Tuberculosis: Pathology review

Tuberculosis: Pathology review

Residencia 2021

Residencia 2021

Eczematous rashes: Clinical
Papulosquamous skin disorders: Clinical
Alopecia: Clinical
Hypersensitivity skin reactions: Clinical
Blistering skin disorders: Clinical
Autoimmune bullous skin disorders: Clinical
Hypopigmentation skin disorders: Clinical
Benign hyperpigmented skin lesions: Clinical
Skin cancer: Clinical
Glucocorticoids
Heart failure: Clinical
Coronary artery disease: Clinical
Syncope: Clinical
Advanced cardiac life support (ACLS): Clinical
Valvular heart disease: Clinical
Pericardial disease: Clinical
Chest trauma: Clinical
Peripheral vascular disease: Clinical
Shock: Clinical
Aortic aneurysms and dissections: Clinical
Leg ulcers: Clinical
Heart blocks: Pathology review
Supraventricular arrhythmias: Pathology review
Ventricular arrhythmias: Pathology review
Class I antiarrhythmics: Sodium channel blockers
Class II antiarrhythmics: Beta blockers
Class III antiarrhythmics: Potassium channel blockers
Class IV antiarrhythmics: Calcium channel blockers and others
ACE inhibitors, ARBs and direct renin inhibitors
Sympatholytics: Alpha-2 agonists
Adrenergic antagonists: Alpha blockers
Adrenergic antagonists: Presynaptic
cGMP mediated smooth muscle vasodilators
Positive inotropic medications
Antiplatelet medications
Loop diuretics
Thiazide and thiazide-like diuretics
Calcium channel blockers
Adrenergic antagonists: Beta blockers
Bites and stings: Clinical
Burns: Clinical
Diabetes mellitus: Clinical
Hypothyroidism and thyroiditis: Clinical
Adrenal insufficiency: Clinical
Hyperthyroidism: Clinical
Neck trauma: Clinical
Parathyroid conditions and calcium imbalance: Clinical
Insulins
Mineralocorticoids and mineralocorticoid antagonists
Gallbladder disorders: Clinical
Peptic ulcers and stomach cancer: Clinical
Gastrointestinal bleeding: Clinical
Inflammatory bowel disease: Clinical
Diverticular disease: Clinical
Pancreatitis: Clinical
Cirrhosis: Clinical
Appendicitis: Clinical
Bowel obstruction: Clinical
Abdominal pain: Clinical
Hernias: Clinical
Abdominal trauma: Clinical
Acid reducing medications
Antidiarrheals
Laxatives and cathartics
Blood products and transfusion: Clinical
Venous thromboembolism: Clinical
Anticoagulants: Warfarin
Anticoagulants: Heparin
Anticoagulants: Direct factor inhibitors
Thrombolytics
Infective endocarditis: Clinical
Diarrhea: Clinical
Pneumonia: Clinical
Meningitis, encephalitis and brain abscesses: Clinical
Urinary tract infections: Clinical
Fever of unknown origin: Clinical
Tuberculosis: Pathology review
Protein synthesis inhibitors: Aminoglycosides
Antimetabolites: Sulfonamides and trimethoprim
Antituberculosis medications
Miscellaneous cell wall synthesis inhibitors
Cell wall synthesis inhibitors: Cephalosporins
DNA synthesis inhibitors: Metronidazole
DNA synthesis inhibitors: Fluoroquinolones
Miscellaneous protein synthesis inhibitors
Cell wall synthesis inhibitors: Penicillins
Protein synthesis inhibitors: Tetracyclines
Echinocandins
Azoles
Miscellaneous antifungal medications
Anti-mite and louse medications
Antimalarials
Herpesvirus medications
Anthelmintic medications
Hyponatremia: Clinical
Hypernatremia: Clinical
Hyperkalemia: Clinical
Hypokalemia: Clinical
Metabolic and respiratory alkalosis: Clinical
Kidney stones: Clinical
Metabolic and respiratory acidosis: Clinical
Acute kidney injury: Clinical
Toxidromes: Clinical
Stroke: Clinical
Headaches: Clinical
Traumatic brain injury: Clinical
Seizures: Clinical
Lower back pain: Clinical
Spinal cord disorders: Pathology review
Anticonvulsants and anxiolytics: Barbiturates
Anticonvulsants and anxiolytics: Benzodiazepines
Migraine medications
Nonbenzodiazepine anticonvulsants
