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GI Motility
Peristalsis = squeeze behind ยท relax ahead ยท one direction
Myenteric plexus coordinates contraction and relaxation waves
How peristalsis works โ the enteric nervous system in action
Peristalsis is coordinated by the enteric nervous system (the "second brain") โ 500 million neurons in the gut wall that function independently of the CNS. The myenteric (Auerbach's) plexus controls motility. The submucosal (Meissner's) plexus controls secretion. Peristaltic reflex: bolus detected โ contraction behind (ascending excitation via ACh) + relaxation ahead (descending inhibition via VIP/NO). Segmentation: rhythmic contractions that mix contents without propulsion โ dominant in small intestine. Mass movements: in colon, 1-3 times/day, propel contents to rectum โ triggered by gastrocolic reflex after eating.
Myenteric plexus
Between muscle layers โ controls motility. Peristalsis and segmentation.
Submucosal plexus
Controls secretion and blood flow. Senses luminal contents.
Segmentation
Mixing in small intestine โ optimizes digestion and absorption.
Gastrocolic reflex
Eating โ colonic mass movements โ urge to defecate. Explains post-meal urgency.
Gastric Secretion Phases
CEG โ Cephalic ยท Gastric ยท Intestinal
Three phases of gastric acid secretion โ before, during, and after food enters stomach
Three phases of gastric secretion โ what triggers HCl production at each stage
Cephalic phase (30%): sight, smell, taste, thought of food โ vagus nerve (CN X) โ stimulates gastrin release and direct ACh stimulation of parietal cells โ HCl secretion. Occurs BEFORE food reaches stomach. Gastric phase (60%): food in stomach โ stomach distension โ protein stimulates gastrin from G cells โ more HCl. Largest phase. Intestinal phase (10%): chyme in duodenum โ initially stimulates gastrin โ then inhibited by secretin and CCK as acid/fat detected โ reduces gastric secretion. Net effect: acid production is maximized when food is present and reduced when acid moves into duodenum.
Cephalic (30%)
Vagus nerve โ ACh โ parietal cells + G cells. Pavlov's dogs demonstrated this.
Gastric (60%)
Distension + protein โ gastrin from G cells โ parietal cells โ HCl. Largest phase.
Intestinal
Initially stimulatory, then inhibitory via secretin and CCK when acid/fat in duodenum.
Parietal cells
Stimulated by gastrin, ACh, histamine (H2). Blocked by PPIs and H2 blockers.
GI Hormones
GSC โ Gastrin ยท Secretin ยท CCK โ the three GI powerhouses
Six steps of dietary fat processing from gut lumen to bloodstream
How fats are digested and absorbed โ a completely different pathway from carbs and proteins
Fat digestion is unique because fats are insoluble in water. Bile salts emulsify fat globules โ large surface area for lipase. Pancreatic lipase breaks triglycerides โ fatty acids + monoglycerides. These combine with bile salts to form micelles โ tiny soluble packages. Micelles deliver fatty acids to enterocyte surface โ diffuse into enterocyte. Inside enterocyte: reassembled into triglycerides โ packaged with cholesterol and protein into chylomicrons. Chylomicrons enter lacteals (lymphatic capillaries) โ thoracic duct โ left subclavian vein โ bloodstream. This bypasses the portal system โ dietary fat goes to lymph, not portal blood.
Emulsification
Bile salts break large fat globules โ microdroplets โ more surface area for lipase.
Micelles
Bile salts + fatty acids + monoglycerides โ ferry fat to enterocyte brush border.
How proteins are digested โ and why pancreatic enzymes are secreted inactive
Protein digestion requires multiple enzymes to break peptide bonds. Pepsin: activated from pepsinogen by HCl in stomach โ begins protein digestion. Pancreatic proteases: secreted as INACTIVE zymogens to prevent self-digestion. Enterokinase (on duodenal brush border) activates trypsinogen โ trypsin โ trypsin then activates all other proteases (chymotrypsin, elastase, carboxypeptidase). Brush border peptidases and cytoplasmic peptidases complete digestion โ free amino acids and small peptides absorbed via secondary active transport (Na+ cotransport) โ portal blood. Acute pancreatitis: premature activation of proteases inside pancreas โ autodigestion.
Pepsinogen โ Pepsin
Activated by HCl (pH <2). Begins protein digestion in stomach.
Rate of gastric emptying depends on nutrient content and osmolarity
What controls how fast the stomach empties โ and why fat slows it down
Gastric emptying rate: liquids (fastest) > carbohydrates > proteins > fats (slowest). Fat slows emptying most because CCK and other enterogastrones released when fat enters duodenum inhibit gastric motility โ allowing time for fat digestion. Hyperosmolar solutions empty slower than isotonic. The pyloric sphincter regulates emptying โ opens to let small boluses through. Rapid gastric emptying (dumping syndrome): post-surgical, large amounts of hyperosmolar food reach small intestine quickly โ water pulled in โ osmotic diarrhea + hypoglycemia. Delayed emptying (gastroparesis): common in diabetes โ vagal neuropathy impairs motility.
Liquids
Fastest emptying โ no digestion needed. Water leaves in minutes.
Delayed emptying โ diabetic autonomic neuropathy. Nausea, early satiety, vomiting.
