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Small intestine

Organ where most nutrient absorption occurs in digestion.

Small intestine

BruceBlaus . When using this image in external sources it can be cited as: Blaus · CC BY 3.0

The small intestine, or small bowel, is the section of the digestive tract where the body absorbs most nutrients from food. It sits between the stomach and the large intestine, and digestive juices from the pancreas and bile from the liver enter it through the pancreatic duct to help break down food. In a living person, it typically measures 3 to 5 meters (10 to 16.5 feet) long, though it can range from 3 to 10.5 meters depending on the person’s height and how it is measured; after death, it often appears longer, especially when empty. Despite being longer than the large intestine, it is called "small" because its diameter is narrower—about 1.5 centimeters in newborns after 35 weeks of gestation, and 2.5 to 3 centimeters in adults. On an abdominal X-ray, a diameter over 3 centimeters is considered abnormally dilated, while on a CT scan, the threshold is 2.5 centimeters. Thanks to folds, villi, and microvilli, the inner lining’s surface area averages about 30 square meters.

The small intestine has three distinct regions: the duodenum, jejunum, and ileum. The duodenum is the shortest, shaped like a "C" and 20 to 25 centimeters long, wrapping around the head of the pancreas. It receives chyme from the stomach, along with digestive enzymes from the pancreas and bile from the liver; the enzymes break down proteins, while bile emulsifies fats into micelles. Brunner’s glands in the duodenum produce a mucus-rich, alkaline secretion with bicarbonate, which, along with bicarbonate from the pancreas, neutralizes stomach acid in the chyme. The jejunum, about 2.5 meters long, is the midsection connecting the duodenum to the ileum. It has circular folds and villi that boost surface area, and here sugars, amino acids, and fatty acids are absorbed into the bloodstream. The suspensory muscle of the duodenum marks the border between the duodenum and jejunum. The ileum, the final section, is about 3 meters long and also has villi. It mainly absorbs vitamin B12, bile acids, and any nutrients not taken up by the jejunum. The ileum joins the large intestine’s cecum at the ileocecal junction. Both the jejunum and ileum are suspended in the abdomen by the mesentery, a part of the peritoneum that carries arteries, veins, lymph vessels, and nerves.

Blood reaches the small intestine from two branches of the aorta: the celiac trunk and the superior mesenteric artery. The duodenum gets blood from the celiac trunk via the superior pancreaticoduodenal artery and from the superior mesenteric artery via the inferior pancreaticoduodenal artery; both have anterior and posterior branches that meet and anastomose in the midline. The jejunum and ileum receive blood from the superior mesenteric artery, whose branches form arterial arcades within the mesentery—sometimes several layers deep. Straight vessels called vasa recta run from the innermost arcades to the intestinal walls.

At the microscopic level, the three sections look similar but have key differences. About 20,000 protein-coding genes are expressed in human cells, and 70% of these are active in the normal duodenum. Roughly 300 genes are more specifically expressed in the duodenum, with very few unique to the small intestine overall. Specific proteins, like fatty acid binding protein FABP6, appear in the mucosa’s glandular cells. Many genes more active in the small intestine, such as FABP2 and DEFA6 (found in Paneth cell granules), are also expressed in the duodenum.

The small intestine develops from the midgut of the primitive gut tube. By the fifth week of embryonic life, the ileum grows rapidly, forming a U-shaped primary intestinal loop. This loop lengthens so fast it protrudes through the umbilicus, then retracts back into the abdomen by week 10. Between weeks six and ten, the small intestine rotates anticlockwise (as viewed from the front), and after returning to the abdomen, it rotates another 180 degrees, creating the large intestine’s twisted shape.

Food enters the duodenum from the stomach through the pylorus, controlled by the pyloric sphincter. Most chemical digestion occurs in the small intestine, where numerous digestive enzymes break down nutrients for absorption.

length_typical_living_person
3–5 m (10–16+1⁄2 ft)
diameter_adult
2.5–3 cm (1–1+1⁄8 in)
parts
duodenum, jejunum, ileum
blood_supply
celiac trunk and superior mesenteric artery
key_function
absorption of nutrients

Quick Facts

Latin
intestinum tenue
Partof
Gastrointestinal tract
System
Digestive system
Artery
Superior mesenteric artery, jejunal arteries, ileal arteries
Vein
Hepatic portal vein, superior mesenteric vein
Nerve
Celiac ganglia, vagus
Lymph
Intestinal lymph trunk

Facts from the source article.

Lore & Background

The small intestine has three distinct regions – the duodenum, jejunum, and ileum. The duodenum, the shortest, is where preparation for absorption through small finger-like protrusions called intestinal villi begins. The jejunum is specialized for the absorption through its lining by enterocytes of small nutrient particles which have been previously digested by enzymes in the duodenum. The main function of the ileum is to absorb vitamin B12, bile salts, and whatever products of digestion were not absorbed by the jejunum. The length of the small intestine can vary greatly, from as short as 3 metres (10 feet) to as long as 10.5 m (34+1⁄2 ft), also depending on the measuring technique used. The typical length in a living person is 3–5 m (10–16+1⁄2 ft). The length depends both on how tall the person is and how the length is measured. Taller people generally have a longer small intestine and measurements are generally longer after death and when the bowel is empty. The small intestine develops from the midgut of the primitive gut tube. By the fifth week of embryological life, the entire midgut loop begins to grow longer at a very fast rate, forming a U-shaped fold called the primary intestinal loop. The loop grows so fast in length that it outgrows the abdomen and protrudes through the umbilicus. By week 10, the loop retracts back into the abdomen.

