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Clinical Subject Page

Aplastic Anemia (AA)

Aplastic Anemia (AA) is a rare, life-threatening bone marrow failure disorder characterized by pancytopenia and a markedly hypocellular bone marrow. It results from failure of hematopoietic stem cells to produce red blood cells, white blood cells, and platelets.

Also called

Bone Marrow Failure Syndrome

ICD-10

D61.9

Specialty

Hematology

Onset

Acute & Chronic

Reviewed

August 2026

On This Page

Overview

Aplastic Anemia (AA) occurs when the bone marrow fails to produce adequate blood cells, leading to anemia, leukopenia, and thrombocytopenia (pancytopenia). Most acquired cases result from immune-mediated destruction of hematopoietic stem cells, although drugs, toxins, viral infections, radiation, and inherited disorders may also cause the disease.

Patients commonly present with fatigue, recurrent infections, and bleeding, while hepatosplenomegaly and lymphadenopathy are usually absent.

Etiology & Risk Factors

Idiopathic (Most Common) cause of Aplastic Anemia (AA)

  • No identifiable cause

  • Thought to be immune-mediated

Drug-Induced

  • Chloramphenicol

  • Carbamazepine

  • Phenytoin

  • Sulfonamides

  • Methimazole

  • Chemotherapy agents

Chemical Exposure

  • Benzene

  • Organic solvents

  • Pesticides

Radiation

  • Ionizing radiation

  • Radiotherapy

Viral Infections

  • Hepatitis viruses

  • Epstein-Barr virus (EBV)

  • Cytomegalovirus (CMV)

  • HIV

  • Parvovirus B19

Autoimmune Diseases

  • Systemic lupus erythematosus

  • Other autoimmune disorders

Inherited Disorders

  • Fanconi anemia

  • Dyskeratosis congenita

  • Shwachman-Diamond syndrome

-Risk Factors for Aplastic Anemia (AA)

  • Exposure to toxic chemicals

  • Cytotoxic drugs

  • Radiation exposure

  • Viral infections

  • Autoimmune disease

  • Family history of inherited bone marrow failure syndromes

Pathophysiology

Immune-mediated destruction or direct injury of hematopoietic stem cells → marked reduction in bone marrow stem cell population → hypocellular bone marrow with fatty replacement → decreased production of erythrocytes, leukocytes, and platelets → pancytopenia → anemia causes fatigue, neutropenia predisposes to infections, and thrombocytopenia leads to bleeding.

Clinical Presentation

-Symptoms of Aplastic Anemia (AA)

  • Fatigue

  • Weakness

  • Shortness of breath

  • Dizziness

  • Fever

  • Recurrent infections

  • Easy bruising

  • Gum bleeding

  • Epistaxis

  • Prolonged bleeding

  • Menorrhagia

-Signs of Aplastic Anemia (AA)

  • Pallor

  • Petechiae

  • Purpura

  • Ecchymoses

  • Fever (if infection is present)

-Usually absent in Aplastic Anemia (AA):

  • Lymphadenopathy

  • Hepatomegaly

  • Splenomegaly

History Taking

-Ask about:

  • Fatigue
  • Fever
  • Recurrent infections
  • Bleeding episodes
  • Easy bruising
  • Drug exposure
  • Occupational chemical exposure
  • Radiation exposure
  • Recent viral illness
  • Autoimmune disease
  • Previous chemotherapy

Physical Examination

-General Examination

Look for:

  • Pallor

  • Fever

  • Petechiae

  • Purpura

  • Ecchymoses

-Systemic Examination

Assess for:

  • Signs of infection

  • Mucosal bleeding

-Confirm absence of:

  • Lymphadenopathy

  • Hepatomegaly

  • Splenomegaly

Investigations

Complete Blood Count (CBC)

Typical findings:

  • Low hemoglobin

  • Low white blood cell count

  • Low neutrophil count

  • Low platelet count

  • Pancytopenia

  • Low reticulocyte count

Peripheral Blood Film

May show:

  • Pancytopenia

  • Normocytic or mildly macrocytic red cells

  • No abnormal blast cells

Bone Marrow Aspiration and Biopsy (Gold Standard)

