Tobacco use disorder

Last updated: June 19, 2025

Tobacco use disorder

M&M Exam 1

M&M Exam 1

Major depressive disorder
Bipolar and related disorders
Suicide
Major depressive disorder with seasonal pattern
Generalized anxiety disorder
Panic disorder
Social anxiety disorder
Phobias
Agoraphobia
Premenstrual dysphoric disorder
Obsessive-compulsive disorder
Body dysmorphic disorder
Body focused repetitive disorders
Post-traumatic stress disorder
Physical and sexual abuse
Schizoaffective disorder
Schizophreniform disorder
Delusional disorder
Schizophrenia
Delirium
Dissociative disorders
Amnesia
Bulimia nervosa
Anorexia nervosa
Cluster A personality disorders
Cluster B personality disorders
Cluster C personality disorders
Somatic symptom disorder
Factitious disorder
Tobacco use disorder
Cannabis use disorder
Alcohol use disorder
Opioid use disorder
Cocaine use disorder
Bruxism
Insomnia
Narcolepsy (NORD)
Night terrors
Nocturnal enuresis
Attention deficit hyperactivity disorder
Disruptive, impulse control, and conduct disorders
Learning disability
Fetal alcohol syndrome
Tourette syndrome
Autism spectrum disorder
Rett syndrome
Shaken baby syndrome
Enuresis
Encopresis
Serotonin syndrome
Neuroleptic malignant syndrome
Mood disorders: Pathology review
Amnesia, dissociative disorders and delirium: Pathology review
Personality disorders: Pathology review
Eating disorders: Pathology review
Psychological sleep disorders: Pathology review
Psychiatric emergencies: Pathology review
Drug misuse, intoxication and withdrawal: Hallucinogens: Pathology review
Malingering, factitious disorders and somatoform disorders: Pathology review
Trauma- and stress-related disorders: Pathology review
Schizophrenia spectrum disorders: Pathology review
Drug misuse, intoxication and withdrawal: Stimulants: Pathology review
Drug misuse, intoxication and withdrawal: Alcohol: Pathology review
Developmental and learning disorders: Pathology review
Childhood and early-onset psychological disorders: Pathology review
Selective serotonin reuptake inhibitors
Serotonin and norepinephrine reuptake inhibitors
Tricyclic antidepressants
Monoamine oxidase inhibitors
Atypical antidepressants
Typical antipsychotics
Atypical antipsychotics
Lithium
Nonbenzodiazepine anticonvulsants
Anticonvulsants and anxiolytics: Barbiturates
Anticonvulsants and anxiolytics: Benzodiazepines
Psychomotor stimulants
Bones of the cranium
Anatomy of the cranial base
Anatomy of the cerebral cortex
Anatomy of the cerebellum
Anatomy of the cranial meninges and dural venous sinuses
Anatomy of the brainstem
Anatomy of the basal ganglia
Anatomy of the white matter tracts
Anatomy of the limbic system
Anatomy of the blood supply to the brain
Anatomy of the diencephalon
Anatomy of the vertebral canal
Anatomy of the descending spinal cord pathways
Anatomy clinical correlates: Vertebral canal
Anatomy clinical correlates: Spinal cord pathways
Introduction to the cranial nerves
Cranial nerve pathways
Anatomy of the olfactory (CN I) and optic (CN II) nerves
Anatomy of the oculomotor (CN III), trochlear (CN IV) and abducens (CN VI) nerves
Anatomy of the trigeminal nerve (CN V)
Anatomy of the facial nerve (CN VII)
Anatomy of the glossopharyngeal nerve (CN IX)
Anatomy of the spinal accessory (CN XI) and hypoglossal (CN XII) nerves
Anatomy of the vagus nerve (CN X)
Nervous system anatomy and physiology
Cerebral circulation
Neuron action potential
Cranial nerves
Ascending and descending spinal tracts
Pyramidal and extrapyramidal tracts
Somatosensory receptors
Somatosensory pathways
Parasympathetic nervous system
Cerebellum
Basal ganglia: Direct and indirect pathway of movement
Memory
Sleep
Consciousness
Learning
Stress
Language
Emotion
Attention
Spina bifida
Chiari malformation
Dandy-Walker malformation
Syringomyelia
Tethered spinal cord syndrome
Aqueductal stenosis
Septo-optic dysplasia
Cerebral palsy
Spinocerebellar ataxia (NORD)
Transient ischemic attack
Ischemic stroke
Intracerebral hemorrhage
Epidural hematoma
Subdural hematoma
Subarachnoid hemorrhage
Saccular aneurysm
Arteriovenous malformation
Broca aphasia
Wernicke aphasia
Wernicke-Korsakoff syndrome
Kluver-Bucy syndrome
Concussion and traumatic brain injury
Seizures and epilepsy
Febrile seizure
Early infantile epileptic encephalopathy (NORD)
Tension headache
Cluster headache
Migraine
Idiopathic intracranial hypertension
Trigeminal neuralgia
Cavernous sinus thrombosis
Alzheimer disease
Vascular dementia
Frontotemporal dementia
Dementia with Lewy bodies
Creutzfeldt-Jakob disease
Normal pressure hydrocephalus
Torticollis
Essential tremor
Restless legs syndrome
Parkinson disease
Huntington disease
Opsoclonus myoclonus syndrome (NORD)
Multiple sclerosis
Central pontine myelinolysis
Acute disseminated encephalomyelitis
Transverse myelitis
JC virus (Progressive multifocal leukoencephalopathy)
Adult brain tumors
Acoustic neuroma (schwannoma)
Pituitary adenoma
Pediatric brain tumors
Brain herniation
Brown-Sequard Syndrome
Cauda equina syndrome
Treponema pallidum (Syphilis)
Vitamin B12 deficiency
Friedreich ataxia
Neurogenic bladder
Meningitis
Neonatal meningitis
Encephalitis
Brain abscess
Epidural abscess
Auditory transduction and pathways
Vestibular transduction
Anatomy and physiology of the eye
Photoreception
Anatomy and physiology of the ear
Vestibulo-ocular reflex and nystagmus
Optic pathways and visual fields
Olfactory transduction and pathways
Taste and the tongue
Blood brain barrier
Cerebrospinal fluid
Motor cortex
Spinal cord reflexes
Sympathetic nervous system
Adrenergic receptors
Cholinergic receptors
Enteric nervous system
Anatomy of the eye
Anatomy of the orbit
Anatomy of the inner ear
Anatomy of the external and middle ear

