Comparative Study of Male and Female Patients Undergoing Frozen Elephant Trunk Total Arch Replacement
Abstract
:1. Introduction
2. Materials and Methods
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
ACT | Activated clotting time |
CABG | Coronary artery bypass graft. |
CTA | Computed tomography angiography. |
FET | Frozen elephant trunk. |
mRS | modified Rankin Scale. |
TEM | Type: Entry site, Malperfusion. |
OR | odds ratio. |
References
- Shrestha, M.; Bachet, J.; Bavaria, J.; Carrel, T.P.; De Paulis, R.; Di Bartolomeo, R.; Etz, C.D.; Grabenwöger, M.; Grimm, M.; Haverich, A.; et al. Current status and recommendations for use of the frozen elephant trunk technique: A position paper by the Vascular Domain of EACTS. Eur. J. Cardiothorac. Surg. 2015, 47, 759–769. [Google Scholar] [CrossRef] [PubMed]
- Isselbacher, E.M.; Preventza, O.; Hamilton Black, J., III; Augoustides, J.G.; Beck, A.W.; Bolen, M.A.; Braverman, A.C.; Bray, B.E.; Brown-Zimmerman, M.M.; Chen, E.P.; et al. 2022 ACC/AHA Guideline for the Diagnosis and Management of Aortic Disease: A Report of the American Heart Association/American College of Cardiology Joint Committee on Clinical Practice Guidelines. Circulation 2022, 146, e334–e482. [Google Scholar] [CrossRef] [PubMed]
- Johnston, A.; Mesana, T.G.; Lee, D.S.; Eddeen, A.B.; Sun, L.Y. Sex Differences in Long-Term Survival After Major Cardiac Surgery: A Population-Based Cohort Study. J. Am. Heart Assoc. 2019, 8, e013260. [Google Scholar] [CrossRef]
- Chang, F.C.; Chen, S.W.; Chan, Y.H.; Lin, C.P.; Wu, V.C.; Cheng, Y.T.; Chen, D.Y.; Hung, K.C.; Chu, P.H.; Chou, A.H. Sex differences in risks of in-hospital and late outcomes after cardiac surgery: A nationwide population-based cohort study. BMJ Open 2022, 12, e058538. [Google Scholar] [CrossRef] [PubMed]
- Berger, T.; Kreibich, M.; Rylski, B.; Morlock, J.; Kondov, S.; Scheumann, J.; Kari, F.A.; Staier, K.; Maier, S.; Beyersdorf, F.; et al. Evaluation of myocardial injury, the need for vasopressors and inotropic support in beating-heart aortic arch surgery. J. Cardiovasc. Surg. 2020, 61, 505–511. [Google Scholar] [CrossRef] [PubMed]
- Erbel, R.; Aboyans, V.; Boileau, C.; Bossone, E.; Bartolomeo, R.D.; Eggebrecht, H.; Evangelista, A.; Falk, V.; Frank, H.; Gaemperli, O.; et al. 2014 ESC Guidelines on the diagnosis and treatment of aortic diseases: Document covering acute and chronic aortic diseases of the thoracic and abdominal aorta of the adult. The Task Force for the Diagnosis and Treatment of Aortic Diseases of the European Society of Cardiology (ESC). Eur. Heart J. 2014, 35, 2873–2926, Erratum in Eur. Heart J. 2015, 36, 2779. [Google Scholar] [CrossRef]
- Sievers, H.H.; Rylski, B.; Czerny, M.; Baier, A.L.M.; Kreibich, M.; Siepe, M.; Beyersdorf, F. Aortic dissection reconsidered: Type, entry site, malperfusion classification adding clarity and enabling outcome prediction. Interact. Cardiovasc. Thorac. Surg. 2020, 30, 451–457. [Google Scholar] [CrossRef]
