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Anticoagulation in cirrhosis: a new paradigm?

Clinical and Molecular Hepatology 2017;23(1):13-21.
Published online: March 14, 2017

Department of Internal Medicine, Gastroenterology Unit, Azienda Ospedaliero-Universitaria Policlinico di Modena, Modena,Italy

Corresponding author : Erica Villa Department of Internal Medicine, Gastroenterology Unit, Università degli Studi di Modena & Reggio Emilia, and Azienda Ospedaliero-Universitaria di Modena, Via del Pozzo 71, Modena 41124, Italy Tel: +390594225308, Fax: +390594222624 Email: erica.villa@unimore.it
• Received: December 23, 2016   • Accepted: February 9, 2017

Copyright © 2017 by The Korean Association for the Study of the Liver

This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

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Anticoagulation in cirrhosis: a new paradigm?
Clin Mol Hepatol. 2017;23(1):13-21.   Published online March 14, 2017
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Anticoagulation in cirrhosis: a new paradigm?
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Anticoagulation in cirrhosis: a new paradigm?
Anticoagulation in cirrhosis: a new paradigm?
Type of PVT %
Overt
 Screening for HCC 0.6
 In-Hospital 7.0
 Necropsy 8.0-40
 Before LTx or PSS 15.0-25
Unrecognized
 Small mural thrombus 64
 Large veins (intimal fibrosis) 25
 Small veins (intimal fibrosis) 36
Type of study Drug used Target population N Patients PVT Bleeding Outcome
Chen et al. [25] (2016) Single-centre, retrospective Warfarin (2.5 mg daily, adjusted by 0.6–1.2 mg until the target INR was achieved. LC with PVT 36 MPV (G1/G2/G3/G): 1/3/2/16 NA PVT improved in 15 (68.2%) patients, was stable in four patients (18.2%), and progressed in three patients (13.6%)
Klute et al. [26 ] (2016) Single-centre, retrospective Warfarin: 26 patients (60.5%) LC with PVT 43 Portal vein: 16 (37.2%) GI bleeding : 7 (16.2%) 14 patients (48.3%): chronic thrombosis
LMWH): 7 patients (16.3%), rivaroxaban: 5 patients (11.6%), Aspirin:1patient (2.3%). Hepatic vein: 5 (11.6%) Subdural hematoma: 1 (2.3%) 13 patients (44.8%): resolution in
Mesenteric vein: 6 (14.0%) 2 patients (6.9%): progressive thrombosis
Combined: 16 (37.2%)
Kwon et al. [27] (2016) Single-centre, prospective Dalteparin: 81 patients (90.0%) Enoxaparin: 9 (10.0%) LC with PVT 90 NA 13 patients (14.4%) Complete recanalization: 16 patients (17.8%) partial recanalization: 37
Both for six months (therapeutic doses)
Cui et al. [28] (2015) Single-centre, retrospective Enoxaparin (1 mg/kg s.c. every 12 h or 1.5 mg/kg s.c. every 24 h) LC with PVT 65 Occludent in 11 of 65 patients (16.9%) and partial in 54 patients (83.1%) No bleeding 20 patients (30.8%) complete recanalization
31 patients (47.7%) partial recanalization
No response 14 patients (21.5%)
Takatori et al. [29] (2013) Single-centre, prospective, comparative Monotherapy: 1,250 units of danaparoid sodium twice daily for 14 days. LC with PVT 28 NA NA Effective (defined as >50% reduction of thrombus size in diameter) (n=26)
Combination Tx: Danaparoid+1,500 U AT-III infused on Days 1-5 and 8-12
Copaci et al. [30] (2013) Single-centre, retrospective Sulodexidum 2 tb/day LC with PVT 21 Degree: complete (n=6); partial (n=15) Bleeding from gastroesophageal varices (n=11) Complete recanalization (n=5); partial recanalization (n=8); no response (n=8)
