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ASTHMA—SPASMODIC CONTRACTION OF SMOOTH MUSCLES IN BRONCHIOLES – SELF LEARNING SERIES # 4, Page 555 Chapter # 43 Guyton physiology 15th Edition.

ASTHMA—SPASMODIC CONTRACTION OF SMOOTH MUSCLES IN BRONCHIOLES - SELF LEARNING SERIES # 4, Page 555 Chapter # 43 Guyton physiology 15th Edition.
  • Asthma is a disease in which the smooth muscles of the bronchioles contract suddenly (spasm).
  • This partially narrows the bronchioles, making breathing very difficult.
  • Asthma is becoming more common.
  • It affects about 7%–8% of people in the United States.
  • The World Health Organization (WHO) estimates that more than 262 million people worldwide have asthma.
  • The usual cause of asthma is excessive contraction (hypersensitivity) of the bronchiolar smooth muscle in response to foreign substances in the air.
  • In about 70% of patients younger than 30 years, asthma is caused by allergic hypersensitivity, especially to plant pollens.
  • In older people, asthma is usually caused by hypersensitivity to non-allergic airborne irritants, such as smog.
  • People with allergic asthma produce unusually large amounts of immunoglobulin E (IgE) antibodies.
  • These IgE antibodies attach to mast cells present in the lung interstitium near the bronchioles and small bronchi.
  • When the person inhales an allergen (such as pollen) to which they are sensitive:
    • The allergen binds to IgE antibodies on the mast cells.
    • This activates the mast cells.
  • Activated mast cells release several substances, including:
    • Histamine
    • Slow-reacting substance of anaphylaxis (a mixture of leukotrienes)
    • Eosinophilic chemotactic factor
    • Bradykinin
  • The combined effects of these substances, especially the slow-reacting substance of anaphylaxis, cause:
    • Edema (swelling) of the walls of the small bronchioles
    • Secretion of thick mucus into the bronchioles
    • Spasm of the bronchiolar smooth muscle
  • These changes greatly increase airway resistance.
  • During expiration, the bronchioles become narrower than during inspiration because they collapse more easily during expiratory effort.
  • Since the bronchioles are already partially blocked in asthma, this additional narrowing causes severe airway obstruction during expiration.
  • Therefore, a person with asthma can usually inhale fairly well but has great difficulty exhaling.
  • Clinical findings include:
    • Greatly reduced maximum expiratory flow rate
    • Reduced timed expiratory volume
  • These changes produce dyspnea (air hunger).
  • During an acute asthma attack, the functional residual capacity (FRC) and residual volume (RV) increase because air cannot be expelled completely from the lungs.
  • After many years of asthma, the chest becomes permanently enlarged, producing a barrel chest.
  • In long-standing asthma, the functional residual capacity and residual volume remain permanently increased.

KEY CONCEPT

  • Asthma is caused by spasm of bronchiolar smooth muscle, leading to partial airway obstruction and difficult breathing.
  • The most common cause is hypersensitivity of the bronchioles to allergens or airborne irritants.
  • In allergic asthma, IgE antibodies activate mast cells, which release histamine, leukotrienes, eosinophilic chemotactic factor, and bradykinin.
  • These mediators cause bronchiolar edema, thick mucus secretion, and smooth muscle spasm, greatly increasing airway resistance.
  • Airway obstruction is more severe during expiration, making exhalation more difficult than inhalation.
  • Clinical findings include reduced expiratory flow rate, reduced timed expiratory volume, and dyspnea.
  • Acute asthma increases FRC and RV, while long-standing asthma may cause a permanent barrel chest with persistently increased FRC and RV.

TUBERCULOSIS

  • In tuberculosis (TB), tubercle bacilli infect the lungs and produce a characteristic tissue reaction.
  • This tissue reaction includes:
    • Invasion of the infected area by macrophages.
    • Formation of a fibrous wall around the infected area, creating a tubercle.
  • The fibrous wall helps prevent the spread of tubercle bacilli within the lungs.
  • Therefore, walling off the infection is a protective mechanism that limits the extension of tuberculosis.
  • If tuberculosis is not treated, the walling-off process fails in about 3% of affected people.
  • When this happens, tubercle bacilli spread throughout the lungs.
  • The infection may destroy large areas of lung tissue.
  • This destruction can lead to the formation of large abscess cavities in the lungs.
  • In the late stages of tuberculosis, the lungs contain many areas of fibrosis (scar tissue).
  • There is also a reduction in the amount of functional lung tissue.
  • These changes produce the following effects:
    • The respiratory muscles must work harder to ventilate the lungs.
    • Vital capacity and breathing capacity decrease.
    • The total surface area of the respiratory membrane decreases.
    • The respiratory membrane becomes thicker.
    • Pulmonary diffusing capacity progressively decreases.
    • The ventilation-perfusion (V/Q) ratio becomes abnormal.
    • Diffusion of both O₂ and CO₂ across the lungs decreases further.

KEY CONCEPT

  • Tuberculosis is caused by tubercle bacilli, which produce macrophage infiltration and fibrous walling-off of the infected area to form a tubercle.
  • The fibrous wall limits the spread of infection within the lungs.
  • If untreated, walling off fails in about 3% of patients, allowing widespread spread of bacilli, severe lung destruction, and formation of large abscess cavities.
  • Late-stage tuberculosis causes extensive fibrosis and loss of functional lung tissue.
  • These changes increase the work of breathing, reduce vital capacity, decrease respiratory membrane surface area, increase membrane thickness, reduce pulmonary diffusing capacity, produce an abnormal ventilation-perfusion ratio, and impair O₂ and CO₂ diffusion.

MADE BY SELF LEARNING CEO AND FOUNDER DR SHEEN

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