- Broderick, J.P.; Adeoye, O.; Elm, J. Evolution of the Modified Rankin Scale and Its Use in Future Stroke Trials. Stroke 2017, 48, 2007–2012. [Google Scholar] [CrossRef]
- Chung, J.; Stevens, L.M.; Ouzounian, M.; El-Hamamsy, I.; Bouhout, I.; Dagenais, F.; Cartier, A.; Peterson, M.D.; Boodhwani, M.; Guo, M.; et al. Sex-Related Differences in Patients Undergoing Thoracic Aortic Surgery. Circulation 2019, 139, 1177–1184. [Google Scholar] [CrossRef]
- Cote, C.L.; De Waard, D.; Kivell, M.; Fagan, A.; Horne, G.; Hassan, A.; Hajizadeh, M.; Herman, C.R. Sex Differences in Trends in Incidence of Thoracic Aortic Aneurysm Repair and Aortic Dissection: 2005–2015. CJC Open 2022, 4, 1081–1089. [Google Scholar] [CrossRef]
- Spiliotopoulos, K.; Price, M.D.; Amarasekara, H.S.; Green, S.Y.; Zhang, Q.; Preventza, O.; Coselli, J.S.; LeMaire, S.A. Are outcomes of thoracoabdominal aortic aneurysm repair different in men versus women? A propensity-matched comparison. J. Thorac. Cardiovasc. Surg. 2017, 154, 1203–1214.e6. [Google Scholar] [CrossRef] [PubMed]
- Boczar, K.E.; Cheung, K.; Boodhwani, M.; Beauchesne, L.; Dennie, C.; Nagpal, S.; Chan, K.; Coutinho, T. Sex Differences in Thoracic Aortic Aneurysm Growth. Hypertension 2019, 73, 190–196. [Google Scholar] [CrossRef] [PubMed]
- Conzelmann, L.O.; Weigang, E.; Mehlhorn, U.; Abugameh, A.; Hoffmann, I.; Blettner, M.; Etz, C.D.; Czerny, M.; Vahl, C.F.; GERAADA Investigators. Mortality in patients with acute aortic dissection type A: Analysis of pre- and intraoperative risk factors from the German Registry for Acute Aortic Dissection Type A (GERAADA). Eur. J. Cardiothorac. Surg. 2016, 49, e44–e52. [Google Scholar] [CrossRef]
- Nienaber, C.A.; Fattori, R.; Mehta, R.H.; Richartz, B.M.; Evangelista, A.; Petzsch, M.; Cooper, J.V.; Januzzi, J.L.; Ince, H.; Sechtem, U.; et al. Gender-related differences in acute aortic dissection. Circulation 2004, 109, 3014–3021. [Google Scholar] [CrossRef]
- Luehr, M.; Yildiz, M.; Ma, W.G.; Heck, R.; Polycarpou, A.; Jassar, A.; Kreibich, M.; Dohle, D.S.; Weiss, G.; Hagl, C.; et al. Acute type A aortic dissection in adolescents and young adults under 30 years of age: Demographics, aetiology and postoperative outcomes of 139 cases. Eur. J. Cardiothorac. Surg. 2023, 63, ezad112. [Google Scholar] [CrossRef] [PubMed]
- Harris, K.M.; Strauss, C.E.; Eagle, K.A.; Hirsch, A.T.; Isselbacher, E.M.; Tsai, T.T.; Shiran, H.; Fattori, R.; Evangelista, A.; Cooper, J.V.; et al. Correlates of delayed recognition and treatment of acute type A aortic dissection: The International Registry of Acute Aortic Dissection (IRAD). Circulation 2011, 124, 1911–1918. [Google Scholar] [CrossRef] [PubMed]
- Zheng, J.; Xu, S.D.; Zhang, Y.C.; Zhu, K.; Gao, H.Q.; Zhang, K.; Jin, X.F.; Liu, T. Association between cardiopulmonary bypass time and 90-day post-operative mortality in patients undergoing arch replacement with the frozen elephant trunk: A retrospective cohort study. Chin. Med. J. (Engl.) 2019, 132, 2325–2332. [Google Scholar] [CrossRef]
