The Blood Group Systems

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The Blood Group Systems
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Presentation transcript:

The Blood Group Systems                                                                                                                             Inheritance and Genetics

Of What is Blood Made?                        An adult human has about 4–6 liters of blood circulating in the body. Blood consists of several types of cells floating around in a fluid called plasma. The red blood cells (RBCs) contain haemoglobin, a protein that binds oxygen. RBCs transport oxygen to, and remove carbon dioxide from the tissues. The white blood cells fight infection. The platelets help the blood to clot, if you get a wound for example. The plasma contains salts and various kinds of proteins.  

ABO blood grouping system According to the ABO blood typing system there are four different kinds of blood types: A, B, AB or O (null). Bozeman Science Blood Type Video  

Blood Type Chart (memorize this)

Blood Types http://www.bloodbook.com/world-abo.html

AB0 blood grouping system                Blood group A If you belong to the blood group A, you have A antigens on the surface of your RBCs and B antibodies in your blood plasma.   Blood group B If you belong to the blood group B, you have B antigens on the surface of your RBCs and A antibodies in your blood plasma. AB0 blood grouping system

Blood Groups, Blood Typing and Blood Transfusions Blood group AB The discovery of blood groups                       Experiments with blood transfusions, the transfer of blood or blood components into a person's blood stream, have been carried out for hundreds of years. Many patients have died and it was not until 1901, when the Austrian Karl Landsteiner discovered human blood groups, that blood transfusions became safer. Mixing blood from two individuals can lead to blood clumping or agglutination. The clumped red cells can crack and cause toxic reactions. This can have fatal consequences. Karl Landsteiner discovered that blood clumping was an immunological reaction which occurs when the receiver of a blood transfusion has antibodies against the donor blood cells. Karl Landsteiner's work made it possible to determine blood types and thus paved the way for blood transfusions to be carried out safely. For this discovery he was awarded the Nobel Prize in Physiology or Medicine in 1930.   What is blood made up of?                        An adult human has about 4–6 liters of blood circulating in the body. Among other things, blood transports oxygen to various parts of the body. Blood consists of several types of cells floating around in a fluid called plasma. The red blood cells contain hemoglobin, a protein that binds oxygen. Red blood cells transport oxygen to, and remove carbon dioxide from, the body tissues. The white blood cells fight infection. The platelets help the blood to clot, if you get a wound for example. The plasma contains salts and various kinds of proteins. What are the different blood groups?                                                       The differences in human blood are due to the presence or absence of certain protein molecules called antigens and antibodies. The antigens are located on the surface of the red blood cells and the antibodies are in the blood plasma. Individuals have different types and combinations of these molecules. The blood group you belong to depends on what you have inherited from your parents. There are more than 20 genetically determined blood group systems known today, but the AB0 and Rh systems are the most important ones used for blood transfusions. Not all blood groups are compatible with each other. Mixing incompatible blood groups leads to blood clumping or agglutination, which is dangerous or individuals. Nobel Laureate Karl Landsteiner was involved in the discovery of both the AB0 and Rh blood groups. AB0 blood grouping system                Blood group AB If you belong to the blood group AB, you have both A and B antigens on the surface of your RBCs and no A or B antibodies at all in your blood plasma. Blood group O If you belong to the blood group O (null), you have neither A or B antigens on the surface of your RBCs but you have both A and B antibodies in your blood plasma.

ABO inheritance and genetics The ABO gene is autosomal (the gene is not on either sex chromosomes) The ABO gene locus is located on the chromosome 9. A and B blood groups are dominant over the O blood group A and B group genes are co-dominant Each person has two copies of genes coding for their ABO blood group (one maternal and one paternal in origin)

Possible Blood group Genotypes Parent Allele A B O AA AB AO BB BO OO

The Rhesus (Rh) System Well, it gets more complicated here, because there's another antigen to be considered - the Rh D antigen. Some of us have it, some of us don't. If it is present, the blood is RhD positive, if not it's RhD negative. So, for example, some people in group A will have it, and will therefore be classed as A+ (or A positive). While the ones that don't, are A- (or A negative). And so it goes for groups B, AB and O.

The Rhesus (Rh) System (Cont.) Rh antigens are transmembrane proteins with loops exposed at the surface of red blood cells. They appear to be used for the transport of carbon dioxide and/or ammonia across the plasma membrane. They are named for the rhesus monkey in which they were first discovered. RBCs that are "Rh positive" express the antigen designated D. 85% of the population is RhD positive, the other 15% of the population is running around with RhD negative blood.

Rh Blood Group and Rh Incompatibility A person with Rh- blood does not have Rh antibodies naturally in the blood plasma Blood Type Genotype Alleles Produced Rh positive RR R Rr R or r Rh negative rr r

Do you know which blood group you belong to? According to above blood grouping systems, you can belong to either of following 8 blood groups: Do you know which blood group you belong to?

                                                                            A person with Rh- blood can develop Rh antibodies in the blood plasma if he or she receives blood from a person with Rh+ blood, whose Rh antigens can trigger the production of Rh antibodies. A person with Rh+ blood can receive blood from a person with Rh- blood without any problems.

Distribution of A alleles

Distribution of B alleles

Distribution of O allele