Pancreatic Secretion
Secretin = water and HCO3- ยท CCK = enzymes ยท Both from duodenum
Two components of pancreatic juice โ aqueous and enzymatic
What the pancreas secretes and what controls it
The exocrine pancreas secretes 1-2 L/day of pancreatic juice. Two components: Aqueous component: ductal cells produce water + bicarbonate (HCO3-) in response to secretin โ neutralizes acid chyme entering duodenum. Enzymatic component: acinar cells produce digestive enzymes in response to CCK and vagal stimulation โ proteases (zymogens), lipase, amylase, nucleases. The pH in the duodenum rises from ~2 (gastric) to ~7 after bicarbonate buffering โ essential because pancreatic enzymes work best at neutral pH. Cystic fibrosis: thick mucus blocks pancreatic ducts โ enzymes can't reach duodenum โ malabsorption.
What the colon actually does โ four functions beyond just waste storage
The colon receives ~1.5 L of liquid chyme from the ileum and reduces it to ~150 mL of stool. Primary function: water and electrolyte absorption (Na+ absorbed, K+ secreted). Colonic bacteria ferment undigested carbohydrates โ short-chain fatty acids (colonocyte fuel) + gas (H2, CO2, methane). Bacteria synthesize vitamin K and some B vitamins โ clinically important. Defecation reflex: stool enters rectum โ rectal wall stretches โ parasympathetic signals โ internal anal sphincter relaxes (involuntary) โ external sphincter under voluntary control. Diarrhea: too little water absorption or too much secretion. Constipation: too much water absorbed, slow transit.
Water absorption
1.5 L in โ 0.1 L out. Colon absorbs 90% of water it receives.
Bacterial synthesis
Vitamin K (critical for clotting). Antibiotics reduce vitamin K โ bleeding risk.
Gastrin (G cells, antrum): stimulates HCl secretion. Secretin (S cells, duodenum): triggered by acid โ stimulates pancreatic bicarbonate. CCK (I cells): triggered by fat/protein โ stimulates pancreatic enzymes + gallbladder. GIP: triggered by glucose/fat โ stimulates insulin release.
SSecretin โ pancreatic HCO3
GGastrin โ HCl secretion
CCCK โ enzymes + gallbladder
CGIP โ insulin release
Liver Functions
BADS-M โ Bile ยท Albumin ยท Detox ยท Storage ยท Metabolism
๐ Hepatic Physiology
The liver has over 500 functions โ BADS-M covers the exam essentials
Bile production (fat emulsification), albumin synthesis (oncotic pressure), detoxification (drugs, ammonia โ urea), glycogen storage + glucose release, lipid/cholesterol/protein metabolism. Also makes clotting factors (I, II, V, VII, IX, X) and activates vitamin D.
BBile โ fat emulsification
AAlbumin โ oncotic pressure
DDetox โ drugs, ammonia
SStorage โ glycogen, vitamins
MMetabolism โ lipids, proteins
Digestion of Macronutrients
CPF โ Carbs start in mouth ยท Protein in stomach ยท Fat in small intestine
๐ Nutrient Digestion
Where each macronutrient is primarily broken down in the GI tract
Carbohydrates: salivary amylase starts in mouth โ pancreatic amylase in SI โ brush border disaccharidases. Proteins: pepsin in stomach (pH 2) โ pancreatic proteases in SI. Fats: lingual lipase (mouth), gastric lipase โ bile emulsifies โ pancreatic lipase breaks into monoglycerides + fatty acids.
CCarbs โ amylase starts in mouth
PProtein โ pepsin in stomach
FFat โ bile + lipase in SI
Large Intestine Functions
WAVE โ Water ยท Absorption ยท Vitamins ยท Elimination
๐ Colon Physiology
The colon absorbs water, produces vitamins, and eliminates waste
~1.5L of water absorbed daily in colon. Gut bacteria synthesize vitamins K and B12. Haustral contractions mix contents; mass movements propel toward rectum. Defecation reflex: rectal distension โ relaxes internal sphincter โ voluntary external sphincter control.
WWater absorption (~1.5L/day)
AAbsorption of electrolytes
VVitamins K and B12 from bacteria
EElimination of waste
🎓 Common Exam Questions
Q: What are the four phases of swallowing and gastric emptying and what controls them?
A: Swallowing phases: (1) Oral (voluntary): tongue pushes bolus to pharynx. (2) Pharyngeal (involuntary): soft palate closes nasopharynx, epiglottis closes larynx, upper esophageal sphincter opens. (3) Esophageal: peristalsis carries bolus to stomach. Gastric emptying: liquid > solid. Delayed by fat and acid in duodenum (CCK, secretin). Accelerated by gastrin and motilin. Gastroparesis (delayed emptying) common in diabetes due to autonomic neuropathy.
Q: How does the stomach produce and regulate HCl secretion?
A: Parietal cells secrete HCl via H+/K+ ATPase (proton pump). Three stimulants: (1) Gastrin from G cells (antrum) โ most potent. (2) Histamine from ECL cells โ via H2 receptors. (3) Acetylcholine from vagus nerve (cephalic phase). Inhibited by: somatostatin, secretin (when duodenal pH drops), and high acid itself (negative feedback). PPIs (omeprazole) irreversibly block the H+/K+ ATPase. H2 blockers (ranitidine) block histamine receptors. Both reduce acid output.
Q: What are the functions of the liver and what happens when they fail?