Type I Collagen

Genetic influences on bone density: Physiological correlates of vitamin D receptor gene alleles in premonopausal women

Genetics / Gene regulation / Spine / Vitamin D / Calcium / Humans / Vitamin D receptor / Collagen / Female / Clinical / Bone Density / Peptides / Osteocalcin / Parathyroid Hormone / Calcitriol / Genes / Clinical Sciences / Calcium Homeostasis / Premenopausal women / Genotype / Homeostasis / Adult / Bone Mineral Density / Phosphates / Clinical Endocrinology / Genetic Variability / Bone and Bones / Type I Collagen / Humans / Vitamin D receptor / Collagen / Female / Clinical / Bone Density / Peptides / Osteocalcin / Parathyroid Hormone / Calcitriol / Genes / Clinical Sciences / Calcium Homeostasis / Premenopausal women / Genotype / Homeostasis / Adult / Bone Mineral Density / Phosphates / Clinical Endocrinology / Genetic Variability / Bone and Bones / Type I Collagen

Genetic influences on bone density: Physiological correlates of vitamin D receptor gene alleles in premonopausal women

Genetics / Gene regulation / Spine / Vitamin D / Calcium / Humans / Vitamin D receptor / Collagen / Female / Clinical / Bone Density / Peptides / Osteocalcin / Parathyroid Hormone / Calcitriol / Genes / Clinical Sciences / Calcium Homeostasis / Premenopausal women / Genotype / Homeostasis / Adult / Bone Mineral Density / Phosphates / Clinical Endocrinology / Genetic Variability / Bone and Bones / Type I Collagen / Humans / Vitamin D receptor / Collagen / Female / Clinical / Bone Density / Peptides / Osteocalcin / Parathyroid Hormone / Calcitriol / Genes / Clinical Sciences / Calcium Homeostasis / Premenopausal women / Genotype / Homeostasis / Adult / Bone Mineral Density / Phosphates / Clinical Endocrinology / Genetic Variability / Bone and Bones / Type I Collagen

Genetic influences on bone density: Physiological correlates of vitamin D receptor gene alleles in premonopausal women

Genetics / Gene regulation / Spine / Vitamin D / Calcium / Humans / Vitamin D receptor / Collagen / Female / Clinical / Bone Density / Peptides / Osteocalcin / Parathyroid Hormone / Calcitriol / Genes / Clinical Sciences / Calcium Homeostasis / Premenopausal women / Genotype / Homeostasis / Adult / Bone Mineral Density / Phosphates / Clinical Endocrinology / Genetic Variability / Bone and Bones / Type I Collagen / Humans / Vitamin D receptor / Collagen / Female / Clinical / Bone Density / Peptides / Osteocalcin / Parathyroid Hormone / Calcitriol / Genes / Clinical Sciences / Calcium Homeostasis / Premenopausal women / Genotype / Homeostasis / Adult / Bone Mineral Density / Phosphates / Clinical Endocrinology / Genetic Variability / Bone and Bones / Type I Collagen

Maturational differences in superficial and deep zone articular chondrocytes

Tissue Engineering / Gene expression / Extracellular Matrix / Cell Differentiation / Cartilage / Animals / Young Adult / Medical Physiology / Integrins / Cattle / Fetal Bovine Serum / Articular Cartilage Wear / Chondrocytes / Age Factors / Cell Proliferation / Type II Collagen / Cell Surface Markers / Articular Cartilage / Cell Size / Type I Collagen / Animals / Young Adult / Medical Physiology / Integrins / Cattle / Fetal Bovine Serum / Articular Cartilage Wear / Chondrocytes / Age Factors / Cell Proliferation / Type II Collagen / Cell Surface Markers / Articular Cartilage / Cell Size / Type I Collagen

Lysyl Oxidase (Lox) Gene Deficiency Affects Osteoblastic Phenotype

Biomedical Engineering / Structural Integrity / Apoptosis / Gene Silencing / DNA / Cell Differentiation / Mice / Animals / Skull / Osteopontin / Phenotype / Calcified tissue / Clinical Sciences / mRna expression levels / Isoenzymes / Osteoblasts / Biochemistry and cell biology / Down-Regulation / lysyl oxidase / Dna Synthesis / DNA fragmentation / Type I Collagen / Cell Differentiation / Mice / Animals / Skull / Osteopontin / Phenotype / Calcified tissue / Clinical Sciences / mRna expression levels / Isoenzymes / Osteoblasts / Biochemistry and cell biology / Down-Regulation / lysyl oxidase / Dna Synthesis / DNA fragmentation / Type I Collagen

Lysyl Oxidase (Lox) Gene Deficiency Affects Osteoblastic Phenotype

Biomedical Engineering / Structural Integrity / Apoptosis / Gene Silencing / DNA / Cell Differentiation / Mice / Animals / Skull / Osteopontin / Phenotype / Calcified tissue / Clinical Sciences / mRna expression levels / Isoenzymes / Osteoblasts / Biochemistry and cell biology / Down-Regulation / lysyl oxidase / Dna Synthesis / DNA fragmentation / Type I Collagen / Cell Differentiation / Mice / Animals / Skull / Osteopontin / Phenotype / Calcified tissue / Clinical Sciences / mRna expression levels / Isoenzymes / Osteoblasts / Biochemistry and cell biology / Down-Regulation / lysyl oxidase / Dna Synthesis / DNA fragmentation / Type I Collagen

Interferon-γ suppresses transforming growth factor-β-induced invasion of gastric carcinoma cells through cross-talk of Smad pathway in a three-dimensional culture model

Cancer / Cell Cycle / Apoptosis / Signal Transduction / Cell line / Humans / Models / Epidermal Growth Factor/ErbB receptors / Oncogene / Real Time / Clinical Sciences / Neoplasm Invasiveness / Three Dimensional / Transforming Growth Factor Beta / Transfection / Enzymatic Activity / DNA binding proteins / Intracellular Signaling / Gastric Carcinoma / Matrix Metalloproteinase / Interferon gamma / Transforming Growth Factor / Type I Collagen / Humans / Models / Epidermal Growth Factor/ErbB receptors / Oncogene / Real Time / Clinical Sciences / Neoplasm Invasiveness / Three Dimensional / Transforming Growth Factor Beta / Transfection / Enzymatic Activity / DNA binding proteins / Intracellular Signaling / Gastric Carcinoma / Matrix Metalloproteinase / Interferon gamma / Transforming Growth Factor / Type I Collagen

Interferon-γ suppresses transforming growth factors-β-induced invasion of gastric carcinoma cells through cross-talk of Smad pathway in a three-dimensional culture model

Cell line / Models / Oncogene / Real Time / Clinical Sciences / Three Dimensional / Enzymatic Activity / Intracellular Signaling / Gastric Carcinoma / Matrix Metalloproteinase / Transforming Growth Factor / Type I Collagen / Three Dimensional / Enzymatic Activity / Intracellular Signaling / Gastric Carcinoma / Matrix Metalloproteinase / Transforming Growth Factor / Type I Collagen
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