1957, 3. Ed. refundida, corrigida e muito aumentada., 476
Book
Journal of Assisted Reproduction and Genetics, ISSN 1058-0468, 9/2019, Volume 36, Issue 9, pp. 1845 - 1846
Author Affiliation:
Human Genetics | Medicine & Public Health | Gynecology | Reproductive Medicine | REPRODUCTIVE BIOLOGY | GENETICS & HEREDITY | OBSTETRICS & GYNECOLOGY | Embryonic development | Mitochondrial DNA
Human Genetics | Medicine & Public Health | Gynecology | Reproductive Medicine | REPRODUCTIVE BIOLOGY | GENETICS & HEREDITY | OBSTETRICS & GYNECOLOGY | Embryonic development | Mitochondrial DNA
Journal Article
Nature Cell Biology, ISSN 1465-7392, 12/2014, Volume 16, Issue 12, pp. 1146 - 1156
Gastrulation leads to three germ layers-ectoderm, mesoderm and endoderm-that are separated by two basement membranes. In the mouse embryo, the emergent gut...
EMBRYONIC-STEM-CELLS | PRIMITIVE STREAK | GENE | DEFINITIVE ENDODERM | EOMESODERMIN | CHICK-EMBRYO | SPECIFICATION | ESTABLISHMENT | EXPRESSION | MOUSE EMBRYO | CELL BIOLOGY | Extracellular Matrix Proteins - biosynthesis | Hepatocyte Nuclear Factor 3-beta - genetics | Embryo, Mammalian | Extracellular Matrix - metabolism | Endoderm - embryology | Green Fluorescent Proteins - genetics | HMGB Proteins - biosynthesis | SOXF Transcription Factors - metabolism | Cadherins - biosynthesis | Epithelium - embryology | HMGB Proteins - metabolism | Cell Differentiation | Optical Imaging - methods | Gastrulation | Mesoderm - embryology | Morphogenesis - genetics | Basement Membrane - cytology | Mice, Transgenic | Fibronectins - metabolism | SOXF Transcription Factors - biosynthesis | Germ Layers - embryology | Animals | Basement Membrane - embryology | Mice | Morphogenesis - physiology | Morphogenesis | Physiological aspects | Transcription factors | Genetic aspects | Research | Endoderm
EMBRYONIC-STEM-CELLS | PRIMITIVE STREAK | GENE | DEFINITIVE ENDODERM | EOMESODERMIN | CHICK-EMBRYO | SPECIFICATION | ESTABLISHMENT | EXPRESSION | MOUSE EMBRYO | CELL BIOLOGY | Extracellular Matrix Proteins - biosynthesis | Hepatocyte Nuclear Factor 3-beta - genetics | Embryo, Mammalian | Extracellular Matrix - metabolism | Endoderm - embryology | Green Fluorescent Proteins - genetics | HMGB Proteins - biosynthesis | SOXF Transcription Factors - metabolism | Cadherins - biosynthesis | Epithelium - embryology | HMGB Proteins - metabolism | Cell Differentiation | Optical Imaging - methods | Gastrulation | Mesoderm - embryology | Morphogenesis - genetics | Basement Membrane - cytology | Mice, Transgenic | Fibronectins - metabolism | SOXF Transcription Factors - biosynthesis | Germ Layers - embryology | Animals | Basement Membrane - embryology | Mice | Morphogenesis - physiology | Morphogenesis | Physiological aspects | Transcription factors | Genetic aspects | Research | Endoderm
Journal Article
Expert Review of Anti-infective Therapy, ISSN 1478-7210, 04/2014, Volume 12, Issue 4, pp. 479 - 496
The most neglected aspects of Chagas disease (CD) have been patient care and treatment. Despite recent progress in the development of potentially improved...