Characteristic findings:

  • Markedly hypocellular marrow

  • Fatty replacement

  • Marked reduction in hematopoietic cells

  • No malignant infiltration

Reticulocyte Count

  • Markedly reduced

Additional Laboratory Tests

  • Vitamin B12

  • Folate

  • Iron studies

  • Liver function tests

  • Renal function tests

  • Viral serology (HBV, HCV, HIV, EBV, CMV, Parvovirus B19)

  • Autoimmune screen

Flow Cytometry

  • Evaluate for paroxysmal nocturnal hemoglobinuria (PNH) clone

Cytogenetic Analysis

  • Exclude myelodysplastic syndrome and other marrow disorders

Diagnosis

Aplastic Anaemia · Classification by Cause

Acquired AA — Classification by Cause
Idiopathic / Autoimmune (70–80%)
  • Most common — CD8+ T-cells attack HSCs via IFN-γ and TNF-α
  • Often follows viral illness (trigger unknown)
  • Associated with HLA-DR2 alleles
  • Responds to immunosuppression (ATG + CsA)
Drug-Induced
Dose-dependent:
  • Cytotoxic chemotherapy (busulfan, cyclophosphamide)
  • Benzene (industrial)
Idiosyncratic:
  • Chloramphenicol — classic cause
  • NSAIDs (phenylbutazone, indomethacin)
  • Carbamazepine, phenytoin
  • Gold salts, sulfonamides, clozapine
Viral / Infectious
  • Seronegative hepatitis (non-A/B/C) — most common viral cause
  • EBV, CMV
  • HIV — direct HSC infection
  • Parvovirus B19 — pure red cell aplasia (selective)
  • Dengue fever — transient suppression
Radiation & Toxins
  • Ionising radiation — dose-dependent direct HSC DNA damage
  • Benzene — occupational (petroleum, rubber)
  • Pesticides (organophosphates, DDT)
  • Arsenic, toluene (glue sniffing)
Pregnancy-Associated
  • Rare — may remit after delivery
  • Immune tolerance shift during pregnancy
  • High maternal and foetal mortality if untreated
  • HSCT deferred until post-partum if possible
Immune Disorders
  • PNH — ~50% of AA have GPI-anchor deficient clone
  • Eosinophilic fasciitis (Shulman syndrome)
  • Thymoma (Good's syndrome)
  • SLE — immune complex-mediated suppression
  • Transfusion-associated GvHD
Inherited / Constitutional AA
Fanconi Anaemia (FA)
  • Most common inherited AA — AR (FANCA mutation)
  • DNA repair defect → HSC instability
  • AA onset: childhood (median age 7–8 yrs)
  • Café-au-lait spots, thumb/radial anomalies, short stature, microcephaly, renal anomalies
  • ↑ Risk AML + solid tumours (HPV-related)
  • Dx: DEB/MMC chromosomal breakage test
Dyskeratosis Congenita (DC)
  • Telomere biology disorder — DKC1, TERT, TERC, RTEL1
  • Triad: nail dystrophy + oral leucoplakia + reticulate skin pigmentation
  • AA in 80–90% by age 30
  • Pulmonary fibrosis, liver disease, early greying
  • Dx: lymphocyte telomere length (very short)
Other Inherited Syndromes
Diamond-Blackfan Anaemia:
  • Pure red cell aplasia; RPS19 mutation; steroid-responsive
Shwachman-Diamond:
  • SBDS; neutropenia + exocrine pancreatic insufficiency
Kostmann syndrome:
  • ELANE/HAX1; neutropenia; G-CSF responsive
Reticular Dysgenesis:
  • AK2; absent myeloid + lymphoid; HSCT only

