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101. In vivo reprogrammed pluripotent stem cells from teratomas share analogous properties with their in vitro counterparts

102. ERRATUM: Establishment of a primed pluripotent epiblast stem cell in FGF4-based conditions

103. Reprogramming somatic gene activity by fusion with pluripotent cells

104. Self-renewal of embryonic stem cells by a small molecule

105. Lack of Cytosolic Carboxypeptidase 1 Leads to Subfertility due to theReduced Number of Antral Follicles in pcd3J(-/-) Females

106. Cellular Reprogramming Using Protein and Cell-Penetrating Peptides

107. PPARδ modulates oxLDL-induced apoptosis of vascular smooth muscle cells through a TGF-β/FAK signaling axis

108. Establishment of a primed pluripotent epiblast stem cell in FGF4-based conditions

109. Generation of Partially Reprogrammed Cells and Fully Reprogrammed iPS Cells by Plasmid Transfection

110. Reactivation of the inactive X chromosome and post-transcriptional reprogramming of Xist in iPSCs

112. Ligand-activated PPARδ modulates the migration and invasion of melanoma cells by regulating Snail expression

113. Conversion of partially reprogrammed cells to fully pluripotent stem cells is associated with further activation of stem cell maintenance- and gamete generation-related genes

114. In vitro development of reconstructed bovine embryos and fate of donor mitochondria following nuclear injection of cumulus cells

115. Reactivation of inactive X chromosome and post-transcriptional reprogramming of Xist in induced pluripotent stem cells

116. Generation of Partially Reprogrammed Cells and Fully Reprogrammed iPS Cells by Plasmid Transfection

117. Involvement of adrenergic system on the cortical granule exocytosis and polyspermic penetration during in vitro fertilization of porcine oocytes

118. Neural stem cells differentiated from iPS cells spontaneously regain pluripotency

119. Therapeutic Potential of Human Induced Pluripotent Stem Cells in Experimental Stroke

120. Ground-state conditions promote robust Prdm14 reactivation and maintain an active Dlk1-Dio3 region during reprogramming

121. Activation of pluripotency genes by a nanotube-mediated protein delivery system

122. Conversion of genomic imprinting by reprogramming and redifferentiation

123. The use of aggregates of purified cardiomyocytes derived from human ESCs for functional engraftment after myocardial infarction

124. Neuronal Differentiation of a Human Induced Pluripotent Stem Cell Line (FS-1) Derived from Newborn Foreskin Fibroblasts

125. Neuronal properties, in vivo effects, and pathology of a Huntington's disease patient-derived induced pluripotent stem cells

126. Reestablishment of the inactive X chromosome to the ground state through cell fusion-induced reprogramming

127. Kinetics of reprogramming in cell fusion hybrids

128. Reprogrammed pluripotent stem cells from somatic cells

129. Neural stem cells achieve and maintain pluripotency without feeder cells

130. Gene expression profiles in CHA3 and CHA4 human embryonic stem cells and embryoid bodies

131. Efficient Derivation of Pluripotent Stem Cells from siRNA-Mediated Cdx2-Deficient Mouse Embryos

132. Epiblast stem cell subpopulations represent mouse embryos of distinct pregastrulation stages

133. Cell fusion-induced reprogramming

134. Cell Fusion-Induced Reprogramming

135. Generation of parthenogenetic induced pluripotent stem cells from parthenogenetic neural stem cells

136. Epigenetic hierarchy governing Nestin expression

137. Enhanced reprogramming of Xist by induced upregulation of Tsix and Dnmt3a

139. Nuclei of embryonic stem cells reprogram somatic cells

140. Expression of IGF2 and IGF receptor mRNA in bovine nuclear transferred embryos

141. Fate of donor mitochondrial DNA in cloned bovine embryos produced by microinjection of cumulus cells

142. Neuronal Properties, In Vivo Effects, and Pathology of a Huntington's Disease Patient-Derived Induced Pluripotent Stem Cells

143. Biochanin A Ameliorates Arsenic-Induced Hepato- and Hematotoxicity in Rats.

146. Comparison of neurosphere cells with cumulus cells after fusion with embryonic stem cells: reprogramming potential

147. Establishment of a primed pluripotent epiblast stem cell in FGF4-based conditions.

150. Conversion of genomic imprinting by reprogramming and redifferentiation.

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