Opioid agonists, mixed agonist-antagonists and partial agonists
Opioid antagonists
Osmotic diuretics
Chronic obstructive pulmonary disease (COPD): Clinical
Asthma: Clinical
Pneumothorax: Clinical
Acute respiratory distress syndrome: Clinical
Pleural effusion: Clinical
Bronchodilators: Beta 2-agonists and muscarinic antagonists
Joint pain: Clinical
Anatomy clinical correlates: Arm, elbow and forearm
Anatomy clinical correlates: Clavicle and shoulder
Anatomy clinical correlates: Wrist and hand
Anatomy clinical correlates: Median, ulnar and radial nerves
Anatomy clinical correlates: Axilla
Antigout medications
Non-steroidal anti-inflammatory drugs
Acetaminophen (Paracetamol)
Postpartum hemorrhage: Clinical
Hypertensive disorders of pregnancy: Clinical
Premature rupture of membranes: Clinical
Antepartum hemorrhage: Clinical
Pediatric allergies: Clinical
Pediatric ear, nose, and throat conditions: Clinical
Pediatric gastrointestinal bleeding: Clinical
Pediatric constipation: Clinical
Pediatric vomiting: Clinical
Child abuse: Clinical
Sickle cell disease: Clinical
Pediatric infectious rashes: Clinical
Skin and soft tissue infections: Clinical
Pediatric bone and joint infections: Clinical
Pediatric ophthalmological conditions: Clinical
Pediatric lower airway conditions: Clinical
Cystic fibrosis: Clinical
BRUE, ALTE, and SIDS: Clinical
Pediatric upper airway conditions: Clinical
Pediatric orthopedic conditions: Clinical
Substance misuse and addiction: Clinical
Drug misuse, intoxication and withdrawal: Hallucinogens: Pathology review
Antihistamines for allergies
Hypertension: Clinical
Hypercholesterolemia: Clinical
Miscellaneous lipid-lowering medications
Lipid-lowering medications: Fibrates
Lipid-lowering medications: Statins
Dizziness and vertigo: Clinical
Hyperthyroidism medications
Hypothyroidism medications
Hypoglycemics: Insulin secretagogues
Miscellaneous hypoglycemics
Gastroesophageal reflux disease (GERD): Clinical
Malabsorption: Clinical
Colorectal cancer: Clinical
Breast cancer: Clinical
Anal conditions: Clinical
Anemia: Clinical
Chronic kidney disease: Clinical
Urinary incontinence: Pathology review
PDE5 inhibitors
Dementia and delirium: Clinical
Lung cancer: Clinical
Bronchodilators: Leukotriene antagonists and methylxanthines
Rheumatoid arthritis: Clinical
Osteoporosis medications
Stages of labor
Breastfeeding
Pregnancy
Routine prenatal care: Clinical
Menopause
Amenorrhea: Clinical
Infertility: Clinical
Virilization: Clinical
Contraception: Clinical
Cervical cancer: Clinical
Sexually transmitted infections: Clinical
Vulvovaginitis: Clinical
Abnormal uterine bleeding: Clinical
Estrogens and antiestrogens
Progestins and antiprogestins
Androgens and antiandrogens
Congenital heart defects: Clinical
Puberty and Tanner staging
Developmental milestones: Clinical
Precocious and delayed puberty: Clinical
Vaccinations: Clinical
Elimination disorders: Clinical
Pediatric urological conditions: Clinical
Neurodevelopmental disorders: Clinical
Mood disorders: Clinical
Eating disorders: Clinical
Anxiety disorders: Clinical
Obsessive compulsive disorders: Clinical
Personality disorders: Clinical
Sleep disorders: Clinical
Somatic symptom disorders: Clinical
Sexual dysfunctions: Clinical
Atypical antidepressants
Psychomotor stimulants
Monoamine oxidase inhibitors
Serotonin and norepinephrine reuptake inhibitors
Selective serotonin reuptake inhibitors
Tricyclic antidepressants
Immunodeficiencies: Clinical
Cardiomyopathies: Clinical
MEN syndromes: Clinical
Thyroid nodules and thyroid cancer: Clinical
Adrenal masses and tumors: Clinical
Cushing syndrome: Clinical
Hypopituitarism: Clinical
Pituitary adenomas and pituitary hyperfunction: Clinical
