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PDF) Thermal Modifications of Starch During High-Temperature Drying of Pasta
PDF) Thermal Modifications of Starch During High-Temperature Drying of Pasta

Isabelle Petit-Crespeau - Senior HR Business Partner EMEA - Thermo Fisher  Scientific | LinkedIn
Isabelle Petit-Crespeau - Senior HR Business Partner EMEA - Thermo Fisher Scientific | LinkedIn

Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3  ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β  signaling pathway - ScienceDirect
Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3 ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β signaling pathway - ScienceDirect

PDF) The X-ray Structure of NccX from Cupriavidus metallidurans 31A  Illustrates Potential Dangers of Detergent Solubilization When Generating  and Interpreting Crystal Structures of Membrane Proteins
PDF) The X-ray Structure of NccX from Cupriavidus metallidurans 31A Illustrates Potential Dangers of Detergent Solubilization When Generating and Interpreting Crystal Structures of Membrane Proteins

Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3  ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β  signaling pathway - ScienceDirect
Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3 ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β signaling pathway - ScienceDirect

Rémi Deterre's research works | French National Centre for Scientific  Research, Paris (CNRS) and other places
Rémi Deterre's research works | French National Centre for Scientific Research, Paris (CNRS) and other places

Isabelle HAZEMANN | Institut de Génétique et de Biologie Moléculaire et  Cellulaire, Strasbourg | IGBMC | Department of Integrative Structural  Biology
Isabelle HAZEMANN | Institut de Génétique et de Biologie Moléculaire et Cellulaire, Strasbourg | IGBMC | Department of Integrative Structural Biology

Isabelle HAZEMANN | Institut de Génétique et de Biologie Moléculaire et  Cellulaire, Strasbourg | IGBMC | Department of Integrative Structural  Biology
Isabelle HAZEMANN | Institut de Génétique et de Biologie Moléculaire et Cellulaire, Strasbourg | IGBMC | Department of Integrative Structural Biology

Isabelle Petit-Crespeau - Senior HR Business Partner EMEA - Thermo Fisher  Scientific | LinkedIn
Isabelle Petit-Crespeau - Senior HR Business Partner EMEA - Thermo Fisher Scientific | LinkedIn

Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3  ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β  signaling pathway - ScienceDirect
Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3 ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β signaling pathway - ScienceDirect

Pluripotent Stem Cell Model Reveals Essential Roles for miR‐450b‐5p and  miR‐184 in Embryonic Corneal Lineage Specification - Shalom‐Feuerstein -  2012 - STEM CELLS - Wiley Online Library
Pluripotent Stem Cell Model Reveals Essential Roles for miR‐450b‐5p and miR‐184 in Embryonic Corneal Lineage Specification - Shalom‐Feuerstein - 2012 - STEM CELLS - Wiley Online Library

Isabelle Petit-Crespeau - Senior HR Business Partner EMEA - Thermo Fisher  Scientific | LinkedIn
Isabelle Petit-Crespeau - Senior HR Business Partner EMEA - Thermo Fisher Scientific | LinkedIn

Pluripotent Stem Cell Model Reveals Essential Roles for miR‐450b‐5p and  miR‐184 in Embryonic Corneal Lineage Specification - Shalom‐Feuerstein -  2012 - STEM CELLS - Wiley Online Library
Pluripotent Stem Cell Model Reveals Essential Roles for miR‐450b‐5p and miR‐184 in Embryonic Corneal Lineage Specification - Shalom‐Feuerstein - 2012 - STEM CELLS - Wiley Online Library

Pluripotent Stem Cell Model Reveals Essential Roles for miR‐450b‐5p and  miR‐184 in Embryonic Corneal Lineage Specification - Shalom‐Feuerstein -  2012 - STEM CELLS - Wiley Online Library
Pluripotent Stem Cell Model Reveals Essential Roles for miR‐450b‐5p and miR‐184 in Embryonic Corneal Lineage Specification - Shalom‐Feuerstein - 2012 - STEM CELLS - Wiley Online Library

