Where Exactly Does Hemophilia Break the Cascade?

Where Exactly Does Hemophilia Break the Cascade?

The question isn't "what's wrong?" It's "which STEP is broken?" Get this wrong and you'll confuse hemophilia with everything else.

The Setup
9-year-old boy. Knee swelling after soccer collision. History of prolonged bleeding after tooth extraction. Multiple bruises in various stages. Labs: platelets 235k (normal), PTT 78 sec (HIGH), PT 14 sec (normal), bleeding time 4 min (normal).
Which step in coagulation is most likely directly affected?

Read the Labs, Find the Pathway

The one rule that governs this entire topic:

PTT tests the intrinsic pathway. PT tests the extrinsic pathway. If only one is prolonged, you know exactly which half of the cascade is broken.

This kid: PTT is sky-high. PT is normal. Platelets are normal. Bleeding time is normal. That means:

โœ“ Primary hemostasis (platelets, vWF) is working fine.
โœ“ Extrinsic pathway is fine.
โœ— Intrinsic pathway is broken.

๐Ÿ”‘PTT = Pathway that's Intrinsic (the P points In). PT = Pathway that's Extrinsic (the T points ouT).

Three Pathways, One Bottleneck

Intrinsic Pathway (PTT)
Contact activation (XII โ†’ XIIa)
โ†“
XI โ†’ XIa
โ†“
IX โ†’ IXa โš  Hemophilia B = missing factor IX
โ†“
VIIIa + IXa complex โš  Hemophilia A = missing factor VIII
โ†“ This complex converts...
Factor X โ†’ Factor Xa โ† THIS is the step that's impaired
Extrinsic Pathway (PT)
Tissue factor + VII โ†’ VIIa
โ†“ This ALSO converts...
Factor X โ†’ Factor Xa โ† Still works! (PT is normal)
Common Pathway (both PT and PTT)
Xa + Va โ†’ Prothrombin โ†’ Thrombin
โ†“
Fibrinogen โ†’ Fibrin โ†’ cross-linked clot (factor XIII)
โšก Factor X can be activated by BOTH pathways. Hemophilia blocks the intrinsic route to factor X (via VIII/IX), but the extrinsic route (via VII) still works. That's why the PT stays normal.

Walk the Cascade, Step by Step

Tap "Next Step" to advance. Watch where Hemophilia A and Hemophilia B break the chain.

Extrinsic ยท PT
Tissue damage exposes tissue factor (TF / III)
โ†“
TF + VII โ†’ VIIa
โ†“ activates X
Intrinsic ยท PTT
Contact activation: XII โ†’ XIIa
โ†“
XI โ†’ XIa
โ†“
IX โ†’ IXa ยท Hemophilia B blocks here
โ†“
VIIIa + IXa tenase complex ยท Hemophilia A blocks here
โ†“ activates X
Common
X โ†’ Xa (joined by Va)
โ†“
Prothrombin (II) โ†’ Thrombin (IIa)
โ†“
Fibrinogen (I) โ†’ Fibrin
โ†“
XIII cross-links fibrin into a stable clot
Press Next Step to start at the trigger.
Step 0 / 10
โš ๏ธ
Board trap: PTT elevated, PT normal
Isolated PTT up with normal PT = intrinsic pathway defect. The differential is short: factor VIII (Hemophilia A), factor IX (Hemophilia B), factor XI (Hemophilia C), factor XII (no bleeding), vWD, lupus anticoagulant, or heparin. Bleeding pattern + mixing study sorts them.

Why "Conversion of Factor X" Is the Answer

The question doesn't ask "what factor is missing?" It asks "which STEP is affected."

Hemophilia A = missing factor VIII. Hemophilia B = missing factor IX. Both VIII and IX form a complex that converts factor X to Xa. Without that complex, the intrinsic pathway can't activate factor X.

The step is: conversion of factor X. Not "production of factor VIII." Not "formation of thrombin." The specific enzymatic reaction that's impaired.

โš ๏ธ
Trap: "Formation of Thrombin"
Thrombin formation happens in the COMMON pathway (Xa + Va โ†’ thrombin). Once factor X gets activated by the extrinsic pathway, the common pathway works fine. Hemophilia doesn't directly impair thrombin formation. It impairs the step BEFORE the common pathway.
โš ๏ธ
Trap: Hemophilia vs von Willebrand Disease
Both have prolonged PTT. Both have normal PT. The difference? Bleeding time. vWD = prolonged bleeding time (platelets can't stick). Hemophilia = normal bleeding time (platelets work fine, it's the clot that's weak). Also: vWD = mucosal bleeding (nosebleeds, gum bleeding, heavy periods). Hemophilia = deep bleeding (hemarthrosis, muscle hematomas).
โš ๏ธ
Trap: "Activation of Factor VII"
Factor VII is the extrinsic pathway. If VII were the problem, PT would be prolonged and PTT would be normal. This kid has the opposite pattern. The extrinsic pathway is untouched.

Know the Pattern, Know the Diagnosis

ConditionPTTPTBTPlateletsSee It
Hemophilia A/Bโ†‘NormalNormalNormalHemarthrosis, deep bleeds
vWDโ†‘Normalโ†‘NormalMucosal bleeds, menorrhagia
Factor VII deficiencyNormalโ†‘NormalNormalOnly extrinsic pathway affected
DICโ†‘โ†‘โ†‘โ†“Schistocytes, elevated D-dimer
ITPNormalNormalโ†‘โ†“Petechiae, anti-platelet Ab
Liver failureโ†‘โ†‘NormalNormal/โ†“All factors made in liver

The High-Yield Detail

Hemophilia A is X-linked recessive. That means it almost exclusively affects males. But here's the thing: 30% of hemophilia A cases are new mutations with no family history. So when a boy shows up with hemarthrosis and a sky-high PTT, don't let "no family history" throw you off. One in three is brand new.