- Shrestha, M.; Kaufeld, T.; Beckmann, E.; Fleissner, F.; Umminger, J.; Abd Alhadi, F.; Boethig, D.; Krueger, H.; Haverich, A.; Martens, A. Total aortic arch replacement with a novel 4-branched frozen elephant trunk prosthesis: Single-center results of the first 100 patients. J. Thorac. Cardiovasc. Surg. 2016, 152, 148–159.e1. [Google Scholar] [CrossRef]
- Beckmann, E.; Martens, A.; Kaufeld, T.; Natanov, R.; Krueger, H.; Rudolph, L.; Haverich, A.; Shrestha, M. Frozen elephant trunk in acute aortic type a dissection: Risk analysis of concomitant root replacement. Eur. J. Cardiothorac. Surg. 2022, 62, ezac051. [Google Scholar] [CrossRef]
- Chung, J.; Coutinho, T.; Chu, M.W.A.; Ouzounian, M. Sex differences in thoracic aortic disease: A review of the literature and a call to action. J. Thorac. Cardiovasc. Surg. 2020, 160, 656–660. [Google Scholar] [CrossRef]
- Walter, T.; Berger, T.; Kondov, S.; Gottardi, R.; Benk, J.; Rylski, B.; Czerny, M.; Kreibich, M. Postoperative In-Stent Thrombus Formation Following Frozen Elephant Trunk Total Arch Repair. Front. Cardiovasc. Med. 2022, 9, 921479. [Google Scholar] [CrossRef] [PubMed]
- Martens, A.; Beckmann, E.; Kaufeld, T.; Arar, M.; Natanov, R.; Fleissner, F.; Korte, W.; Krueger, H.; Boethig, D.; Haverich, A.; et al. Features and risk factors of early intraluminal thrombus formation within the frozen elephant trunk stent graft. J. Thorac. Cardiovasc. Surg. 2023. [Google Scholar] [CrossRef] [PubMed]
- Ibrahim, M.; Chung, J.C.; Ascaso, M.; Hage, F.; Chu, M.W.A.; Boodhwani, M.; Sheikh, A.A.; Leroux, E.; Ouzounian, M.; Peterson, M.D.; et al. In-hospital thromboembolic complications after frozen elephant trunk aortic arch repair. J. Thorac. Cardiovasc. Surg. 2022. [Google Scholar] [CrossRef] [PubMed]
All Patients (n = 362) | Female (n = 129) | Male (n = 233) | p | |
---|---|---|---|---|
Age (years) | 67 (59, 74) | 68 (60, 77) | 65 (58, 73) | 0.012 |
Diabetes mellitus type 2 | 11 (3) | 1 (1) | 10 (4) | 0.105 |
Hyperlipidemia | 127 (35) | 38 (29) | 89 (38) | 0.133 |
Hypertension | 309 (85) | 106 (82) | 203 (87) | 0.326 |
Coronary artery disease | 111 (31) | 28 (22) | 83 (36) | 0.008 |
History of smoking | 159 (44) | 50 (39) | 109 (47) | 0.133 |
COPD | 34 (9) | 17 (13) | 17 (7) | 0.088 |
History of stroke | 41 (11) | 16 (12) | 25 (11) | 0.604 |
Renal impairment | 43 (12) | 8 (6) | 35 (15) | 0.017 |
Bicuspid aortic valve | 14 (4) | 2 (2) | 12 (5) | 0.151 |
Connective tissue disease | 29 (8) | 11 (9) | 18 (8) | 0.840 |
All Patients (n = 362) | Female (n = 129) | Male (n = 233) | p | |
---|---|---|---|---|
Redo case | 151 (42) | 46 (36) | 105 (45) | 0.118 |
Type A dissection * | 139 (38) | 40 (31) | 99 (42) | 0.042 |
Acute | 64 (18) | 14 (11) | 50 (21) | 0.014 |
Type B dissection | 42 (12) | 19 (15) | 23 (10) | 0.170 |