Adrenal hormone synthesis inhibitors
Gastroparesis: Clinical
Esophageal disorders: Clinical
Esophagitis: Clinical
Jaundice: Clinical
Viral hepatitis: Clinical
Zinc deficiency and protein-energy malnutrition: Pathology review
Leukemia: Clinical
Lymphoma: Clinical
Plasma cell disorders: Clinical
Thrombocytopenia: Clinical
Thrombophilia: Clinical
Myeloproliferative neoplasms: Clinical
Bleeding disorders: Clinical
Non-hemolytic normocytic anemia: Pathology review
Macrocytic anemia: Pathology review
Extrinsic hemolytic normocytic anemia: Pathology review
Microcytic anemia: Pathology review
Intrinsic hemolytic normocytic anemia: Pathology review
Hematopoietic medications
DNA alkylating medications
Monoclonal antibodies
Antimetabolites for cancer treatment
Anti-tumor antibiotics
Microtubule inhibitors
Platinum containing medications
Topoisomerase inhibitors
Ribonucleotide reductase inhibitors
Hepatitis medications
Protease inhibitors
Non-nucleoside reverse transcriptase inhibitors (NNRTIs)
Nucleoside reverse transcriptase inhibitors (NRTIs)
Neuraminidase inhibitors
Integrase and entry inhibitors
Nephritic and nephrotic syndromes: Clinical
Renal tubular acidosis: Pathology review
Renal tubular defects: Pathology review
Carbonic anhydrase inhibitors
Potassium sparing diuretics
Diffuse parenchymal lung disease: Clinical
Systemic lupus erythematosus (SLE): Clinical
Seronegative arthritis: Clinical
Inflammatory myopathies: Clinical
Vasculitis: Clinical
Sjogren syndrome: Clinical
Hypokinetic movement disorders: Clinical
Hyperkinetic movement disorders: Clinical
Disorders of consciousness: Clinical
Brain tumors: Clinical
Muscle weakness: Clinical
Cholinomimetics: Direct agonists
Cholinomimetics: Indirect agonists (anticholinesterases)
Muscarinic antagonists
Sympathomimetics: Direct agonists
Anti-parkinson medications
Medications for neurodegenerative diseases
Gestational trophoblastic disease: Clinical
Abnormal labor: Clinical
Vaginal versus cesarean delivery: Clinical
Endometrial hyperplasia and cancer: Clinical
Ovarian cysts, cancer, and other adnexal masses: Clinical
Vaginal cancer: Clinical
Vulvar cancer: Clinical
Uterine stimulants and relaxants
Aromatase inhibitors
Neonatal jaundice: Clinical
Newborn management: Clinical
Congenital disorders: Clinical
Neonatal ICU conditions: Clinical
Perinatal infections: Clinical
Miscellaneous genetic disorders: Pathology review
Autosomal trisomies: Pathology review
Lysosomal storage disorders: Pathology review
Disorders of carbohydrate metabolism: Pathology review
Disorders of fatty acid metabolism: Pathology review
Kawasaki disease: Clinical
Congenital adrenal hyperplasia: Clinical
Pediatric bone tumors: Clinical
Muscular dystrophies and mitochondrial myopathies: Pathology review
Disruptive, impulse-control and conduct disorders: Clinical
Trauma- and stressor-related disorders: Clinical
Schizophrenia spectrum disorders: Clinical
Dissociative disorders: Clinical
Paraphilic disorders: Clinical
Atypical antipsychotics
Typical antipsychotics
Lithium
Preoperative evaluation: Clinical
Postoperative evaluation: Clinical
General anesthetics
Local anesthetics
Neuromuscular blockers
Esophageal surgical conditions: Clinical
Benign breast conditions: Pathology review
Anatomy clinical correlates: Breast
Anatomy clinical correlates: Thoracic wall
Anatomy clinical correlates: Mediastinum
Anatomy clinical correlates: Pleura and lungs
Anatomy clinical correlates: Heart
Nasal, oral and pharyngeal diseases: Pathology review
Eye conditions: Refractive errors, lens disorders and glaucoma: Pathology review
Eye conditions: Inflammation, infections and trauma: Pathology review
Eye conditions: Retinal disorders: Pathology review
Renal cysts and cancer: Clinical
