Immune Thrombocytopenic Purpura

Immune Thrombocytopenic Purpura (ITP)

Definition

Immune Thrombocytopenic Purpura (ITP) — also known as Immune Thrombocytopenia — is an acquired autoimmune disorder characterized by isolated thrombocytopenia (platelet count <100,000/µL) 

  • It is a diagnosis of exclusion — no other cause of thrombocytopenia should be present.
  • Hematologist Referral is must

Classification

Type

Description

Primary ITP

Isolated thrombocytopenia without identifiable cause.

Secondary ITP

Occurs secondary to other conditions such as:

• SLE, antiphospholipid syndrome

• HIV, HCV, CMV, EBV infections

• Lymphoproliferative disorders

• Drugs (quinine, heparin, sulfa drugs)

• Post-vaccination (MMR, COVID-19).

Acute ITP

Common in children, post-viral, self-limited (<6 months).

Chronic ITP

Common in adults, insidious, >12 months duration.

Refractory ITP

includes cases that do not resolve with splenectomy.  


 Epidemiology

  • Children: 2–4 yrs; post-viral; often acute and self-limiting.
  • Adults: 20–50 yrs; more common in women (2–3:1); Associated with chronic disease.

Pathophysiology

  1. Autoantibody formation:
    • IgG autoantibodies(Produced by autoreactive B cells) target platelet membrane glycoproteins — usually GPIIb/IIIa or GPIb/IX.
    • Antibody-coated platelets are recognized by:splenic macrophages,hepatic macrophages,reticuloendothelial system through: Fcγ receptors.This produces accelerated platelet clearance.
  1. Impaired megakaryocyte function:
    • Antibodies also suppress megakaryocyte maturation platelet production.

 Clinical Features

1. Bleeding manifestations(The relationship between platelet count and bleeding is not linear)

  • Mucocutaneous bleeding:
    • Petechiae, purpura, ecchymoses.
    • Gum bleeding, epistaxis, menorrhagia,Hematuria
  • Severe bleeding (rare): GI bleed , GU bleed, intracranial, wet Purpura(Blood blisters in mouth),retinal Hemmorhage.

2. Systemic symptoms

  • Usually absent (unlike leukemia or SLE).
  • No fever, lymphadenopathy, or hepatosplenomegaly (their presence suggests secondary causes).

3. Children

  • Often post-viral (URI, varicella), sudden onset, self-limited within weeks.

4.Evans syndrome:ITP + autoimmune hemolytic anemia(perform combs test)


Investigations

1. Basic Tests

Test

Findings

CBC

Isolated thrombocytopenia; Hb and WBC normal.

Peripheral smear

Normal RBC/WBC morphology; large platelets (young platelets).

Reticulocyte count

Normal.

USG abdomen

To rule out Spleenomegaly

OTHER

Vitamin B12 and folate,Prothrombin time and activated partial thromboplastin time

  • Bone marrow examination is not routinely needed, only if atypical features (e.g., pancytopenia, lymph node enlargement, splenomegaly, neutropenia, leukocytosis, atypical lymphocytosis, or anemia in the presence of bone pain, fevers, or unintentional weight loss. , or poor response to therapy).

Antiplatelet antibody testing is NOT routinely recommended.

  • sensitivity is limited
  • specificity is imperfect
  • negative test does not exclude ITP

2. Additional Tests to rule out secondary causes

  • HIV, HCV serology (must be done in all adults).
  • ANA if SLE suspected.
  • TSH, antiphospholipid antibodies, or direct Coombs test in selected cases.
  • Individuals with recurrent epigastric pain suggestive of peptic ulcer must be tested for Helicobacter pylori infection, which is a possible cause of ITP.
  • No specific diagnostic test for ITP — it’s a diagnosis of exclusion.

Diagnostic Criteria (ASH 2019)

  1. Isolated thrombocytopenia (<100,000/µL).
  2. Normal RBC and WBC morphology.
  3. No other cause of thrombocytopenia identified(Always exclude pseudothrombocytopenia before diagnosing ITP)

 Differential Diagnosis

Condition

Key Difference

Drug-induced thrombocytopenia

Temporal relation with drug exposure (e.g. quinine, heparin).

SLE/APL syndrome

Other autoimmune features or antibodies.

Thrombotic microangiopathy (TTP/HUS)

MAHA, schistocytes, renal/CNS involvement.

Bone marrow failure (AA, leukemia)

Pancytopenia, hypocellular marrow.

Hypersplenism

Splenomegaly, sequestration.

Decreased production

aplastic,anemia,leukemia,MDS,marrow infiltration,chemotherapy,radiation,alcohol,B12 deficiency,folate deficiency,viral infection


Sequestration

hypersplenism,cirrhosis,portal hypertension


Treatment  ITP (Adult) – ASH

The goal is NOT to normalize the platelet count so dont transfuse platelets Because transfused platelets are rapidly destroyed by circulating autoantibodies.

When should platelets be given?

  • intracranial hemorrhage
  • uncontrolled GI bleeding
  • major surgical bleeding
  • platelet count <10,000u/L

The objective is not to maintain a long-term platelet count but to provide an immediate hemostatic bridge.

