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Nutrition Exam #2 Study Guide: Lipids, Proteins, Alcohol, and Energy Metabolism
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What are lipids?
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What are lipids?
Lipids are a group of energy-dense compounds including triglycerides, phospholipids, sterols, and fatty acids.
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What are lipids?
Lipids are a group of energy-dense compounds including triglycerides, phospholipids, sterols, and fatty acids.
Why are lipids energy-dense?
Lipids provide 9 kcal/g, making them more energy-dense than carbohydrates or proteins.
Types of fatty acids
Saturated (no double bonds), monounsaturated (one double bond), and polyunsaturated (two or more double bonds).
What are the two essential fatty acids?
Linoleic acid (omega-6) and alpha-linolenic acid (omega-3).
Structure of triglycerides
One glycerol molecule bonded to three fatty acids; main form of fat stored in the body.
Functions of triglycerides
Energy storage, insulation, and protection.
Role of phospholipids
Phospholipids form cell membranes and help regulate what enters and exits cells.
Functions of cholesterol
Component of cell membranes, precursor for steroid hormones, bile acids, and vitamin D.
Basic sequence of fat digestion and transport
Bile → emulsification → pancreatic lipase → fatty acids/monoglycerides → micelles → enterocytes → chylomicrons → lymph → blood.
Roles of lipoproteins
Chylomicrons transport dietary fat; VLDL, LDL, and HDL transport lipids in the blood with different health effects.
Four levels of protein structure
Primary (amino acid sequence), secondary (alpha helix/beta sheet), tertiary (3D folding), quaternary (multiple polypeptides).
Difference between essential and nonessential amino acids
Essential amino acids must be obtained from the diet; nonessential can be synthesized by the body.
Complete vs. incomplete proteins
Complete proteins contain all essential amino acids; incomplete proteins lack one or more essential amino acids.
Where does protein digestion occur?
Stomach (hydrochloric acid and pepsin) and small intestine (pancreatic and intestinal enzymes).
Uses of absorbed amino acids
Build body proteins, make enzymes/hormones, produce other compounds, and provide energy if needed.
Role of albumin in fluid balance
Albumin helps maintain fluid balance by creating oncotic pressure in blood plasma.
What is nitrogen balance?
The balance between nitrogen intake and loss, indicating protein status in the body.
Calories provided by alcohol
Alcohol provides 7 kcal/g but is not an essential nutrient.
How is alcohol made?
Fermentation by yeast converts sugars into ethanol and CO₂; distillation concentrates alcohol.
Standard drink equivalents
12 oz beer, 5 oz wine, and 1.5 oz distilled spirits each contain roughly the same alcohol amount.
Basic pathway of alcohol metabolism
Ethanol → acetaldehyde → acetate → acetyl-CoA, primarily metabolized in the liver.
Short-term effects of alcohol
Impaired judgment, reduced coordination, memory impairment, CNS depression, and risk of alcohol poisoning.
Chronic effects of excessive alcohol intake
Liver disease, pancreatitis, nutrient deficiencies, cardiovascular effects, increased cancer risk, hormonal changes.
Connection between alcohol and thiamine deficiency
Excessive alcohol use can cause thiamine deficiency leading to Wernicke-Korsakoff syndrome.
Definition of metabolism
All chemical reactions in the body, including catabolic (breakdown) and anabolic (building) processes.
What is ATP?
Adenosine triphosphate, the cell's primary energy currency, which releases energy when converted to ADP.
Four major stages of energy metabolism
Glycolysis (cytoplasm), acetyl-CoA formation (mitochondria), TCA cycle (mitochondria), electron transport chain (inner mitochondrial membrane).
Difference between glycolysis and TCA cycle
Glycolysis breaks glucose into pyruvate without oxygen; TCA cycle produces NADH and FADH₂ for aerobic ATP production.
How macronutrients enter energy metabolism
Carbohydrates → glucose → glycolysis; fats → fatty acids → beta-oxidation → acetyl-CoA; proteins → amino acids → various entry points.
Fed vs. fasting metabolic states
Fed state: insulin predominates, anabolic, stores energy; fasting state: glucagon predominates, catabolic, mobilizes energy.
Metabolic changes during prolonged fasting
Glycogen depletion, increased lipolysis, ketone body production, brain adapts to use ketones for energy.