Autoantibodies that contribute to the destruction of beta cells contributes to the development of type I diabetes mellitus (DM)
Explanation:
The autoantibodies produced in the cells of the islet of Langerhans in the pancreas are the main contributors of type I diabetes mellitus, which is an autoimmune-mediated disease.
DM type I is caused due to inhibition of insulin secretion by the beta cells of the pancreas. The autoantibodies are produced due to the presence of autoantigens like GAD65 which causes autoimmune pathogenesis of the pancreatic beta cells.
Along with these autoantibodies, the T-cell receptors act as mediators in the destruction of beta cells which finally results in DM.
According to the research, the nurse should advise a client undergoing chemotherapy to avoid the consumption of sugars, white flours and fatty foods.
<h3>What is chemotherapy?</h3>
It is the treatment of cancer through a cellular alteration through the synthesis of proteins or nucleic acids, or through cell division itself.
Depending on the type of tumor, its location and chemotherapy, it is important that patients have good nutrition by avoiding and reducing the consumption of white or brown sugar, sweets, fatty foods, white flour, bread, pasta.
Therefore, we can conclude that according to the research, the nurse should advise a client undergoing chemotherapy to avoid the consumption of sugars, white flours and fatty foods.
Learn more about chemotherapy here: brainly.com/question/14958274
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Answer:
low academic achievement, obesity, behavioral problems and social and emotional development difficulties
Explanation:
Answer:
That answer will be true :)
Explanation:
Large-diameter nerve fibers conduct impulses much faster than small-diameter fibers. Large-diameter nerve fibers conduct impulses much faster than small-diameter fibers. A postsynaptic potential is a graded potential that is the result of a neurotransmitter released into the synapse between two neurons. In myelinated axons the voltage-regulated sodium channels are concentrated at the nodes of Ranvier