Werner et al. [31] (2013) Single-centre, retrospective Warfarin (1mg daily, that was increased by 1-mg increments until the target INR was achieved LC, awaiting LT, and PVT 28 NA Large esophageal varices (n=14); previous variceal bleeding (n=0) Complete resolution (n=11); stability with partial resolution (n=12); no change (n=5); thrombus extension (n=0)
Senzolo et al. [24] (2012) Single-centre, prospective Nadroparin (95 anti-Xa U/Kg body weight td) LC with PVT 33 Degree: CTPV (n=2); complete (n=7); partial (n=24) Varices: NA; previous variceal bleeding (n=8) Complete recanalization (n=12); partial response (n=9); unchanged (n=7); progression of thrombosis (n=5)
Stage: <6 months (n=19); 6–12 months (n=6); >12 months (n=8)
Delgado et al. [32] (2012) Multicentre, retrospective LMWH in 47 patients LC with PVT 55 Degree: CTPV (n=0); complete (n=14); partial (n=41) Varices: NA; previous variceal bleeding (n=24) Complete recanalization (n=25); partial response (n=8); no recanalization (n=22)
vitamin K antagonists (VKA) in 8 Stage: acute or sub-acute (n=31)
Extension: PV or PV branches (n=25); PV+SV (n=2); PV+SMV (n=13); PV+SV+SMV (n=12); SMV (n=2); SV (n=1)
Maruyama et al. [33] (2012) Single-centre, prospective LMWH (75 IU/kg/day) LC with PVT 5 Extension: MPV (n=3); PV branches (n=1); SV (n=1) Small varices (n=1); medium/large varices (n=4); red color sign (n=5); previous variceal bleeding (n=5) Complete recanalization (n=5)
Bento et al. [34] (2011) Single-centre, retrospective Enoxaparin (80 mg/day) followed by either prophylactic doses (40 mg/day) of LMWH or acenocoumarol (target INR 2–3), during 6 months LC with chronic PVT 28 Degree: complete (n=18); partial (n=10) NA Complete recanalization (n=13); partial response (n=5)
Extension: MPV and/or PV branches (n=19); SMV (n=2); MPV+SMV/SV (n=7)
Amitrano et al. [35] (2010) Single-centre, retrospective Enoxaparin 200 U/kg/d of for at least 6 mo. LC with PVT 28 Degree: CTPV (n=0); complete (n=5); partial (n=23) Varices: NA; previous variceal bleeding (n=9) Complete recanalization (n=21); partial response (n=2); no response (n=3); progression into mesenteric vein (n=1) or CTPV (n=1)
Extension: concomitant mesenteric involvement (n=15); SV (n=5)
Francoz et al. [13] (2005) Single-centre, retrospective Nadroparin (5700 UI/day subcutaneously) followed by acenocoumarol LC, awaiting LT, and PVT 19 Degree: complete (n=1); partial (n=18) Varices: grade I (n=5); grade II (n=8); grade III (n=4); previous variceal bleeding (n=14) Complete recanalization (n=7 in partial PVT; n=1 in complete PVT); unchanged (n=10); thrombus extension (n=1)
Stage: de novo thrombosis (n=6)
Extension: MPV (n=8); RPV (n=9); LPV (n=1)||
Francoz et al. [36] (2008) Single-centre, prospective LC, awaiting LT, and PVT 24 Degree: CTPV (n=0); complete (n=3); partial (n=21) NA Repermeation (n=15 in partial PVT; n=0 in complete PVT); no repermeation (n=6 in partial PVT; n=3 in complete PVT)
Table 1. Prevalence of PVT in cirrhosis in different clinical settings

PVT, portal vein thrombosis; HCC, hepatocellular carcinoma; LTx, liver transplantation; PSS, portosystemic shunt.

Table 2. Anticoagulation for the treatment of portal vein thrombosis in patients with liver cirrhosis

LC, liver cirrhosis; PVT, portal vein thrombosis; MPV, mesenteric portal vein; NA, not available; LMWH, low molecular weight heparin; GI, gastrointestinal; LT, liver transplantation; CTPV, cavernous transformation of the portal vein; VKA, vitamin K antagonists; PV, portal vein; SV, splenic vein; SMV, superior mesenteric vein; RPV, right portal vein; LPV, left portal vein.