Aplastic Anaemia · Diagnostic Workup

Stepwise Diagnostic Workup
1
CBC + Blood Film
Pancytopenia — all 3 lines low
Reticulocytes ↓↓ — inappropriately low (key)
Film: no dysplasia, no blasts
MCV may be ↑ (stress erythropoiesis)
No dysplasia = distinguishes from MDS
2
Bone Marrow Trephine Biopsy
Trephine essential — aspirate alone insufficient (dry tap)
Hypocellularity <25% + fat cell replacement
No fibrosis, no infiltration, no dysplasia
Residual lymphocytes + plasma cells only
3
Exclude Other Causes
B12 + Folate — megaloblastic anaemia
Viral serology — hepatitis A/B/C, EBV, CMV, HIV, Parvovirus B19
ANA, dsDNA — SLE
TFTs — hypothyroidism
LDH, uric acid — leukaemia/lymphoma
CT chest/abdomen — lymphadenopathy, thymoma
4
Flow Cytometry — PNH Clone
CD55⁻ CD59⁻ cells on RBCs and WBCs
Present in ~50% of acquired AA
PNH clone >50% → eculizumab
Always test — changes management
5
Cytogenetics + Molecular
BM cytogenetics — exclude MDS (monosomy 7, del5q)
NGS panel — DNMT3A, ASXL1, BCOR, PIGA
Telomere length — if DC suspected
DEB/MMC breakage test — if Fanconi suspected (age <40)
6
HLA Typing + Transplant Workup
HLA typing patient + siblings — if SAA/VSAA
Unrelated donor search if no sibling match
Echo + PFTs — pre-transplant fitness
Ferritin — iron overload from transfusions
Minimise transfusions pre-HSCT
Differential Diagnosis
ConditionMarrow CellularityBlastsDysplasiaKey distinguishing feature
Aplastic AnaemiaHypocellular <25%AbsentAbsentFat replacement, empty marrow
MDSNormo / hypercellular<20%PresentDysplastic cells, cytogenetic abnormalities
AMLHypercellular≥20%VariableBlast infiltration
B12 / Folate deficiencyHypercellularAbsentMegaloblasticMacro-ovalocytes, hypersegmented neutrophils
PNHVariableAbsentAbsentCD55⁻/CD59⁻ on flow, haemolysis, thrombosis
HypersplenismNormal / ↑AbsentAbsentMassive splenomegaly

Management

Supportive Care

  • Blood transfusions as required

  • Platelet transfusions

  • Prompt treatment of infections

  • Broad-spectrum antibiotics for febrile neutropenia

  • Good infection prevention measures

Immunosuppressive Therapy

For patients not suitable for transplantation:

  • Antithymocyte globulin (ATG)

  • Cyclosporine

  • Eltrombopag (in selected patients)

Hematopoietic Stem Cell Transplantation

First-line treatment for:

  • Severe Aplastic Anemia (AA)

  • Young patients

  • Suitable matched sibling donor available

Treat the Underlying Cause

  • Stop causative drugs

  • Avoid toxic chemical exposure

  • Treat associated infections

  • Manage autoimmune disease

Complications

  • Severe bacterial infections
  • Fungal infections
  • Sepsis
  • Major bleeding
  • Intracranial hemorrhage
  • Iron overload from repeated transfusions
  • Relapse
  • Evolution to myelodysplastic syndrome
  • Acute myeloid leukemia
  • Paroxysmal nocturnal hemoglobinuria (PNH)

Prognosis

The prognosis depends on disease severity, patient age, and response to treatment. With modern immunosuppressive therapy and hematopoietic stem cell transplantation, long-term survival has improved significantly. Severe untreated Aplastic Anemia (AA) has a high mortality due to infection and bleeding.

Key Points / Clinical Pearls

  • Aplastic Anemia (AA) is a bone marrow failure syndrome causing pancytopenia.
  • Most acquired cases are immune-mediated.
  • Patients present with fatigue, infections, and bleeding.
  • Lymphadenopathy and splenomegaly are usually absent.
  • CBC shows pancytopenia with a low reticulocyte count.
  • Bone marrow biopsy demonstrates a markedly hypocellular marrow.
  • Stem cell transplantation is the preferred treatment for eligible patients with severe disease.
  • Immunosuppressive therapy is the main alternative for non-transplant candidates.
  • Prompt treatment of infections and bleeding is essential.
  • Long-term follow-up is needed because of relapse and clonal evolution risks.