Transcript

Watch video only

There are over a billion people who smoke tobacco around the world, which makes it one of the most popular psychoactive substances used in society.

The majority of tobacco users smoke cigarettes, but some smoke cigars or pipes, chew tobacco, or practice snuffing, which is where ground-up tobacco leaves are pushed up the nose.

Given the popularity of tobacco as well as its negative health consequences, it’s considered one of the leading causes of preventable death and disease worldwide.

Cigarette smoke contains over 4,000 toxic chemicals.

These toxins cause endothelial cell damage which creates inflammation along the inner lining of arteries.

The inflammation increases the risk of having a myocardial infarction (or heart attack), a stroke, and peripheral vascular disease which causes severe pain in the lower legs.

The toxins in cigarette smoke can also cause pulmonary problems when they’re deposited into the lungs, as they damage the lung tissue and increase the likelihood of developing a lung infection.

Finally, cigarette smoke contains many different carcinogens including ammonia, formaldehyde, and carbon monoxide, all of which are associated with cancers of the mouth, throat, lung, bladder, pancreas, and uterus.

Combining these effects, a heavy smoker who smokes two packs of cigarettes each day for 20 years loses about 14 years of life.

Despite the negative consequences of smoking, most people continue to smoke because tobacco contains nicotine, a tiny, fat-soluble molecule that creates pleasurable psychoactive effects and is extremely addictive.

Nicotine is considered “responsible” for the high rates of tobacco dependence and addiction, while the 4,000 other chemicals and compounds are “responsible” for the negative health effects associated with smoking.

When a cigarette is lit, some of the nicotine is destroyed by the heat, and some gets into the smoke that’s then inhaled.

As a result, smokers are able to “self-titrate” their nicotine dose by inhaling more frequently, more deeply, or for a longer amount of time.

Once nicotine is absorbed into the bloodstream, it binds to a type of acetylcholine receptor, called a nicotinic acetylcholine receptor—also called a nicotinic receptor—which is found throughout the body and brain.

In the central nervous system, nicotinic receptors are on pre-synaptic axon terminals of neurons, and when nicotine binds to them, it triggers the release of neurotransmitters like dopamine, acetylcholine, and glutamate, which is why it’s considered an acetylcholine agonist.

The psychoactive effects of nicotine are related to the locations of nicotinic receptors in the brain and the exact neurotransmitters that are released when those receptors are stimulated.

For example, increased dopamine in the mesolimbic system (a reward pathway composed of the ventral tegmentum and the nucleus accumbens) causes pleasure, improved attention span and mental processing, as well as increases in working memory.

Nicotine directly increases dopamine levels in the nucleus accumbens, but it also increases glutamate levels, causing the ventral tegmentum neurons to release more dopamine into the nucleus accumbens.

Nicotine also decreases the activity of inhibitory GABA neurons in the ventral tegmentum, so by inhibiting the inhibitory neurons there’s a double negative, meaning this is one more way to produce an increase in dopamine levels.

When nicotine binds to receptors in the peripheral nervous system, it increases blood pressure, heart rate, cardiac contractility, and gastrointestinal tract activity.

Nicotine also binds to receptors on skeletal muscles causing relaxed muscle tone.

Over time, individuals who consistently use cigarettes can develop tolerance to the effects of nicotine.

This means that with repeated use, they have a reduced response to nicotine, and therefore an increased dose of nicotine is needed to achieve the original response.

On a cellular level, there are a couple theories that explain why this might happen.

One is that repeated exposure to nicotine may cause nicotinic receptors to become less sensitive to nicotine.

Another theory is that neurons may remove nicotinic receptors from the cell wall in a process called down-regulation, leaving fewer receptors available for binding.

In either scenario, tolerance leads to the need for higher and higher doses of nicotine over time.

Let’s step back for a moment and say that you’re at rest, without anything stimulating your reward pathway.

In this situation, your brain keeps your heart rate, blood pressure and wakefulness in a normal state called homeostasis.

Now, let’s say that your secret crush sends you a text. All of a sudden you may feel sweaty and flushed, your heart rate may jump a bit.

Key Takeaways

Tobacco dependence, also known as nicotine dependence, is a chronic addiction to nicotine, a substance found in tobacco products such as cigarettes, cigars, and chewing tobacco. Nicotine stimulates the release of dopamine in the brain, which creates a pleasurable sensation and reinforces the behavior of smoking, leading to dependence.

Symptoms of tobacco dependence may include strong cravings for nicotine, difficulty quitting, withdrawal symptoms such as irritability, anxiety, and difficulty concentrating, and a continued use of tobacco despite negative consequences on health, social life, or finances.

Tobacco dependence is a serious health concern and increases the risk for heart attacks, strokes, chronic obstructive pulmonary disease (COPD), emphysema, and cancer (particularly lung cancer, cancers of the larynx and mouth, esophageal cancer and pancreatic cancer). Treatment for tobacco dependence includes nicotine replacement therapy, medications such as bupropion or varenicline, and counseling or support groups.