cure marker | treatment | biological marker | humoral and cellular immune response | Chagas disease | biomarker | PCR | Trypanosoma cruzi | BRAIN NATRIURETIC PEPTIDE | REACTION PCR | CARDIOMYOPATHY | FOLLOW-UP | ETIOLOGIC TREATMENT | POLYMERASE-CHAIN-REACTION | LEFT-VENTRICULAR DYSFUNCTION | PHARMACOLOGY & PHARMACY | CURE | TRYPANOSOMA-CRUZI ANTIGENS | BENZNIDAZOLE | Chagas Disease - immunology | Humans | Middle Aged | Treatment Outcome | Biomarkers - blood | Disease Progression | Immunity, Humoral | Adolescent | Chagas Disease - diagnosis | Chagas Disease - drug therapy | Adult | Trypanocidal Agents - therapeutic use | Aged | Child | Immunity, Cellular
cure marker | treatment | biological marker | humoral and cellular immune response | Chagas disease | biomarker | PCR | Trypanosoma cruzi | BRAIN NATRIURETIC PEPTIDE | REACTION PCR | CARDIOMYOPATHY | FOLLOW-UP | ETIOLOGIC TREATMENT | POLYMERASE-CHAIN-REACTION | LEFT-VENTRICULAR DYSFUNCTION | PHARMACOLOGY & PHARMACY | CURE | TRYPANOSOMA-CRUZI ANTIGENS | BENZNIDAZOLE | Chagas Disease - immunology | Humans | Middle Aged | Treatment Outcome | Biomarkers - blood | Disease Progression | Immunity, Humoral | Adolescent | Chagas Disease - diagnosis | Chagas Disease - drug therapy | Adult | Trypanocidal Agents - therapeutic use | Aged | Child | Immunity, Cellular
Journal Article
Fertility and Sterility, ISSN 0015-0282, 2016, Volume 107, Issue 1, pp. 34 - 42.e3
Objective To accurately determine mitochondrial DNA (mtDNA) levels in human blastocysts. Design Retrospective analysis. Setting IVF clinic. Patient(s) A total...
Internal Medicine | Obstetrics and Gynecology | PGS/PGD | IVF biomarker | embryonic mitochondria | Blastocyst mtDNA | correction factor | PARTICLES | TRANSCRIPTION | VIABILITY | GENOME | OBSTETRICS & GYNECOLOGY | IN-VITRO | REPRODUCTIVE BIOLOGY | COPY NUMBER | CELL | Fertilization in Vitro - adverse effects | Predictive Value of Tests | Reproducibility of Results | Humans | Risk Factors | Blastocyst - metabolism | Male | Treatment Outcome | Blastocyst - pathology | Embryo Culture Techniques | Genetic Markers | Embryo Implantation | Oocyte Retrieval | Pregnancy | DNA, Mitochondrial - genetics | Maternal Age | Biopsy | Embryo Transfer | Ploidies | Female | Tissue Survival | High-Throughput Nucleotide Sequencing | Retrospective Studies | Real-Time Polymerase Chain Reaction | Mitochondrial DNA | Fertility clinics | Genetic research | Numerical analysis | Analysis
Internal Medicine | Obstetrics and Gynecology | PGS/PGD | IVF biomarker | embryonic mitochondria | Blastocyst mtDNA | correction factor | PARTICLES | TRANSCRIPTION | VIABILITY | GENOME | OBSTETRICS & GYNECOLOGY | IN-VITRO | REPRODUCTIVE BIOLOGY | COPY NUMBER | CELL | Fertilization in Vitro - adverse effects | Predictive Value of Tests | Reproducibility of Results | Humans | Risk Factors | Blastocyst - metabolism | Male | Treatment Outcome | Blastocyst - pathology | Embryo Culture Techniques | Genetic Markers | Embryo Implantation | Oocyte Retrieval | Pregnancy | DNA, Mitochondrial - genetics | Maternal Age | Biopsy | Embryo Transfer | Ploidies | Female | Tissue Survival | High-Throughput Nucleotide Sequencing | Retrospective Studies | Real-Time Polymerase Chain Reaction | Mitochondrial DNA | Fertility clinics | Genetic research | Numerical analysis | Analysis
Journal Article
Nature cell biology, ISSN 1465-7392, 12/2014, Volume 16, Issue 12, pp. 1146 - 1156
Gastrulation leads to three germ layers, ectoderm, mesoderm and endoderm that are separated by two basement membranes. In the mouse embryo, the emergent gut...
gut endoderm | basement membrane | mouse embryo | mesoderm | ECM | Fibronectin | epiblast | egression | intercalation | Integrin | SOX17 | apico-basal polarity | gastrulation | FOXA2
gut endoderm | basement membrane | mouse embryo | mesoderm | ECM | Fibronectin | epiblast | egression | intercalation | Integrin | SOX17 | apico-basal polarity | gastrulation | FOXA2
Journal Article
PLoS Biology, ISSN 1544-9173, 03/2012, Volume 10, Issue 3, p. e1001276
Establishment of left-right (LR) asymmetry occurs after gastrulation commences and utilizes a conserved cascade of events. In the mouse, LR symmetry is broken...
