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Multiple Choice
If a person's blood sugar level rises to 120 mg/100 mL after a meal, which physiological response is most likely to occur to restore homeostasis?
A
The kidneys excrete more glucose into the urine.
B
The pancreas releases insulin, promoting glucose uptake by cells.
C
The liver converts glucose to amino acids for protein synthesis.
D
The pancreas releases glucagon, stimulating the liver to release glucose.
Verified step by step guidance
1
Step 1: Understand the concept of homeostasis. Homeostasis refers to the body's ability to maintain a stable internal environment, such as blood sugar levels, despite external changes. When blood sugar levels rise after a meal, the body activates mechanisms to bring them back to normal levels.
Step 2: Identify the role of insulin in blood sugar regulation. Insulin is a hormone released by the pancreas in response to high blood sugar levels. It promotes the uptake of glucose by cells, especially muscle and fat cells, and stimulates the liver to store glucose as glycogen.
Step 3: Eliminate incorrect options. The kidneys excreting more glucose into the urine is not the primary response to high blood sugar; this occurs only in cases of uncontrolled diabetes. The liver converting glucose to amino acids for protein synthesis is not a typical physiological response. The release of glucagon by the pancreas stimulates the liver to release glucose, which would increase blood sugar levels, not decrease them.
Step 4: Focus on the correct physiological response. The pancreas releases insulin to lower blood sugar levels by promoting glucose uptake by cells and storage in the liver as glycogen. This is the body's primary mechanism to restore homeostasis after a meal.
Step 5: Conclude that the correct answer is: 'The pancreas releases insulin, promoting glucose uptake by cells,' as this aligns with the body's natural response to elevated blood sugar levels.