Literature DB >> 26559015

The effect of tranexamic acid on blood coagulation in total hip replacement arthroplasty: rotational thromboelastographic (ROTEM®) analysis.

H S Na1, H J Shin1, Y J Lee1, J H Kim1, K H Koo2, S H Do1.   

Abstract

We evaluated changes in rotational thromboelastometry (ROTEM(®) ) parameters and clinical outcomes in patients undergoing total hip replacement arthroplasty, with concomitant infusions of tranexamic acid and of 6% hydroxyethyl starch 130/0.4. Fifty-five patients were randomly assigned to either the tranexamic acid (n = 29) or the control (n = 26) group. Hydroxyethyl starch was administered in the range of 10-15 ml.kg(-1) during the operation in both groups. In the control group, the clot formation time and maximum clot firmness of APTEM showed significant differences when compared with those of EXTEM at one hour postoperatively, suggestive of fibrinolysis. In the tranexamic acid group, there was no significant difference between each postoperative EXTEM and APTEM parameter. In the tranexamic acid and control group, postoperative blood loss was 308 ml (210-420 [106-745]) and 488 ml (375-620 [170-910], p = 0.002), respectively, and total blood loss was 1168 ml (922-1470 [663-2107]) and 1563 ml (1276-1708 [887-1494], p = 0.003). Haemoglobin concentration was higher in the tranexamic acid group on the second postoperative day (10.5 (9.4-12.1 [7.9-14.0]) vs. 9.6 (8.9-10.5[7.3-16.0]) g.dl(-1) , p = 0.027). In patients undergoing total hip replacement arthroplasty, postoperative fibrinolysis aggravated by hydroxyethyl starch was attenuated by co-administration of 10 mg.kg(-1) tranexamic acid, which may have led to less postoperative blood loss.
© 2015 The Association of Anaesthetists of Great Britain and Ireland.

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Year:  2015        PMID: 26559015     DOI: 10.1111/anae.13270

Source DB:  PubMed          Journal:  Anaesthesia        ISSN: 0003-2409            Impact factor:   6.955


  5 in total

Review 1.  Tranexamic acid in Neurosurgery: a controversy indication-review.

Authors:  José Luiz de Faria; Josué da Silva Brito; Louise Teixeira Costa E Silva; Christiano Tadeu Sanches Mattos Kilesse; Nicolli Bellotti de Souza; Carlos Umberto Pereira; Eberval Gadelha Figueiredo; Nícollas Nunes Rabelo
Journal:  Neurosurg Rev       Date:  2020-06-17       Impact factor: 3.042

2.  Major liver resection, systemic fibrinolytic activity, and the impact of tranexamic acid.

Authors:  Paul J Karanicolas; Yulia Lin; Jordan Tarshis; Calvin H L Law; Natalie G Coburn; Julie Hallet; Barto Nascimento; Janusz Pawliszyn; Stuart A McCluskey
Journal:  HPB (Oxford)       Date:  2016-10-18       Impact factor: 3.647

Review 3.  Comparison of topical and intravenous administration of tranexamic acid for blood loss control during total joint replacement: Review of literature.

Authors:  Georgi P Georgiev; Panayot P Tanchev; Zlatka Zheleva; Plamen Kinov
Journal:  J Orthop Translat       Date:  2018-01-20       Impact factor: 5.191

4.  Imaging Analysis of Prosthesis Angle after Hip Replacement with Direct Anterior Approach in Lateral Position.

Authors:  Daojian Zhang; Liping Pan; Talatibaike Maimaitijuma; Heng Liu; Hao Wu
Journal:  J Healthc Eng       Date:  2021-02-17       Impact factor: 2.682

5.  Optimal use of tranexamic acid for total hip arthroplasty: A network meta-analysis.

Authors:  Byung-Ho Yoon; Tae-Young Kim; Young Seung Ko; Young-Kyun Lee; Yong-Chan Ha; Kyung-Hoi Koo
Journal:  PLoS One       Date:  2018-10-31       Impact factor: 3.240

  5 in total

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