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- Bookedited by Kursad Turksen.Contents:
Derivation of human embryonic stem cell lines from vitrified human blastocysts / Cara K. Bradley ... [et al.] - Characterizing pluripotent stem sells using the TaqMan® hPSC scorecardTM panel / Jeffrey Fergus, Rene Quintanilla, and Uma Lakshmipathy
Growth of human pluripotent stem cells using functional human extracellular matrix / Andres Sanz-Garcia, Miodrag Stojkovic, and Carmen Escobedo-Lucea
Efficient expansion of dissociated human pluripotent stem cells using a synthetic substrate / Eihachiro Kawase
Microarray approach to identify the signaling network responsible for self-renewal of human embryonic stem cells / Noboru Sato and Ali Brivanlou
Monitoring stemness in long-term hESC sultures by real-time PCR / Amparo Galan and Carlos Simon
Study of gap junctions in human embryonic stem cells / Alice Pebay and Raymond C.B. Wong
Immunofluorescence microscopy and mRNA analysis of human embryonic stem cells (hESCs) including primary cilia associated signaling pathways / Maj Linea Vestergaard ... [et al.]
Analysis of intracellular calcium signaling in human embryonic stem cells / Adrienn Pentek, Katalin Paszty, and Agota Apati
Genetic manipulation of human embryonic stem cells / Rachel Eiges
Genetic modification in human pluripotent stem cells by homologous recombination and CRISPR/Cas9 system / Haipeng Xue ... [et al.]
Use of multicolor flow cytometry for isolation of specific cell populations deriving from differentiated human embryonic stem cells / Isabella Mengarelli, Andrew Fryga, and Tiziano Barberi
Definitive endoderm differentiation of human embryonic stem cells combined with selective elimination of undifferentiated cells by methionine deprivation / Tomonori Tsuyama, Nobuaki Shiraki, and Shoen Kume
Derivation of endothelial cells and pericytes from human pluripotent stem cells / Sravanti Kusuma and Sharon Gerecht
Differentiation of human embryonic stem cells on periodontal ligament fibroblasts / Y. Murat Elcin, Bulend Inanc, and A. Eser Elcin
Derivation of epithelial cells from human embryonic stem cells as an in vitro model of vocal mucosa / Vlasta Lungova, Ciara Leydon, and Susan Thibeault
Human embryonic and hepatic stem cell differentiation visualized in two and three dimensions based on serial sections / Peter S. Vestentoft ... [et al.]
Derivation of chondrogenic cells from human embryonic stem cells for cartilage tissue engineering / Wei Seong Toh and Tong Cao
Microgrooved surface modulates neuron differentiation in human embryonic stem cells / David Lu ... [et al.]
Directed differentiation of human embryonic stem cells into neural progenitors / Erin Banda and Laura Grabel
Direct conversion of pluripotent human embryonic stem cells under defined culture conditions into human neuronal or cardiomyocyte cell therapy derivatives / Xuejun H. Parsons
Generation of epithelial cell populations from human pluripotent stem cells using a small-molecule inhibitor of Src family kinases / Joshua A. Selekman, Xiaojun Lian, and Sean P. Palecek
Dual-SMAD inhibition/WNT activation-based methods to induce neural crest and derivatives from human pluripotent stem cells / Stuart M. Chambers ... [et al.]
Accelerated three-dimensional neuroepithelium formation from human embryonic stem cells and its use for quantitative differentiation to human retinal pigment epithelium / Yu Zhu, Sven Schreiter, and Elly M. Tanaka
Efficient production of photoreceptor precursor cells from human embryonic stem cells / Anat Yanai ... [et al.]
Generation of megakaryocytes and platelets from human pluripotent stem cells / Marjorie Pick
Simple protocol for the generation of cardiomyocytes from human pluripotent stem cells / Glen Lester Sequiera, Ashish Mehta, and Winston Shim
Erratum to: Microgrooved surface modulates neuron differentiation in human embryonic stem cells / David Lu ... [et al.].Digital Access Springer 2015 - ArticleBorgese TA, Nagel RL, Roth E, Murphy D, Harrington J.Comp Biochem Physiol B. 1978;60(3):317-21.1. Ion exchange column chromatography of red cell extracts from the smooth dogfish (Mustelus canis) reveals a phosphate pool which includes inorganic phosphate, AMP, ADP and ATP. 2. GTP and an iron complex of this nucleotide (Fe-GTP) account for approximately 40% of the principal organic phosphates. 3. ATP accounts for 30%, and AMP and ADP approximately 10% each. 4. 2,3-DPG is not detectable by either enzymatic or chromatographic analysis. 5. The use of a "purified" buffer system consisting of redistilled formic acid and de novo synthesized ammonium formate increases the ratio of GTP to Fe-GTP from approximately 1.4:1 to 10:1. This suggests that all of the iron nucleotide complexes (ATP and GTP) previously reported in red cells may not represent a normally occurring intraerythrocyte complex.