Same Pattern, Different Disease

The "PTT up, PT normal" pattern isn't just hemophilia. It's any intrinsic pathway problem: factor XII deficiency (asymptomatic!), factor XI deficiency (hemophilia C, Ashkenazi Jewish), lupus anticoagulant (paradoxically causes CLOTTING, not bleeding). The lab pattern is the same. The clinical picture tells you which one.

๐Ÿ”‘Hemophilia = Hemarthrosis + High PTT + Hereditary (X-linked). Three H's.

Test Yourself

Read the labs. Find the pathway. Name the step.

The cascade is clicking.

Factor Deficiencies & Coagulopathies

Tap to flip.

๐Ÿงฌ
Hemophilia A
Factor VIII deficiency. X-linked recessive.
Tap to flip

Hemophilia A

  • Defect: Factor VIII deficiency
  • Inheritance: X-linked recessive
  • Severity: Severe if <1% activity
  • Labs: aPTT up, PT normal
  • Bleeding: Hemarthrosis, deep tissue bleeds
  • Board pearl: 30% are new mutations, no family history
๐Ÿฉบ
Hemophilia B
Christmas disease. Factor IX deficiency. X-linked recessive.
Tap to flip

Hemophilia B (Christmas Disease)

  • Defect: Factor IX deficiency
  • Inheritance: X-linked recessive
  • Labs: aPTT up, PT normal (identical to Hemophilia A)
  • Distinguish: Factor IX assay
  • Treatment: Recombinant FIX concentrate; NOT DDAVP
โœก๏ธ
Hemophilia C
Factor XI deficiency. Autosomal recessive. Ashkenazi Jewish.
Tap to flip

Hemophilia C (Factor XI Deficiency)

  • Defect: Factor XI deficiency
  • Inheritance: Autosomal recessive
  • Population: Ashkenazi Jewish
  • Bleeding: Surgical-related, NOT spontaneous hemarthrosis
  • Board pearl: Variable severity; aPTT up but bleeding poorly correlates with level
๐Ÿ”ฌ
Factor XII Deficiency
Hageman factor. Prolonged aPTT in lab. Zero bleeding. Thrombosis risk.
Tap to flip

Factor XII Deficiency (Hageman)

  • Defect: Factor XII (contact activation)
  • Labs: aPTT markedly prolonged
  • Clinical: NO bleeding whatsoever
  • Paradox: Thrombosis risk instead
  • Board pearl: Prolonged aPTT with zero clinical bleeding = think Factor XII first
๐Ÿฅฆ
Vitamin K Deficiency
Blocks II, VII, IX, X, protein C/S. PT rises first (FVII shortest half-life).
Tap to flip

Vitamin K Deficiency

  • Blocks: Factors II, VII, IX, X, Protein C and S
  • Labs: PT up AND aPTT up
  • Why PT first: Factor VII has the shortest half-life (6h)
  • Causes: Malabsorption, warfarin, newborns, broad-spectrum antibiotics
  • Treatment: Vitamin K, FFP for active bleeding
๐Ÿ’ฅ
DIC
Consume everything. Bleed everywhere. Schistocytes on smear.
Tap to flip

DIC (Disseminated Intravascular Coagulation)

  • Labs: PT up, aPTT up, fibrinogen DOWN, D-dimer UP
  • Smear: Schistocytes (fragmented RBCs)
  • Causes: Sepsis, trauma, obstetric emergency, malignancy
  • Treatment: Treat underlying cause; FFP/cryo/platelets as needed
  • Board pearl: Consumption of ALL factors + platelets = everything is off
๐Ÿฉธ
Factor V Leiden
Resistance to APC. Most common hereditary thrombophilia. Clots, not bleeding.
Tap to flip

Factor V Leiden

  • Defect: Factor V mutated, resistant to activated protein C (APC)
  • Result: Thrombosis, not bleeding
  • Most common: Hereditary thrombophilia in Western populations
  • Risk: DVT, PE, especially with OCPs or pregnancy
  • Board pearl: Labs may show aPTT prolonged but CLOTS in vivo
โšก
Antiphospholipid Syndrome
Lupus anticoagulant. Clots in vivo, prolonged aPTT in vitro.
Tap to flip

Antiphospholipid Syndrome

  • Antibodies: Anti-cardiolipin, lupus anticoagulant, anti-beta-2-glycoprotein I
  • Labs: aPTT prolonged in vitro, mixing study does NOT correct
  • Clinical: CLOTS (DVT, PE, stroke) NOT bleeding
  • OB: Recurrent pregnancy loss (placental thrombosis)
  • Board pearl: Triple paradox: not just lupus, not an anticoagulant, clots not bleeds

Coagulopathy Workup

Start with the lab result. Work down to the diagnosis.

What is prolonged?

What You See

Real findings that show up in clinical practice and at the bedside.

Petechiae: pinpoint non-blanching skin hemorrhages Petechiae (platelet disorder) Wikimedia Commons
Swollen left knee with a joint effusion, the hemarthrosis (deep joint bleed) that is the hallmark of hemophilia Hemarthrosis: the hemophilia bleed Wikimedia Commons
Medically reviewed by Kaitlyn Cocuzzo, MD and Fatima Ali, DO · Last updated July 5, 2026 at 8:17 PM ET
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