Welcome to Labster - Simple Student Guide. Explain the principle of different ELISA techniques, Apply sandwich ELISA to quantify protein samples, Analyze the standard curve of ELISA experiment, Understand the function of reagents and equipment used in ELISA, Describe the basic troubleshooting process of ELISA, Distinguish vertical gene transfer from horizontal gene transfer, Understand the concept of genetic variability and survivability in bacteria, Describe the concept of horizontal gene transfer, Identify genetic elements and cell machinery required for DNA transfer, Outline the main events that occur during conjugation, transformation, and transduction, Discuss the outcome and barrier of genetic transfer in bacteria, Explain the importance of correctly identifying pathogenic bacteria, Outline the principle of the main bacterial identification methods, Describe the use and limitations of bacterial morphology and differential staining techniques, Critically combine biochemical tests such as the catalase, oxidase and indole test with differential staining and differential media to identify pathogenic bacteria, Understand different microscopy techniques and their limitations, Identify various cell types and cellular structures, Understand coeliac disease and intestinal inflammation, Understand the different steps in sample preparation, cluster generation, sequencing and data processing, Understand the characteristics of ancient DNA, Understand that Single Nucleotide Polymorphism (SNP) can be tightly correlated to a specific physical feature, Understand the concept of food spoilage and shelf life, Understand the principle of pasteurization and sterilization, Analyze the parameters of High-Temperature-Time-Treatment (HTST) pasteurization, Perform canning as a method of sterilization, Understand how plastic and metal can be used as materials for packaging, Explain how to interpret Western Blot results, Explain receptor tyrosine kinase (RTK) cell signaling, Analyze dysregulated signal transduction in human cancer cells, Understand the connection between angiogenesis and tumor growth, Investigate the involvement of vascular endothelial growth factor receptor (VEGFR) signaling in human breast cancer, Understand the translation process from mRNA to amino acid, Understand the post-translational modification, Understand the protein synthesis processing in the ribosome, Understand the primary, secondary, tertiary and quaternary structures of protein, Understand the basic principles of mass spectrometry (MALDI-TOF), Explain the principles and importance of intracellular signal transduction, Describe the structure of the Gram-positive and Gram-negative bacteria, Appreciate theoretical and technical aspects of the Gram staining procedure, Know the most commonly made mistakes in Gram staining, Critically interpret the results of a Gram staining experiment using a light microscope. Publicado el . electrostatic interactions, Van der Waals forces, hydrophobic interactions and hydrogen bonds. Users complete tasks in the 3D environment, interact with lab equipment, view animations, read background material, and answer test questions. (Agglutination means the clumping together of particles). D) They are molecules capable of triggering an immune reaction, How many polypeptides chain build up an antibody? The mother's immune system recognizes the Rhesus antigens on the fetal red blood cells as foreign and begns to produce antibodies against them. 2.4: The ABO system. Recognize potential sources of contamination. a. NADPH \rightarrow O2 CO2\rightarrow CO_2CO2 Discuss the fundamental need for the immune system, Identify physical and chemical barriers against pathogen invasion, Describe mechanisms of immune evasion by pathogens, Predict the outcome of scenarios of immune deficiency, Summarize the key features of innate and adaptive immune responses, Classify immune cell types by their role in responses, Define immunological memory and its importance, Explain the importance of lymphocyte clonal selection & deletion processes, Explain the concept of diagnostic serology, Identify common features and principles of serological methods, Compare the applications for serological methods in biomedical research and healthcare, Understand the basic principles and practical aspects of light microscopy, Explain the function of different parts of the microscope, Compare the terms magnification, contrast, and resolution, Describe the application and limitations of light microscopy in biology, Understand the need for sample preparation, Identify the chemical reagents and equipment used in the litmus test. a) When maternal and fetal Rhesus status are the same b) When maternal and fetal Rhesus status are different c) It usually doesn't cause any problems d) When the father of the baby is unknown, Red blood cell count is typically decreased in HDN because. Once form, pathogens. Students could quickly lose track as the lesson proceeds, and the teacher introduces new blood types, antigens, and antibodies. Understand the role voltage-gated channels play in determining the shape of an action potential. Part 1 Complete Labster Hematology: Introduction to Blood 10, Part 2 