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Cell and Developmental Biology Commons™
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Articles 1 - 30 of 32
Full-Text Articles in Cell and Developmental Biology
A Molecular Mechanism Of Epithelial To Mesenchymal Transition (Emt): An Evidence Based Lesson Applying Molecular Biology Through The Lens Of Cancer, Sophie Hasson, Melissa Rowland-Goldsmith
A Molecular Mechanism Of Epithelial To Mesenchymal Transition (Emt): An Evidence Based Lesson Applying Molecular Biology Through The Lens Of Cancer, Sophie Hasson, Melissa Rowland-Goldsmith
Open Educational Resources
This lesson aims to strengthen students’ critical thinking and molecular biology data analysis skills as well as their understanding of concepts related to the hallmark of cancer: tissue invasion and metastasis. Students begin by learning about the invasion of cancer cells, Epithelial-Mesenchymal Transition (EMT), and an important protein involved in EMT: E-cadherin. They then apply molecular biology knowledge to analyze data from multiple papers to infer the relationship between Snail and E-cadherin in different types of cancers. Next, they continue to interpret data from many papers to determine that a repressor transcription factor is present during EMT in cancer cells …
Viropana (Vna) 5, Abijeet Singh Mehta, Panagiotis A. Tsonis, Amit Singh
Viropana (Vna) 5, Abijeet Singh Mehta, Panagiotis A. Tsonis, Amit Singh
Components of a Regeneration Toolkit: Notophthalmus viridescens
Viropana (vna) 5
- ID – vna 5
- Details – Gene from a novel protein family belonging to the regeneration toolkit of Notophthalmus viridescens
- Base pairs – 391
Viropana (Vna) 1, Abijeet Singh Mehta, Panagiotis A. Tsonis, Amit Singh
Viropana (Vna) 1, Abijeet Singh Mehta, Panagiotis A. Tsonis, Amit Singh
Components of a Regeneration Toolkit: Notophthalmus viridescens
Viropana (vna) 1
-
ID – vna 1
-
Details – Gene from a novel protein family belonging to the regeneration toolkit of Notophthalmus viridescens
-
Base pairs – 492
Viropana (Vna) 2, Abijeet Singh Mehta, Panagiotis A. Tsonis, Amit Singh
Viropana (Vna) 2, Abijeet Singh Mehta, Panagiotis A. Tsonis, Amit Singh
Components of a Regeneration Toolkit: Notophthalmus viridescens
Viropana (vna) 2
- ID – vna 2
- Details – Gene from a novel protein family belonging to the regeneration tool kit of Notophthalmus viridescens
- Base pairs – 396
Viropana (Vna) 4, Abijeet Singh Mehta, Panagiotis A. Tsonis, Amit Singh
Viropana (Vna) 4, Abijeet Singh Mehta, Panagiotis A. Tsonis, Amit Singh
Components of a Regeneration Toolkit: Notophthalmus viridescens
Viropana (vna) 4
- ID – vna 4
- Details – Gene from a novel protein family belonging to the regeneration toolkit of Notophthalmus viridescens
- Base pairs – 501
Viropana (Vna) 3, Abijeet Singh Mehta, Panagiotis A. Tsonis, Amit Singh
Viropana (Vna) 3, Abijeet Singh Mehta, Panagiotis A. Tsonis, Amit Singh
Components of a Regeneration Toolkit: Notophthalmus viridescens
Viropana (vna) 3
- ID – vna 3
- Details – Gene from a novel protein family belonging to the regeneration toolkit of Notophthalmus viridescens
- Base pairs – 426
Spreading Mechanics And Differentiation Of Astrocytes During Retinal Development, Tracy Stepien, Timothy W. Secomb
Spreading Mechanics And Differentiation Of Astrocytes During Retinal Development, Tracy Stepien, Timothy W. Secomb
Biology and Medicine Through Mathematics Conference
No abstract provided.
