Polish Society for Histamine Research

Popular science miscellany

Miscellaneous about histamine



Histamine is one of the most fascinating molecules in the human body. While most people associate it only with bothersome allergies and hay fever, it is actually a versatile messenger—regulating sleep, stimulating digestion, and even guarding our immune system. Discover the history of its discovery and learn why it is often called the body’s “molecular alarm.”

From Chemical Curiosity to Medical Breakthrough

The history of histamine began in a laboratory, not a clinic.

How Does Histamine Work? The Four Keys to the Body

Histamine doesn’t act on its own; it must bind to specific “docking stations” (receptors) on the cell surface. We have four main types of these receptors, each responsible for different functions:

H1 Receptor
(Allergy & Alertness)

Found in blood vessels and the brain. It is responsible for itching, runny nose, and airway constriction. In the brain, histamine acts like “natural coffee,” keeping us awake (which is why older allergy medications that block H1 receptors caused drowsiness).

H2 Receptor
(Digestion)

Located primarily in the stomach. When histamine binds to it, the stomach begins producing the hydrochloric acid necessary for digestion.

H3 Receptor
(Balance)

Acts like a thermostat in the brain. It regulates the release of other neurotransmitters, influencing mood and concentration.

H4 Receptor
(Immunity)

The most recently discovered, found on immune cells (such as in bone marrow and the spleen), directing white blood cells to sites of inflammation.

FOOD AND HISTAMINE

All foods produced using lactic acid fermentation, such as yogurt, fermented foods, wine, beer, cheese, pickled fish, and dried sausages, contain significant concentrations of histamine. It is produced from the amino acid L-histidine by bacterial histidine decarboxylase. When the human digestive tract is functioning properly, diamine oxidase, present in the mucosa of the intestinal villi, effectively breaks down the amine and prevents adverse symptoms. No adverse symptoms have been observed with oral administration of even 500 mg of histamine. However, when the structure of the intestinal villi is damaged (celiac disease, Crohn’s disease, food allergies, intestinal ulcers, and others), excess histamine absorbed in the intestines enters the systemic circulation.

Histamine in Numbers: When Does It Become Dangerous?

In healthy conditions, histamine concentration in human plasma is very low (averaging about 0.7 ng/ml). The body possesses precise mechanisms to neutralize it. However, if levels rise, the body reacts in a cascading fashion:

The DAO Barrier: Why Some People Can’t Handle Red Wine

The key to safely consuming histamine is the enzyme DAO (Diamine Oxidase), found in the intestines. It acts as a gatekeeper, breaking down histamine in food before it can enter the bloodstream.

When does the gatekeeper fail?

Where is Histamine Found?

In food, histamine is primarily formed through fermentation and the aging process. The longer a product “matures,” the higher its histamine content may be.