5 (1) 30. points. Q: Targeting vectors use homologoues . ( These cells require a continuous supply of oxygen and nutrients Differentiate between disinfectants, antiseptics, and antimicrobials. Your blood type is important not only when it comes to donations of red cells, but also when were talking about donations of plasma, which contains certain antibodies depending on your blood type. What are the four types of bonds in an antibody-antigen complex? Because you are in free-fall, you are in a reference frame in which there is no effective gravity, so the water collects at the end of the tube in an expanding sphere centered on the end of the tube. point), Why is blood type O neg called the universal donor? Select an appropriate antimicrobial to target a given microorganism. 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You attach a tube to the water supply in your cabin and mount the open end of the tube in a fixed position in the air in the middle of your cabin. Ever wondered why some blood types arent compatible with others? Gases diffuse (a) from an area of high concentration to an area of low concentration (b) from an area of low concentration to an area of high concentration (c)(c)(c) directly from the cells to the air passages (d) from the alveoli to the cells. So, if someone with Type O blood was to try and donate plasma to someone with Type B blood, that plasma would contain anti-A and anti-B antibodies. The antibodies formed a complex with antigens on the surface of red blood cells. Dive into the inner workings of the different blood components with immersive 3D animatio . Discover what antigens and antibodies have to do with blood type, and learn why mixing certain different blood types together can cause problems. when can rhesus incompatibility cause problems? Process of an eggs journey and the structure of the female reproductive system. as well as a means of removing waste byproducts. We just received blood from a donor with a B-be negative blood type. samples from a mother and her unborn child, to determine whether or not they are compatible. You can now upload the .zip file into your LMS by the following these instructions: Understand the structure and function of antibodies, Understand the formation of the antibody-antigen complex, Name the four major blood types (phenotypes) in the ABO system, Explain the principles of blood typing using Eldon cards, Describe rhesus incompatibility and hemolytic disease, Culture your sample without contamination, Understand the principles of aseptic technique for the prevention of infection and contamination, Use sterile equipment and consumables correctly, State potential sources of microbial contamination, Describe and differentiate between the most common shapes of bacteria, Describe the movement of each of the bacterial shapes, Differentiate between gram-positive and gram-negative cell walls, Relate the structure of bacterial cell envelopes to Gram stain outcomes, Learn how transporters keep cells healthy, Describe the plasma membrane structure using the fluid mosaic model, Recognize the relative permeability of lipid bilayers to different classes of molecule, Compare active and passive transport of molecules, Identify the 3 modes of active transport and the different classes of ion channel and carrier molecules, Relate the expression of specific transport proteins to the cells role, Describe the general bacterial cell structure and function. do you know when rhesus incompatibility can cause problems? IV=vdA. labster antibodies why are some blood types incompatible quizlet. The immune system will go into attack mode and antibodies will be produced to help fight off the unfamiliar visitors. a) When maternal and fetal Rhesus status are the same b) When maternal and fetal Rhesus status are different c) It usually doesn't cause any problems d) When the father of the baby is unknown, Do you know when rhesus incompatibility can cause problems? If the child is RH positive, the RH antibodies produce by the mother's immune system can pass B) 2. Type AB blood has both Groups A and B antigens but doesn't make antibodies for either one. How much higher is the avidity of IgMeye G M compared to IgGeye G G assumed that both isotypes have the same affinity? samples from a mother and her unborn child, to determine whether or not they are compatible. It is a protein that specifically degrades viral RNA. Which cell type produces antibodies? types incompatible?, CBC: complete blood count WBC: white blood cell, Copyright 2023 StudeerSnel B.V., Keizersgracht 424, 1016 GC Amsterdam, KVK: 56829787, BTW: NL852321363B01, The body is a complex multicellular organism that comprises trillions of cells working together as, tissues, organs, and systems. Explore the immune system and save the world! For example: This means that its important to get the right donor blood type if you need a transfusion. Typically IgM is raised against A and B antigen, which cant cross the placenta. that protect us from harmful intruders, they can sometimes cause problems. (1 point). Set up a serial dilution of a bacterial culture and describe why they are used.
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