Profiling Of Small Non-Coding Rna In Bovine Somatic Cell Nuclear Transfer Embryos During Early Development Through The Maternal-To-Embryonic Transition, Abby D. Benninghoff, Jocelyn Cuthbert
Profiling Of Small Non-Coding Rna In Bovine Somatic Cell Nuclear Transfer Embryos During Early Development Through The Maternal-To-Embryonic Transition, Abby D. Benninghoff, Jocelyn Cuthbert
Browse all Datasets
Supplementary File 1. Read lengths and annotation summaries of sncRNA: Microsoft Excel document with information from small RNA sequencing on the aligned, annotated reads.
Supplementary File 2. Normalized and variance-stabilized values for annotated sncRNAs: Microsoft Excel document with normalized and variance-stabilized reads generated by RNA sequencing of small non-coding RNA from cattle embryos.
Supplementary File 3. Results of DESeq2 analyses for miRNAs, tRNA fragments and piRNAs: Microsoft Excel document with results of DESeq2 differential expression analysis comparing scNT vs IVF embryos at each developmental stage and sequential comparisons of developmental stage for both IVF and scNT embryos.
Supplementary File 4. …
Mapping Transcriptional Changes Associated With The Maternal-To-Embryonic Transition In Bovine Embryos To Small Non-Coding Rna Profiles In Both In Vitro-Fertilized And Scnt Cattle Embryos, Abby D. Benninghoff, Jocelyn Cuthbert
Mapping Transcriptional Changes Associated With The Maternal-To-Embryonic Transition In Bovine Embryos To Small Non-Coding Rna Profiles In Both In Vitro-Fertilized And Scnt Cattle Embryos, Abby D. Benninghoff, Jocelyn Cuthbert
Browse all Datasets
Supplementary File 1. Normalized reads for annotated mRNA transcripts. Microsoft Excel document providing normalized sequencing reads per sample.
Supplementary File 2. Results of DESeq2 analyses for annotated mRNAs. Microsoft Excel document with results of DESeq2 differential expression analysis comparing scNT vs IVF embryos at each developmental stage and sequential comparisons of developmental stage for both IVF and scNT embryos.
Supplementary File 3. Results of Metascape ontology analyses for differentially expressed mRNAs. Microsoft Excel document with results of Metascape ontology analyses for biological processes associated with predicted mRNA targets of differentially expressed miRNAs.
Supplementary File 4. Cytoscape networks for differentially expressed …
Glial Bridge Development: 26 Hpf, Barresi Lab, Smith College
Glial Bridge Development: 26 Hpf, Barresi Lab, Smith College
Glial Bridge
No abstract provided.
Glial Bridge Development: 24 Hpf, Barresi Lab, Smith College
Glial Bridge Development: 24 Hpf, Barresi Lab, Smith College
Glial Bridge
No abstract provided.
Glial Bridge Development: 30 Hpf, Barresi Lab, Smith College
Glial Bridge Development: 30 Hpf, Barresi Lab, Smith College
Glial Bridge
No abstract provided.
Glial Bridge Development: 28 Hpf, Barresi Lab, Smith College
Glial Bridge Development: 28 Hpf, Barresi Lab, Smith College
Glial Bridge
No abstract provided.
Slit1a Rescue: Role Of Slit1a, Hss1a, Barresi Lab, Smith College
Slit1a Rescue: Role Of Slit1a, Hss1a, Barresi Lab, Smith College
Role of slit1a
No abstract provided.
Slit1a Rescue: Role Of Slit1a, Hss1ayot, Barresi Lab, Smith College
Slit1a Rescue: Role Of Slit1a, Hss1ayot, Barresi Lab, Smith College
Role of slit1a
No abstract provided.
Slit1a Rescue: Role Of Slit1a, Non-Hss1ayot, Barresi Lab, Smith College
Slit1a Rescue: Role Of Slit1a, Non-Hss1ayot, Barresi Lab, Smith College
Role of slit1a
No abstract provided.
Slit1a Rescue: Role Of Slit1a, Wt, Barresi Lab, Smith College
Slit1a Rescue: Role Of Slit1a, Wt, Barresi Lab, Smith College
Role of slit1a
No abstract provided.