Prostate disorders and cancer: Pathology review
Testicular tumors: Pathology review
Glycogen metabolism
Electron transport chain and oxidative phosphorylation
Citric acid cycle
Glycolysis
Gluconeogenesis
Pentose phosphate pathway
Physiological changes during exercise
Amino acid metabolism
Nitrogen and urea cycle
Fatty acid synthesis
Fatty acid oxidation
Ketone body metabolism
Cholesterol metabolism
Lactose intolerance
Glucose-6-phosphate dehydrogenase (G6PD) deficiency
Essential fructosuria
Galactosemia
Hereditary fructose intolerance
Pyruvate dehydrogenase deficiency
Glycogen storage disease type I
Glycogen storage disease type II (NORD)
Glycogen storage disease type III
Glycogen storage disease type IV
Glycogen storage disease type V
Leukodystrophy
Fabry disease (NORD)
Krabbe disease
Metachromatic leukodystrophy (NORD)
Niemann-Pick disease types A and B (NORD)
Tay-Sachs disease (NORD)
Gaucher disease (NORD)
Niemann-Pick disease type C
Mucopolysaccharide storage disease type 2 (Hunter syndrome) (NORD)
Mucopolysaccharide storage disease type 1 (Hurler syndrome) (NORD)
Cystinosis
Homocystinuria
Maple syrup urine disease
Alkaptonuria
Cystinuria (NORD)
Hartnup disease
Ornithine transcarbamylase deficiency
Phenylketonuria (NORD)
Abetalipoproteinemia
Hyperlipidemia
Familial hypercholesterolemia
Hypertriglyceridemia
Dyslipidemias: Pathology review
Fats and lipids
Carbohydrates and sugars
Proteins
Vitamin D deficiency
Vitamin K deficiency
Excess Vitamin A
Excess Vitamin D
Wernicke-Korsakoff syndrome
Beriberi
Folate (Vitamin B9) deficiency
Niacin (Vitamin B3) deficiency
Vitamin B12 deficiency
Vitamin C deficiency
Iodine deficiency
Zinc deficiency
Kwashiorkor
Marasmus
Resting membrane potential
Cell-cell junctions
Cellular structure and function
Selective permeability of the cell membrane
Endocytosis and exocytosis
Cell membrane
Cytoskeleton and intracellular motility
Osmosis
Extracellular matrix
Cell signaling pathways
Nernst equation
Adrenoleukodystrophy (NORD)
Zellweger spectrum disorders (NORD)
Alport syndrome
Marfan syndrome
Ehlers-Danlos syndrome
Primary ciliary dyskinesia
Osteogenesis imperfecta
Peroxisomal disorders: Pathology review
Cell cycle
Nuclear structure
Translation of mRNA
Transcription of DNA
Lac operon
DNA structure
Nucleotide metabolism
DNA mutations
Amino acids and protein folding
Mitosis and meiosis
DNA replication
DNA damage and repair
Protein structure and synthesis
Lesch-Nyhan syndrome
Adenosine deaminase deficiency
Orotic aciduria
Bloom syndrome
Li-Fraumeni syndrome
Xeroderma pigmentosum
McCune-Albright syndrome
Fanconi anemia
Acute radiation syndrome
Gel electrophoresis and genetic testing
Polymerase chain reaction (PCR) and reverse-transcriptase PCR (RT-PCR)
DNA cloning
Karyotyping
Fluorescence in situ hybridization
ELISA (Enzyme-linked immunosorbent assay)
Human development days 1-4
Human development days 4-7
Human development week 2
Human development week 3
Ectoderm
Mesoderm
Endoderm
Development of twins
Development of the placenta
Hedgehog signaling pathway
Development of the digestive system and body cavities
Development of the fetal membranes
Development of the umbilical cord
Development of the cardiovascular system
Fetal circulation
Pharyngeal arches, pouches, and clefts
Development of the ear
Development of the eye
Development of the face and palate
Development of the gastrointestinal system
Development of the tongue
Development of the teeth
Development of the integumentary system
Development of the muscular system
Development of the axial skeleton
Development of the limbs
Development of the nervous system
Development of the renal system
Development of the reproductive system
Development of the respiratory system

