene transfer-based approaches to generate insulin-producing cells
69. Expansion and directed differentiation of human pluripotent stem cells to insulin-producing cells in a stirred-suspension microcarrier system
70. MicroRNA-328 Regulates Embryonic Stem Cell(ESC) Differentiation Into Insulin-producing Cells Via Targeting Tgf-β2
71. The Effects Of Hi-Lnc70 On The Differentiation Efficiency Of HESCs Into IPCs And Its Regulatory Mechanism
72. Study On Dll1,Pdx1,Ngn3 And Pax4/Nkx2.2 Combined Reprogramming Canine Adipose MSCs Into IPCs
73. Study On The Hnf1b,Pdx1,Ngn3 And Pax4/Nkx6.1 Reprograms Canine Adipose-derived MSCs To Differentiate Into IPCs
74. Study On Reprogramming Of Canine Adipose Mesenchymal Stem Cells To Insulin Secreting Cells By FoxA1、Pdx1、Ngn3 And Pax4/Nkx2.2
75. Differentiation Of 3D Cultured Human Mesenchymal Stem Cells Into Insulin Producing Cells And The Therapeutic Effect On Type 1 Diabetics Model Of Cynomolgus Macaque(Macaca Fascicularis)
76. Study On The Small Molecule Compounds Allow The Reprogramming Of Mice Hepatocytes Into Insulin-producing Cells
77. Differentiation Of Human Umbilical Cord Wharton’s Jelly-derived Mesenchymal Stem Cells Into INS-producing Cells Modified By MAFA And PDX1
78. Mechanism Of Inhibition Effect Of High-glucose Induced Ferroptosis In Insulin-producing Cells Via Targeting NCOA4
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