Validation Experiment: Wild Type, Raw, Gfap, Barresi Lab, Smith College
Validation Experiment: Wild Type, Raw, Gfap, Barresi Lab, Smith College
Validation Experiment
No abstract provided.
Validation Experiment: Wild Type, Psi, Barresi Lab, Smith College
Validation Experiment: Wild Type, Psi, Barresi Lab, Smith College
Validation Experiment
No abstract provided.
Glial Bridge Development: 22 Hpf, Barresi Lab, Smith College
Glial Bridge Development: 22 Hpf, Barresi Lab, Smith College
Glial Bridge
No abstract provided.
Validation Experiment: Wild Type, Probability, Barresi Lab, Smith College
Validation Experiment: Wild Type, Probability, Barresi Lab, Smith College
Validation Experiment
No abstract provided.
Validation Experiment: Wild Type, Raw, At, Barresi Lab, Smith College
Validation Experiment: Wild Type, Raw, At, Barresi Lab, Smith College
Validation Experiment
No abstract provided.
Validation Experiment: You-Too, Probability, Barresi Lab, Smith College
Validation Experiment: You-Too, Probability, Barresi Lab, Smith College
Validation Experiment
No abstract provided.
Validation Experiment: You-Too, Psi, Barresi Lab, Smith College
Validation Experiment: You-Too, Psi, Barresi Lab, Smith College
Validation Experiment
No abstract provided.
Validation Experiment: You-Too, Raw, Barresi Lab, Smith College
Validation Experiment: You-Too, Raw, Barresi Lab, Smith College
Validation Experiment
No abstract provided.
Network Analyses Of Glomerular Capillaries, Jason Cory Brunson, Justin Sardi, Mark Terasaki
Network Analyses Of Glomerular Capillaries, Jason Cory Brunson, Justin Sardi, Mark Terasaki
Biology and Medicine Through Mathematics Conference
No abstract provided.
Explicitly Separating Growth And Motility In A Glioblastoma Tumor Model, Tracy Stepien, Erica Rutter, Meng Fan, Yang Kuang
Explicitly Separating Growth And Motility In A Glioblastoma Tumor Model, Tracy Stepien, Erica Rutter, Meng Fan, Yang Kuang
Biology and Medicine Through Mathematics Conference
No abstract provided.
Force Generation And Contraction Of Random Actomyosin Bundles., Dietmar B. Oelz
Force Generation And Contraction Of Random Actomyosin Bundles., Dietmar B. Oelz
Biology and Medicine Through Mathematics Conference
No abstract provided.
Human Anatomy And Physiology Preparatory Course: Part 2 Of 4 (Interactive), Carlos Liachovitzky
Human Anatomy And Physiology Preparatory Course: Part 2 Of 4 (Interactive), Carlos Liachovitzky
Open Educational Resources
The overall purpose of these preparatory course set of learning objectives is to help students familiarize with some terms and some basic concepts they will find later in the Human Anatomy and Physiology I course.
These 40+ learning objectives to prepare for Human Anatomy and Physiology can be downloaded and played in a desktop, or laptop (windows exe file).
The entire course has four parts:
Each learning objective is followed by a set of multiple choice question similar to those found later in a Human Anatomy and Physiology course.
Human Anatomy And Physiology Preparatory Course: Part 3 Of 4 (Interactive), Carlos Liachovitzky
Human Anatomy And Physiology Preparatory Course: Part 3 Of 4 (Interactive), Carlos Liachovitzky
Open Educational Resources
he overall purpose of these preparatory course set of learning objectives is to help students familiarize with some terms and some basic concepts they will find later in the Human Anatomy and Physiology I course.
These 40+ learning objectives to prepare for Human Anatomy and Physiology can be downloaded and played in a desktop, or laptop (windows exe file).
The entire course has four parts:
Each learning objective is followed by a set of multiple choice question similar to those found later in a Human Anatomy and Physiology course.