Transcript

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While doing your rounds, you meet Josh, an HIV-positive 25-year-old man who presents with a 2-month history of non-productive cough. He also describes poor appetite and significant weight loss, fever, night sweats, and excessive tiredness. He denies dyspnea or hemoptysis. Physical examination is unremarkable. A PPD intradermal test was performed and it was negative. His chest X-ray showed a peri-hilar lesion with central necrosis and calcification as well as lymphadenopathy of nearby nodes.

Now, this person seems to suffer from tuberculosis, or TB for short. But first, a bit of microbiology. Mycobacteria tuberculosis are slender, rod-shaped, Gram positive bacteria that need oxygen to survive, in other words, they’re “strict aerobes”. One piece of high-yield information is that although they are classified as Gram positive - meaning they have an outer cell wall, it is the same wall that makes the bacteria special. This is because Mycobacterium have an unusually waxy cell wall made of mycolic acid, which is composed of long chains of branched lipids, which won't stain with Gram. This makes them “acid-fast” so the Ziehl-Neelsen stain has to be applied, a dye that will not be washed away by acids, giving the bacteria a bright red color. The wall also makes the bacteria incredibly hardy, and allows them to resist weak disinfectants, antibiotics, and allow them to survive on dry surfaces for months at a time.

Okay, so Tuberculosis is a type of pulmonary infection caused by Mycobacterium tuberculosis, sometimes just called TB bacteria. Before we start, you need to know that there are a few high-yield risk factors for TB. These include immunosuppression, like in people with HIV; iatrogenic immunosuppression, like in people who undergo treatment with corticosteroids; systemic diseases such as COPD, diabetes, and end-stage renal disease; extremes of age; substance abuse; and populations with an increased risk of exposure, like the prison populations, homeless people, those born in an endemic country, and health care workers.

Okay, so let’s start by talking about primary tuberculosis. This is where TB bacteria are transmitted when a person breathes in contaminated aerosolized droplets coughed up by someone who has TB. This is not normally a problem, as we have plenty of defense mechanisms against the microorganisms we inhale. They are often trapped in the mucus secretions in the upper respiratory tract and coughed up. TB that make it to the alveoli are phagocytized by macrophages, where they are trapped inside phagosomes, that later fuse with a hydrolytic enzyme-containing lysosome that normally breaks down harmful microbes. However, TB bacteria can survive this process due to sulfatide, a surface protein that inhibits the phagosome-lysosome fusion. So, what you need to know is that this allows the mycobacterium to survive, proliferate inside the macrophage, and cause a localized infection within one week of exposure. However, most people at this stage are actually asymptomatic and unaware they are infected because the immune system can contain the bacteria quite efficiently.