1. Treatment Decision (Steroids vs Observation)

Platelet Count

Clinical Status

Recommendation

< 30,000/µL

Asymptomatic / minor mucocutaneous bleed

Corticosteroids

≥ 30,000/µL

Asymptomatic / minor bleed

 Avoid steroids Observation

Borderline (~30k)

Any

 Individualize

Override factors (favor steroids even if ≥30k)

  • Age > 60 years
  • Anticoagulant / antiplatelet use
  • Planned surgery/procedure
  • Significant comorbidities
  • Platelets trending down

2. Admission vs Outpatient Management

Platelet Count

ITP Status

Clinical Status

Recommendation

< 20,000/µL

Newly diagnosed

Asymptomatic / minor bleed

Admit

< 20,000/µL

Established ITP

Asymptomatic / minor bleed

Outpatient

≥ 20,000/µL

Any

Asymptomatic / minor bleed

Outpatient

3. When to Consider Admission (Even if ≥20k)

Situation

Reason

Diagnostic uncertainty

Could be other serious cause

Social issues

Poor follow-up / access

High bleeding risk

Comorbidities

Clinical concern

Physician judgment

First-line Therapy

Treatment

Dose

Comments

Corticosteroids

Prednisolone 0.5 – 2.0mg/kg/day× 2–4 weeks, then taper OR

Dexamethasone 40 mg/day × 4 days (Some regimen repeat it every 2–4 weeks × up to 3 cycles).

Rapid response in 2–5 days. Avoid long-term steroids.(≤6 weeks recommended)

IV Immunoglobulin (IVIg)

1–2 g/kg for 4–5 days or 0.4 g/kg/day over 3–5 days

  • The response is usually rapid but temporary
  • Mechanism-Fc receptor blockade on splenic macrophages

For rapid rise (e.g., severe bleeding, pre-op, pregnancy).

Anti-D Immunoglobulin (Rh⁺, non-splenectomized only)

50–75 µg/kg IV once

Causes mild hemolysis; used less now.

 Second-line Therapy (for steroid failure or relapse)

ASH recommendations emphasize individualized choice among TPO-RA, rituximab and splenectomy.There is no single universally “best” second-line therapy.

Option

Notes

Rituximab(Anti-CD20 monoclonal antibody)

Response 40–60%; relapse common.

Thrombopoietin receptor agonists (TPO-RAs)-Eltrombopag, Romiplostim

ASH supports either eltrombopag or romiplostim among TPO-RAs for adults with ITP ≥3 months who are corticosteroid-dependent or unresponsive to corticosteroids.

Eltrombopag—1–10 μg/kg, subcutaneously once a week

Romiplostim—25–75 mg orally daily

Splenectomy

Reserved for chronic, refractory cases; long-term remission in ~60%.ASH recommends, when possible, delaying splenectomy for at least 1 year after diagnosis.Vaccination before splenectomy(pneumococcal,meningococcal,Hib)

Refractory ITP Options

  • Immunosuppressants: Azathioprine, cyclosporine, mycophenolate mofetil(500 mg orally twice daily ), cyclophosphamide.
  • Fostamatinib: SYK inhibitor, approved for chronic ITP refractory to ≥2 lines of therapy.

Emergency Management

If life-threatening bleeding (e.g., intracranial, GI, severe epistaxis):

  • IV methylprednisolone 1 g/day × 3 days
  • IVIg 1 g/kg/day which may be repeated the next day if the platelet count remains below 50,000/μL.
  • Platelet transfusion ( apheresis unit or 4 to 6 pooled platelet units.)
  • Tranexamic acid

 ITP in Pregnancy

  • Similar pathogenesis.
  • Treat if platelet <30,000 or bleeding.
  • Preferred: Prednisolone ± IVIg.
  • Avoid: Rituximab, TPO agonists, splenectomy (except 2nd trimester).
  • Delivery: Aim platelet >50,000/µL for vaginal; >80,000/µL for C-section.
  • Maternal ITP antibodies can cross the placenta.Neonatal thrombocytopenia can occur even when the maternal platelet count is relatively good.

ITP and DVT prophylaxis

In severe thrombocytopenia:

  • mechanical prophylaxis may be preferred
  • pharmacologic prophylaxis depends on platelet count and bleeding status

There is no universal platelet threshold applicable to every patient.

  • A practical ICU approach often considers pharmacologic prophylaxis when:platelet count is sufficiently stable, commonly ≥50 ×10⁹/L, and there is no active bleeding.But individualized assessment is essential.

 Prognosis

  • Children: 80–90% recover spontaneously within 6 months.
  • Adults: 20–30% have chronic disease.
  • Mortality from bleeding <1%, but chronic relapsing course common.

REFERENCE

  1. Pietras NM, Gupta N, Justiz Vaillant AA, et al. Immune Thrombocytopenia. [Updated 2024 May 5]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2026 Jan-. Available from: https://www.ncbi.nlm.nih.gov/books/NBK562282/
  2. American Society of Hematology 2019 guidelines for immune thrombocytopenia
  3. Mititelu A, Onisâi MC, Roșca A, Vlădăreanu AM. Current Understanding of Immune Thrombocytopenia: A Review of Pathogenesis and Treatment Options. Int J Mol Sci. 2024 Feb 10;25(4):2163. doi: 10.3390/ijms25042163. PMID: 38396839; PMCID: PMC10889445.
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