VISCERAL ENDODERM | GAP-JUNCTIONS | FROG EMBRYOS | SONIC HEDGEHOG | NODAL CILIA | BIOCHEMISTRY & MOLECULAR BIOLOGY | MOUSE EMBRYOS | EARLY STEP | BIOLOGY | LEFT-RIGHT AXIS | LEFT-RIGHT ASYMMETRY | PRIMARY CILIUM | Gap Junctions - metabolism | Endoderm - physiology | Gap Junctions - genetics | Gene Expression Profiling | Green Fluorescent Proteins - genetics | SOXF Transcription Factors - metabolism | Embryo, Mammalian - metabolism | Gastrointestinal Tract - embryology | Gastrointestinal Tract - physiology | Gene Expression Regulation, Developmental | Body Patterning | HMGB Proteins - genetics | HMGB Proteins - metabolism | Transgenes | Biotin - administration & dosage | Connexin 43 - genetics | Green Fluorescent Proteins - metabolism | Embryo, Mammalian - pathology | Connexin 43 - metabolism | Signal Transduction | Embryonic Development | Image Processing, Computer-Assisted - methods | Iontophoresis - methods | Mice, Inbred ICR | Endoderm - metabolism | Phenotype | Animals | Gap Junctions - physiology | Biotin - pharmacology | Mice | SOXF Transcription Factors - genetics | Biotin - analogs & derivatives | Proteins | Asymmetry | Microscopy | Experiments | Symmetry
VISCERAL ENDODERM | GAP-JUNCTIONS | FROG EMBRYOS | SONIC HEDGEHOG | NODAL CILIA | BIOCHEMISTRY & MOLECULAR BIOLOGY | MOUSE EMBRYOS | EARLY STEP | BIOLOGY | LEFT-RIGHT AXIS | LEFT-RIGHT ASYMMETRY | PRIMARY CILIUM | Gap Junctions - metabolism | Endoderm - physiology | Gap Junctions - genetics | Gene Expression Profiling | Green Fluorescent Proteins - genetics | SOXF Transcription Factors - metabolism | Embryo, Mammalian - metabolism | Gastrointestinal Tract - embryology | Gastrointestinal Tract - physiology | Gene Expression Regulation, Developmental | Body Patterning | HMGB Proteins - genetics | HMGB Proteins - metabolism | Transgenes | Biotin - administration & dosage | Connexin 43 - genetics | Green Fluorescent Proteins - metabolism | Embryo, Mammalian - pathology | Connexin 43 - metabolism | Signal Transduction | Embryonic Development | Image Processing, Computer-Assisted - methods | Iontophoresis - methods | Mice, Inbred ICR | Endoderm - metabolism | Phenotype | Animals | Gap Junctions - physiology | Biotin - pharmacology | Mice | SOXF Transcription Factors - genetics | Biotin - analogs & derivatives | Proteins | Asymmetry | Microscopy | Experiments | Symmetry
Journal Article
Developmental Cell, ISSN 1534-5807, 2008, Volume 15, Issue 4, pp. 509 - 520
The cell movements underlying the morphogenesis of the embryonic endoderm, the tissue that will give rise to the respiratory and digestive tracts, are complex...