Reader's Guide

The small intestine is central to human digestion and nutrition. It is where most chemical digestion takes place, with enzymes from the pancreas and liver entering via the pancreatic duct. Proteins are degraded into small peptides and amino acids; lipids are broken down into fatty acids and glycerol with the help of bile salts; carbohydrates are degraded into simple sugars. The small intestine's enormous surface area, averaging 30 square metres due to folds, villi, and microvilli, allows efficient absorption of these nutrients into the bloodstream. Its three sections—duodenum, jejunum, and ileum—each have specialized roles: the duodenum prepares food for absorption, the jejunum absorbs most nutrients, and the ileum absorbs vitamin B12 and bile salts. The organ's blood supply comes from the celiac trunk and superior mesenteric artery, ensuring oxygen and nutrients reach its tissues. Understanding the small intestine is essential for grasping how the body extracts energy and building blocks from food, and its dysfunction can lead to malnutrition and other disorders.

Did You Know?

The Three-Part Architecture

The small intestine is organized into three distinct segments, each with a specialized role. The duodenum, the shortest at roughly 20 to 25 centimeters, takes on a C-shaped form that cradles the head of the pancreas. It is here that gastric chyme first meets pancreatic enzymes and bile, while Brunner's glands secrete an alkaline, mucus-rich fluid to neutralize the acidity of stomach contents. The jejunum stretches about 2.5 meters and serves as the primary site where sugars, amino acids, and fatty acids cross the intestinal lining into the bloodstream, aided by circular folds and finger-like villi that dramatically expand the absorptive surface. The ileum, the longest segment at approximately 3 meters, completes the absorption process by capturing vitamin B12, bile salts, and any residual nutrients the jejunum missed before handing off to the cecum at the ileocecal junction. Together, these three regions span roughly 6.5 meters in a typical adult, folding repeatedly to fit within the abdominal cavity.

The Chemistry of Digestion

The small intestine is the central stage where chemical digestion reaches its peak. Food passes from the stomach through the pyloric sphincter into the duodenum, where it encounters a coordinated wave of digestive secretions. Pancreatic enzymes, released in response to the hormone cholecystokinin, break down proteins, while bile from the liver emulsifies fats into tiny micelles. Another hormone, secretin, generated within the small intestine itself, prompts the pancreas to release additional bicarbonate to further buffer the acidic chyme. The jejunum then takes over as the principal absorption zone, where enterocytes in the mucosal lining pull digested sugars, amino acids, and fatty acids into the bloodstream. The ileum acts as a final sweep, harvesting vitamin B12, bile salts, and any remaining products of digestion. This sequential, hormone-driven choreography ensures that nearly every usable nutrient is captured before waste material moves on to the large intestine.

Embryonic Origins and the Intestinal Loop

The small intestine's remarkable length and coiled arrangement are the legacy of a dramatic embryonic journey. Originating from the midgut of the primitive gut tube, the developing intestine begins its rapid elongation by the fifth week of gestation. The ileum grows so quickly that it forms a U-shaped structure known as the primary intestinal loop, which outpaces the growing abdomen and temporarily protrudes through the umbilicus. By the tenth week, the loop retracts back into the abdominal cavity. During weeks six through ten, the entire structure rotates anticlockwise when viewed from the front of the embryo, and after re-entering the abdomen it completes an additional 180-degree turn. This sequence of growth, protrusion, retraction, and rotation is what produces the characteristic twisted configuration of the adult bowel. The process also explains why the small intestine, despite being roughly 6.5 meters long, must fold many times to occupy the relatively compact space of the abdomen.

Vascular Network and Molecular Identity

The small intestine is sustained by a richly branched vascular system drawn from two major aortic branches: the celiac trunk and the superior mesenteric artery. The duodenum receives dual supply through the superior and inferior pancreaticoduodenal arteries, whose anterior and posterior branches converge and anastomose along the midline. The jejunum and ileum are nourished by branches of the superior mesenteric artery that form layered arches called arterial arcades within the mesentery, from which straight vessels known as vasa recta reach the intestinal wall. At the molecular level, the duodenum expresses roughly 70 percent of the approximately 20,000 protein-coding genes active in human cells, with about 300 genes showing duodenal-specific expression. Proteins such as fatty acid binding protein FABP6 and DEFA6, found in Paneth cell secretory granules, exemplify the specialized molecular toolkit that distinguishes different regions of this remarkably versatile organ.

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Frequently Asked Questions

Who is Small intestine in Physiology & Medicine?

Small intestine (also called the small bowel) is the long tubular organ nestled between the stomach and the large intestine in the gastrointestinal tract. It is the primary site where digested food is broken down and its nutrients are absorbed into the bloodstream.

What are Small intestine's powers/role?

Its core function is absorbing the vast majority of nutrients from the food we eat. It receives bile and pancreatic secretions through the major duodenal papilla to help finish the digestive process before passing the remaining material onward.

How does Small intestine's story end?

Its narrative arc concludes at the ileocecal valve, where the ileum—its final segment—hands off the leftover chyme to the large intestine. From that junction, the small intestine's active role in nutrient absorption is complete.

Why is Small intestine important to the Physiology & Medicine canon?

Despite its modest diameter of roughly 2.5–3 cm in adults, it stretches 3 to 5 metres in a living person, giving it an enormous folded surface area for absorption. Without it, the body could not efficiently extract the vitamins, minerals, and macronutrients it needs to survive.

What are Small intestine's three parts?

The organ is divided into the duodenum, jejunum, and ileum, each with slightly different structural and functional specializations. Blood supply is delivered by the celiac trunk and the superior mesenteric artery, keeping all three segments well perfused.

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