Molecular Biomedical Engineering

This class was created by Brainscape user Mia Escudero. Visit their profile to learn more about the creator.

Decks in this class (8)

All About Proteins
Learning Objectives - Discuss the shape and structure of proteins, including their chemical makeup - Explain the four hierarchical levels of protein structure - Discuss types of proteins and their functions - Discuss diseases related to protein malformations
31  cards
Alzheimer's Disease
Ad is the most common cause of ___,
What are 2 molecular characteriza...,
Describe amyloid beta plaques
24  cards
Covalent and Noncovalent Interactions
Learning Objectives - Review the electronic structure of an atom - Describe the different types of noncovalent interactions - Understand the consequences of noncovalent interactions in the behavior of biomolecules
17  cards
Biochemical Energetics
Learning Objectives - Describe the characteristics of protein binding sites - Understand the law of mass action kinetics - Review techniques to determine protein-ligand binding affinity
32  cards
AD Histopathology
Learning Objectives - Identify histopathology techniques used to identify hallmarks of AD - Identify and explain different stains used in various histopathology techniques: Congo Red, Thioflavin S, Silver Staining, IHC
23  cards
Proteomics
Learning Objectives - Outline concepts of protein separation and proteomic techniques - Describe interactions among proteins and between proteins and other molecules
20  cards
The Lipid Bilayer
Learning Objectives - Understand the composition and the structural organization of the lipid bilayer - Describe the structure and function of membrane proteins - Discuss the synthesis and intracellular movement of phospholipids, sphingolipids, and cholesterol - Discuss the engineering membrane proteins for biomedical applications
36  cards
Protein Trafficking
Learning Objectives - Explain the mechanisms by which proteins are transported in the eukaryotic cell - Detail the difference between protein transport mechanisms within the context of specific organelles (gated, transmembrane, vesicular) - Highlight vesicular trafficking mechanisms via case study: the role of protein trafficking in osteoclasts
24  cards

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Molecular Biomedical Engineering

  • Class purpose General learning

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