DEVBIO | STEM-CELLS | HNF-4 GENE | VISCERAL ENDODERM | NOTOCHORD FORMATION | DEFINITIVE ENDODERM | GENE-EXPRESSION | GERM LAYER FORMATION | DEVELOPMENTAL BIOLOGY | RED-FLUORESCENT-PROTEIN | MORPHOGENETIC MOVEMENT | ALPHA-FETOPROTEIN | CELL BIOLOGY | Immunohistochemistry | Green Fluorescent Proteins - metabolism | Extraembryonic Membranes - cytology | Mice, Transgenic | RNA, Messenger - metabolism | Embryo, Mammalian - metabolism | Endoderm - metabolism | Gastrointestinal Tract - embryology | Morphogenesis | Cell Lineage | Animals | In Situ Hybridization | Image Processing, Computer-Assisted | Embryo, Mammalian - cytology | Endoderm - cytology | Gene Expression Regulation, Developmental | Models, Biological | Gastrula | Extraembryonic Membranes - metabolism | Mice | Transgenes | Respiratory System - embryology | Embryo | live imaging | chimera | fluorescent protein | definitive endoderm | primitive streak | transthyretin | mouse embryo | transgenic | alpha-fetoprotein | visceral endoderm | gastrulation | epiblast
DEVBIO | STEM-CELLS | HNF-4 GENE | VISCERAL ENDODERM | NOTOCHORD FORMATION | DEFINITIVE ENDODERM | GENE-EXPRESSION | GERM LAYER FORMATION | DEVELOPMENTAL BIOLOGY | RED-FLUORESCENT-PROTEIN | MORPHOGENETIC MOVEMENT | ALPHA-FETOPROTEIN | CELL BIOLOGY | Immunohistochemistry | Green Fluorescent Proteins - metabolism | Extraembryonic Membranes - cytology | Mice, Transgenic | RNA, Messenger - metabolism | Embryo, Mammalian - metabolism | Endoderm - metabolism | Gastrointestinal Tract - embryology | Morphogenesis | Cell Lineage | Animals | In Situ Hybridization | Image Processing, Computer-Assisted | Embryo, Mammalian - cytology | Endoderm - cytology | Gene Expression Regulation, Developmental | Models, Biological | Gastrula | Extraembryonic Membranes - metabolism | Mice | Transgenes | Respiratory System - embryology | Embryo | live imaging | chimera | fluorescent protein | definitive endoderm | primitive streak | transthyretin | mouse embryo | transgenic | alpha-fetoprotein | visceral endoderm | gastrulation | epiblast
Journal Article
Fertility and Sterility, ISSN 0015-0282, 09/2019, Volume 112, Issue 3, pp. e33 - e33
Journal Article
Journal of Assisted Reproduction and Genetics, ISSN 1058-0468, 12/2017, Volume 34, Issue 12, pp. 1581 - 1585
Behind every successful IVF embryo transfer, there is a great game of chance. Methods seeking to tilt the balance and increase the likelihood of implantation...
Human Genetics | Mitochondria | IVF embryo selection | Medicine & Public Health | mtDNA | Gynecology | Mitochondrial DNA | Reproductive Medicine | REPRODUCTIVE BIOLOGY | COPY NUMBER | VIABILITY | DISEASE | GENETICS & HEREDITY | GENOME | OBSTETRICS & GYNECOLOGY | Fertilization in vitro | Fertility clinics | In vitro fertilization | Embryo transfer | Trophectoderm | Copy number | Biomarkers | Implantation | Quantitation | Embryos | Viability | Endometrium | Deoxyribonucleic acid--DNA | Review
Human Genetics | Mitochondria | IVF embryo selection | Medicine & Public Health | mtDNA | Gynecology | Mitochondrial DNA | Reproductive Medicine | REPRODUCTIVE BIOLOGY | COPY NUMBER | VIABILITY | DISEASE | GENETICS & HEREDITY | GENOME | OBSTETRICS & GYNECOLOGY | Fertilization in vitro | Fertility clinics | In vitro fertilization | Embryo transfer | Trophectoderm | Copy number | Biomarkers | Implantation | Quantitation | Embryos | Viability | Endometrium | Deoxyribonucleic acid--DNA | Review
Journal Article
Honolulu Star - Advertiser, 01/2011
[...] I just said, you know what, my health was being impacted, my home life with my wife was being impacted. [...] I said, "It's not worth it." [...] I...
Zoos
Zoos
Newspaper Article
genesis, ISSN 1526-954X, 06/2014, Volume 52, Issue 6, pp. 503 - 514
Journal Article
13.
