Sideroblastic anemia

Last updated: September 12, 2024

Sideroblastic anemia

3P Exam

3P Exam

Atrial fibrillation
Peripheral artery disease
Peripheral artery disease: Pathology review
Peripheral vascular disease: Clinical
Chronic venous insufficiency
Heart failure
Heart failure: Pathology review
Heart failure: Clinical
Left-sided heart failure: Nursing process (ADPIE)
Coronary artery disease: Pathology review
Coronary artery disease: Clinical
Anticoagulants: Warfarin
Anticoagulants: Heparin
Anticoagulants: Direct factor inhibitors
Antithrombin III deficiency
Thrombophilia: Clinical
Clot retraction and fibrinolysis
Hypertension: Clinical
Hypertension
Hypertension: Pathology review
Infective endocarditis: Clinical
Endocarditis
Endocarditis: Pathology review
Psoriasis
Sarcoptes scabiei (Scabies)
Anti-mite and louse medications
Herpesvirus medications
Varicella zoster virus
Atopic dermatitis
Urticaria
Skin cancer
Acne vulgaris
Cataract
Vertigo: Pathology review
Vertigo
Diabetic retinopathy
Diabetic nephropathy
Allergic rhinitis
Conductive hearing loss
Diabetes mellitus
Diabetes mellitus: Pathology review
Diabetes mellitus: Clinical
Hypothyroidism
Hypothyroidism: Pathology review
Hypothyroidism medications
Acromegaly
Hyperthyroidism
Hyperthyroidism: Pathology review
Hyperthyroidism: Clinical
Hyperthyroidism medications
Hyperprolactinemia
Polycystic ovary syndrome
Cirrhosis
Cirrhosis: Pathology review
Cirrhosis: Clinical
Acute pancreatitis
Chronic pancreatitis
Pancreatitis: Pathology review
Pancreatitis: Clinical
Abdominal pain: Clinical
Bowel obstruction
Bowel obstruction: Clinical
Viral hepatitis
Viral hepatitis: Pathology review
Viral hepatitis: Clinical
Hepatitis medications
Crohn disease
Gastroesophageal reflux disease (GERD)
Gastroesophageal reflux disease (GERD): Clinical
Gastroenteritis
Pyloric stenosis
Anemia: Clinical
Macrocytic anemia: Pathology review
Aplastic anemia
Microcytic anemia: Pathology review
Extrinsic hemolytic normocytic anemia: Pathology review
Sideroblastic anemia
Autoimmune hemolytic anemia
Iron deficiency anemia
Non-hemolytic normocytic anemia: Pathology review
Intrinsic hemolytic normocytic anemia: Pathology review
Anemia of chronic disease
Megaloblastic anemia
Alpha-thalassemia
Beta-thalassemia
Lymphatic system anatomy and physiology
Anatomy of the lymphatics of the neck
Nerves and lymphatics of the pelvis
Blood groups and transfusions
Sickle cell disease (NORD)
Sickle cell disease: Clinical
Benign prostatic hyperplasia
Penile cancer
Erectile dysfunction
Prostatitis
Testicular torsion
Epididymitis
Seizures: Pathology review
Seizures: Clinical
Meningitis
Migraine
Migraine medications
Transient ischemic attack
Headaches: Pathology review
Headaches: Clinical
Cluster headache
Tension headache
Parkinson disease
Anti-parkinson medications
Rheumatoid arthritis
Rheumatoid arthritis: Clinical
Rheumatoid arthritis and osteoarthritis: Pathology review
Meniscus tear
Osteoarthritis
Gout
Gout and pseudogout: Pathology review
Antigout medications
Rotator cuff tear
Sprained ankle
Spinal stenosis
Lordosis, kyphosis, and scoliosis
Bone tumors
Bone tumors: Pathology review
Pregnancy
Preeclampsia & eclampsia
Fetal circulation
Congenital disorders: Clinical
Congenital gastrointestinal disorders: Pathology review
Congenital heart defects: Clinical
Acyanotic congenital heart defects: Pathology review
Congenital neurological disorders: Pathology review
Cyanotic congenital heart defects: Pathology review
Congenital renal disorders: Pathology review
Gestational hypertension
Placenta previa
Substance misuse and addiction: Clinical
Major depressive disorder
Major depressive disorder with seasonal pattern
Serotonin syndrome
Generalized anxiety disorder
Bulimia nervosa
Bipolar and related disorders
Asthma
Asthma: Clinical
Chronic bronchitis
Chronic obstructive pulmonary disease (COPD): Clinical
Obstructive lung diseases: Pathology review
Emphysema
Pleural effusion: Clinical
Pleural effusion
Pneumonia
Pneumonia: Pathology review
Pneumonia: Clinical
Mycobacterium tuberculosis (Tuberculosis)
Tuberculosis: Pathology review
Antituberculosis medications
Bordetella pertussis (Whooping cough)
Croup
Sexually transmitted infections: Clinical
Neisseria gonorrhoeae
Pelvic inflammatory disease
Treponema pallidum (Syphilis)
Congenital syphilis
Chlamydia trachomatis
Trichomonas vaginalis
Gardnerella vaginalis (Bacterial vaginosis)
Breast cancer
Breast cancer: Pathology review
Breast cancer: Clinical
Premenstrual dysphoric disorder
Menopause
Contraception: Clinical
Abnormal uterine bleeding: Clinical
Amenorrhea
Amenorrhea: Pathology review
Amenorrhea: Clinical
Urinary incontinence
Urinary incontinence: Pathology review
Urinary tract infections: Pathology review
Urinary tract infections: Clinical
Renal failure: Pathology review
Enuresis
Nocturnal enuresis
Developmental milestones: Clinical
Leukemia: Clinical
HIV (AIDS)
Human papillomavirus