However, around 3 weeks after initial infection, a surface glycolipid called TB cord factor triggers an immune response where numerous cytokines are released, attracting more macrophages and helper T-cells to the area. They try to quarantine the TB bacteria by forming granulomas. Remember that this granuloma formation is a cell-mediated type IV hypersensitivity reaction where helper T-cells presented with TB antigen activate, and release cytokines that attract more macrophages to the area. These macrophages, dead tissue, and bacteria form the center of the granuloma, while helper T-cells and multinucleated giant cells, which are formed by the fusion of several macrophages, are found on the periphery. These giant cells, called Langhans giant cells are very high yield. Their multiple nuclei are arranged peripherally, resembling the shape of a horseshoe. Their cytoplasm contains Schaumann bodies which are made of calcium and protein deposits, and abnormal lipid structures called asteroid bodies. Now, in tuberculosis, granulomas are usually caseating. This is because the tissue in the middle of the granuloma dies as a result of a process called caseous necrosis, which means “cheese-like” necrosis, since the dead tissue is soft, white, and resembles cheese. These areas are known as a “Ghon focus”.

Now, TB can also spread to nearby hilar lymph nodes, either carried over by immune cells through the lymphatic system or by direct invasion from the Ghon focus. Together, the Ghon focus and the affected lymph node, form the “Ghon complex,” which is characteristic of primary tuberculosis. A high yield fact is that Ghon complexes are usually subpleural and occur in the mid and lower lobes of the lungs. From here on, there are a few possible outcomes. In children and immune compromised individuals, primary tuberculosis can not be contained by granulomas so they spread throughout the lungs, causing further damage. This is called progressive primary tuberculosis. In most cases however, the tissue that’s encapsulated by the granuloma undergoes fibrosis, and often calcification, producing scar tissue that can be seen on x-ray. A calcified ghon complex is called a “Ranke complex”. In some cases, the mycobacteria is killed off by the immune system and the complex heals, leaving just a small scar behind, and that’s the end of that.

However, if the TB bacteria in the Ghon complex isn’t eliminated, we can get secondary tuberculosis. Even though the bacteria are walled off, they remain viable but latent. If and when a person’s immune system becomes compromised, the Ghon complex can become reactivated, and the infection can spread throughout the lung parenchyma. Another high-yield fact is that the infection usually spreads to either one or both upper lobes of the lung, mostly because oxygenation is greatest in these areas, and TB being an aerobe, prefers areas of greater oxygenation. Now, since individuals were previously exposed to the bacteria, the immune system’s memory T cells quickly release cytokines to try and control the new outbreak, which forms more areas of caseous necrosis and more lung parenchyma is destroyed. If the damage is severe, it could cause fibrocaseous cavities. Because the cavities are large, they can allow the bacteria to disseminate, or spread, through airways and lymphatic channels to other parts of the lungs, causing bronchopneumonia. Another way the infection in both secondary and progressive primary tuberculosis can spread is via the vascular system, causing bacteremia. This way, TB can infect almost every other tissue in the body, leading to systemic miliary TB.

When TB spreads to other tissues, it causes complications related to the organ affected. Kidneys are commonly affected, resulting in sterile pyuria, or high levels of white blood cells in the urine. It might also spread to the meninges of the brain, causing meningitis, the lumbar vertebrae, causing Pott disease, the adrenal glands causing Addison’s disease, the liver causing hepatitis, and the cervical lymph nodes causing lymphadenitis in the neck, also known as scrofula. It can also spread to the joints, where it causes mycobacterial arthritis, and long bones, where it leads to osteomyelitis.