Full Text
80 mosaic embryo transfers in a single clinic with in-house PGT-A: What we have learned
Reproductive BioMedicine Online, ISSN 1472-6483, 04/2019, Volume 38, pp. e17 - e18
Journal Article
14.
Full Text
Blastocysts with disproportionally high mtDNA copy number can result in healthy babies
Reproductive BioMedicine Online, ISSN 1472-6483, 04/2019, Volume 38, pp. e25 - e26
Journal Article
Philosophical Transactions: Biological Sciences, ISSN 0962-8436, 12/2014, Volume 369, Issue 1657, pp. 1 - 11
Despite the importance of the gut and its accessory organs, our understanding of early endoderm development is still incomplete. Traditionally, endoderm has...
Epithelial cells | Cell lines | Stem cells | Mesoderm | Embryonic stem cells | Pluripotent stem cells | Epithelium | Embryos | Endoderm | Mesenchymal stem cells
Epithelial cells | Cell lines | Stem cells | Mesoderm | Embryonic stem cells | Pluripotent stem cells | Epithelium | Embryos | Endoderm | Mesenchymal stem cells
Journal Article
Reproductive BioMedicine Online, ISSN 1472-6483, 03/2018, Volume 36, p. e29
Journal Article
Reproductive BioMedicine Online, ISSN 1472-6483, 03/2018, Volume 36, pp. e29 - e29
Journal Article
genesis, ISSN 1526-954X, 06/2014, Volume 52, Issue 6, pp. 503 - 514
Summary A central unresolved question in the molecular cascade that drives establishment of left–right (LR) asymmetry in vertebrates are the mechanisms...
LR asymmetry | node | Connexin | gut endoderm | gap junction intercellular communication | mouse embryo | Nodal, Sox17 | midline | gastrulation | lateral plate mesoderm | extracellular matrix | Gap junction intercellular communication | Gastrulation | Mouse embryo | Lateral plate mesoderm | Node | Extracellular matrix | Gut endoderm | Midline | LATERAL PLATE | TRANSCRIPTION | ENDODERM | DEVELOPMENTAL BIOLOGY | LEFT-RIGHT ASYMMETRY | CELL FATE | GAP-JUNCTIONS | NODAL FLOW | GENETICS & HEREDITY | LEFT-RIGHT AXIS | GENE-EXPRESSION | MUTATIONS | Gastrointestinal Tract - embryology | Animals | Signal Transduction | Humans | Embryonic Development - physiology | Endoderm - embryology | Mice | Gastrula - embryology | Morphogenesis - physiology | Body Patterning - physiology | Morphogenesis | Vertebrates | Relaying | Broken symmetry | Relay | Asymmetry | Signal transmission | Epithelium | Endoderm | Symmetry | Nodal | Sox17
LR asymmetry | node | Connexin | gut endoderm | gap junction intercellular communication | mouse embryo | Nodal, Sox17 | midline | gastrulation | lateral plate mesoderm | extracellular matrix | Gap junction intercellular communication | Gastrulation | Mouse embryo | Lateral plate mesoderm | Node | Extracellular matrix | Gut endoderm | Midline | LATERAL PLATE | TRANSCRIPTION | ENDODERM | DEVELOPMENTAL BIOLOGY | LEFT-RIGHT ASYMMETRY | CELL FATE | GAP-JUNCTIONS | NODAL FLOW | GENETICS & HEREDITY | LEFT-RIGHT AXIS | GENE-EXPRESSION | MUTATIONS | Gastrointestinal Tract - embryology | Animals | Signal Transduction | Humans | Embryonic Development - physiology | Endoderm - embryology | Mice | Gastrula - embryology | Morphogenesis - physiology | Body Patterning - physiology | Morphogenesis | Vertebrates | Relaying | Broken symmetry | Relay | Asymmetry | Signal transmission | Epithelium | Endoderm | Symmetry | Nodal | Sox17
Journal Article
Human Reproduction, ISSN 0268-1161, 10/2017, Volume 32, Issue 10, pp. 2149 - 2150
Journal Article
Honolulu Star - Advertiser, 01/2019
Newspaper Article
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