Transcript

Watch video only

With sideroblastic anemia, sidero- means iron and -blastic meaning immature and anemia refers to a condition where there’s a decrease in the number of healthy red blood cells, or RBCs in the body.

So sideroblastic anemia is a type of blood disorder where there’s a buildup of iron in the RBC’s in the body causing them to be immature and dysfunctional.

This buildup occurs because these RBC’s are unable to incorporate iron into hemoglobin which is necessary for RBC’s to transport oxygen.

In order to better understand sideroblastic anemia, we need to first take a look at hemoglobin, the main protein within RBC’s that’s responsible for carrying oxygen.

Now hemoglobin is made up of hemes and globins.

There are 4 globin subunits, typically two alpha and two beta, and each one has its own heme group.

This heme is a large molecule that’s made up of four pyrrole subunits that forms a ring, and this structure is called a porphyrin.

In the middle, there is an ionically bond iron 2+ and the iron is what binds to and carries the oxygen molecule.

So each hemoglobin can carry four oxygen molecules when it’s fully saturated.

The process of heme synthesis occurs both within the mitochondria and the cytosol of a cell and requires multiple enzymes to catalyze the numerous steps.

It begins in the mitochondria where succinyl CoA binds to glycine via delta-ALA synthase which uses vitamin B6 as a cofactor to produce delta-aminolevulinic acid, or ALA.

Then, in the cytosol, delta-aminolevulinic acid is converted to porphobilinogen, or PBG, via delta-ALA dehydratase.

From there, four molecules of porphobilinogen condense together to form hydroxymethylbilane with the help of porphobilinogen deaminase.

Note that porphobilinogen deaminase is sometimes called uroporphyrinogen I synthase or hydroxymethylbilane synthase, or HMBS for short.

Afterwards, hydroxymethylbilane is converted to uroporphyrinogen III and catalyzed to coproporphyrinogen III via uroporphyrinogen III cosynthase and uroporphyrinogen decarboxylase, respectively.

Next, coproporphyrinogen III is brought back into the mitochondria and converted into protoporphyrinogen IX by coproporphyrinogen oxidase.

Protoporphyrinogen IX is converted to protoporphyrin IX by protoporphyrinogen oxidase.

Lastly, an iron molecule is added to protoporphyrin IX via the enzyme ferrochelatase, and 10 tongue twisters later, voila! We got ourselves a completed heme!

Now, with sideroblastic anemia, there is defective protoporphyrin synthesis which results in impaired incorporation of iron to form heme.

Sideroblastic anemia can be congenital or acquired.

The most common congenital cause is an X-linked form which means it occurs on the X chromosome and affects mainly boys since boys only have one copy of the X chromosome.

This X-link form is caused by mutations in the ALAS2 gene. The ALAS2 gene is involved in coding for delta-ALA synthase.

Without delta-ala-synthase, there is a buildup of iron and not enough normal heme production.

The acquired causes of sideroblastic anemia include excessive alcohol use, pyridoxine or vitamin B6 deficiency and lead poisoning.

Excessive alcohol consumption can lead to mitochondrial damage and nutritional deficiencies like vitamin B6, iron and folate which affects the mitochondria’s ability to form heme.

Key Takeaways

Sideroblastic anemia occurs when the bone marrow produces ringed sideroblasts rather than healthy red blood cells (erythrocytes). It is due to either a congenital abnormality or an acquired cause such as vitamin B6 deficiency, excessive alcohol use, or lead poisoning which leads to an inability to incorporate iron to form heme.

The lack of functional heme results in anemia and fatigue. Also, the overload of iron that is unable to be incorporated into RBCs can damage other organs. Diagnosis of sideroblastic anemia involves a medical history and physical examination, along with tests like full blood count and peripheral blood smear. Treatment involves the removal of toxins and the administration of vitamin B6, thiamine, and folic acid.

Sources

  1. "Pathophysiology of Disease: An Introduction to Clinical Medicine 8E" McGraw-Hill Education / Medical (2018)
  2. "X-Linked, Pyridoxine-Responsive Sideroblastic Anemia" New England Journal of Medicine (1994)
  3. "Robbins Basic Pathology" Elsevier (2017)
  4. "Sideroblastic anemias." Wintrobe's Clinical Hematology. 10th ed. (1999)
  5. "Sideroblastic Anemias" Merck Manual Professional Version (2020)