Now, the symptoms of pulmonary tuberculosis are varied, depending on the phase of the disease and any comorbidities. Primary tuberculosis might be completely asymptomatic, or it might present with classic findings, including fever, night sweats, weight loss, non-productive and productive cough, and hemoptysis, usually secondary to the infection eroding the pulmonary blood vessels. Secondary tuberculosis will have similar symptoms, and miliary tuberculosis might cause additional symptoms, depending on which organs are affected.

Screening for TB often starts with a purified protein derivative or PPD intradermal skin test, sometimes known as a tuberculin skin test, Mantoux test, or simply TB test. With this test, tuberculin, a component of the bacteria, is injected between the layers of the dermis. If a person has previously been exposed to TB, the immune system reacts to tuberculin and produces a small, localized type IV hypersensitivity reaction within 48 to 72 hours; if the reaction creates a large enough area of induration rather than just redness, the test is positive. However, a positive tuberculin test simply means the individual has been exposed to the TB bacteria at some point. It doesn’t differentiate between active, latent or resolved infections, hence why it is a screening test and not diagnostic. PPD is negative when there’s no history of infection. There’s also the chance of false positive results in those who were vaccinated against TB, and of false negative results when the immune system is too impaired to even react to tuberculin, like in individuals with AIDS. Sarcoidosis can also lead to false negative results because the affected individuals have impaired delayed-type immune reactions.

As an alternative screening test, there are also interferon gamma release assays, or IGRAs. Basically, they work by measuring the amount of interferon-gamma released by T-lymphocytes when exposed to antigens unique to Mycobacterium tuberculosis. IGRAs are more specific to TB rather than other types of mycobacterial infections and are less likely to give a false positive result. If any of the two tests were positive and the individual presents characteristic symptoms, the next step is a chest Xray to look for signs of active TB disease.

Key Takeaways

Tuberculosis (TB) is a chronic infectious disease caused by the bacterium Mycobacterium tuberculosis. The pathophysiology of TB involves a complex interplay between the bacterium and the immune system of the host. When a person inhales air contaminated with M. tuberculosis, the bacteria can enter the lungs and infect the alveolar macrophages, which are the immune cells responsible for clearing foreign particles from the lungs. In most cases, the immune system can contain the infection and prevent the development of active TB disease.

However, in some cases, the bacteria can evade the immune system and establish a latent infection, in which the bacteria remain dormant in the body for years or even decades. Latent TB infection is not contagious and does not cause symptoms, but it can progress to active TB disease if the immune system becomes weakened, such as in people with HIV/AIDS, malnutrition, or other conditions that compromise the immune system.

In active TB disease, the bacteria can multiply and spread throughout the body, causing symptoms such as cough, fever, weight loss, and night sweats. The infection can also damage the lungs and other organs, leading to complications such as pleural effusion, pneumonia, and meningitis.

Sources

  1. "Robbins Basic Pathology" Elsevier (2017)
  2. "Harrison's Principles of Internal Medicine, Twentieth Edition (Vol.1 & Vol.2)" McGraw-Hill Education / Medical (2018)
  3. "Pathophysiology of Disease: An Introduction to Clinical Medicine 8E" McGraw-Hill Education / Medical (2018)
  4. "CURRENT Medical Diagnosis and Treatment 2020" McGraw-Hill Education / Medical (2019)
  5. "Fishman's Pulmonary Diseases and Disorders, 2-Volume Set, 5th edition" McGraw-Hill Education / Medical (2015)
  6. "Dyspnea" CRC Press (2014)
  7. "Extrapulmonary tuberculosis: an overview" Am Fam Physician (2005)
  8. "Tuberculosis" The Lancet (2011)
  9. "Acute Forms of Tuberculosis in Adults" The American Journal of Medicine (2009)
  10. "Les tuberculoses extrapulmonaires" Revue de Pneumologie Clinique (2015)
  11. "Patogénesis de la tuberculosis y otras micobacteriosis" Enfermedades Infecciosas y Microbiología Clínica (2018)
  12. "Perspectives on Advances in Tuberculosis Diagnostics, Drugs, and Vaccines" Clinical Infectious Diseases (2015)