Isabelle Petit-Crespeau - Senior HR Business Partner EMEA - Thermo Fisher  Scientific | LinkedIn
Isabelle Petit-Crespeau - Senior HR Business Partner EMEA - Thermo Fisher Scientific | LinkedIn

Pluripotent Stem Cell Model Reveals Essential Roles for miR‐450b‐5p and  miR‐184 in Embryonic Corneal Lineage Specification - Shalom‐Feuerstein -  2012 - STEM CELLS - Wiley Online Library
Pluripotent Stem Cell Model Reveals Essential Roles for miR‐450b‐5p and miR‐184 in Embryonic Corneal Lineage Specification - Shalom‐Feuerstein - 2012 - STEM CELLS - Wiley Online Library

Induced pluripotent stem cell-derived limbal epithelial cells (LiPSC) as a  cellular alternative for in vitro ocular toxicity testing
Induced pluripotent stem cell-derived limbal epithelial cells (LiPSC) as a cellular alternative for in vitro ocular toxicity testing

Buy Nokia thermo - connected temporal thermometer at affordable prices,  price 100 USD — 📦free shipping, ⭐real reviews with photos — Joom
Buy Nokia thermo - connected temporal thermometer at affordable prices, price 100 USD — 📦free shipping, ⭐real reviews with photos — Joom

Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3  ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β  signaling pathway - ScienceDirect
Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3 ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β signaling pathway - ScienceDirect

Rémi Deterre's research works | French National Centre for Scientific  Research, Paris (CNRS) and other places
Rémi Deterre's research works | French National Centre for Scientific Research, Paris (CNRS) and other places

Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3  ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β  signaling pathway - ScienceDirect
Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3 ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β signaling pathway - ScienceDirect

Rémi Deterre's research works | French National Centre for Scientific  Research, Paris (CNRS) and other places
Rémi Deterre's research works | French National Centre for Scientific Research, Paris (CNRS) and other places

Caloric restriction or resveratrol supplementation and ageing in a  non-human primate: first-year outcome of the RESTRIKAL study in Microcebus  murinus – topic of research paper in Biological sciences. Download  scholarly article PDF
Caloric restriction or resveratrol supplementation and ageing in a non-human primate: first-year outcome of the RESTRIKAL study in Microcebus murinus – topic of research paper in Biological sciences. Download scholarly article PDF

PDF) Modeling of Aniridia‐Related Keratopathy by CRISPR/Cas9 Genome Editing  of Human Limbal Epithelial Cells and Rescue by Recombinant PAX6 Protein
PDF) Modeling of Aniridia‐Related Keratopathy by CRISPR/Cas9 Genome Editing of Human Limbal Epithelial Cells and Rescue by Recombinant PAX6 Protein

Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3  ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β  signaling pathway - ScienceDirect
Quantitative ubiquitylome analysis reveals specificity of RNF111/Arkadia E3 ubiquitin ligase for its degradative substrates SKI and SKIL/SnoN in TGF-β signaling pathway - ScienceDirect

Isabelle HAZEMANN | Institut de Génétique et de Biologie Moléculaire et  Cellulaire, Strasbourg | IGBMC | Department of Integrative Structural  Biology
Isabelle HAZEMANN | Institut de Génétique et de Biologie Moléculaire et Cellulaire, Strasbourg | IGBMC | Department of Integrative Structural Biology

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Extracellular Vesicles from Activated Dermal Fibroblasts Stimulate Hair  Follicle Growth Through Dermal Papilla‐Secreted Norrin - Riche - 2019 -  STEM CELLS - Wiley Online Library
Extracellular Vesicles from Activated Dermal Fibroblasts Stimulate Hair Follicle Growth Through Dermal Papilla‐Secreted Norrin - Riche - 2019 - STEM CELLS - Wiley Online Library