Acute | 25 (7) | 15 (12) | 10 (4) | 0.009 |
Type non-A-non-B dissection | 44 (12) | 17 (13) | 27 (12) | 0.737 |
Acute | 29 (8) | 19 (15) | 10 (4) | 1.000 |
Aneurysm | 115 (32) | 50 (39) | 65 (28) | 0.025 |
PAU | 29 (8) | 9 (7) | 20 (9) | 0.690 |
Other | 8 (2) | 1 (1) | 7 (3) | 0.269 |
All Patients (n = 362) | Female (n = 129) | Male (n = 233) | p | |
---|---|---|---|---|
Cannulation | ||||
Axillary | 340 (94) | 119 (92) | 221 (94) | 0.802 |
Valved conduit | 43 (12) | 9 (7) | 34 (15) | 0.041 |
VSARR | 33 (9) | 8 (6) | 25 (11) | 0.186 |
AVR | 56 (15) | 23 (18) | 33 (14) | 0.361 |
CABG | 54 (15) | 13 (10) | 41 (18) | 0.088 |
Beating heart | 67 (19) | 27 (21) | 40 (17) | 0.395 |
CPB time (min) | 210 (176, 252) | 189 (162, 232) | 218 (184, 261) | <0.001 |
CX time (min) | 120 (94, 158) | 117 (87, 143) | 125 (96, 168) | 0.019 |
SACP time (min) | 100 (70, 128) | 99 (65, 125) | 101 (81, 131) | 0.603 |
Duration of surgery (min) | 384 (328, 452) | 361 (300, 417) | 396 (345, 474) | <0.001 |
Lowest body temperature (°C) | 25 (24, 25) | 25 (24, 25) | 25 (24, 25) | 0.522 |
Perioperative transfusions | ||||
PRBC | 4 (2, 6) | 4 (3, 6) | 4 (2, 6) | 0.058 |
FFP | 5 (4, 8) | 5 (4, 8) | 6 (4, 8) | 0.888 |
PC | 4 (2, 4) | 3 (2, 4) | 4 (2, 4) | 0.372 |
All Patients (n = 362) | Female (n = 129) | Male (n = 233) | p | |
---|---|---|---|---|
Dialysis | 39 (11) | 13 (10) | 26 (11) | 0.861 |
Tracheotomy | 23 (6) | 6 (5) | 17 (7) | 0.380 |
Paraplegia | 6 (2) | 2 (2) | 4 (2) | 1.000 |
Stroke | 56 (15) | 20 (16) | 36 (15) | 1.000 |
Non-disabling | 19 (5) | 7 (5) | 12 (5) | 1.000 |
New in-stent thrombus * | 19 (5) | 13 (10) | 6 (3) | 0.002 |
In-hospital mortality | 33 (9) | 9 (7) | 24 (10) | 0.346 |
Variable | p | OR | 95% CI |
---|---|---|---|
Male sex | 0.466 | 1.247 | 0.688–2.260 |
Age (years) | 0.049 | 1.026 | 1.000–1.052 |
Acute pathology | 0.031 | 1.941 | 1.064–3.541 |
Redo case | 0.067 | 1.724 | 0.963–3.087 |
Preoperative dialysis | 0.010 | 3.499 | 1.356–9.025 |
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Benk, J.; Berger, T.; Kondov, S.; D’Inka, M.; Bork, M.; Walter, T.; Discher, P.; Rylski, B.; Czerny, M.; Kreibich, M. Comparative Study of Male and Female Patients Undergoing Frozen Elephant Trunk Total Arch Replacement. J. Clin. Med. 2023, 12, 6327. https://doi.org/10.3390/jcm12196327
Benk J, Berger T, Kondov S, D’Inka M, Bork M, Walter T, Discher P, Rylski B, Czerny M, Kreibich M. Comparative Study of Male and Female Patients Undergoing Frozen Elephant Trunk Total Arch Replacement. Journal of Clinical Medicine. 2023; 12(19):6327. https://doi.org/10.3390/jcm12196327
Chicago/Turabian StyleBenk, Julia, Tim Berger, Stoyan Kondov, Matthias D’Inka, Magdalena Bork, Tim Walter, Philipp Discher, Bartosz Rylski, Martin Czerny, and Maximilian Kreibich. 2023. "Comparative Study of Male and Female Patients Undergoing Frozen Elephant Trunk Total Arch Replacement" Journal of Clinical Medicine 12, no. 19: 6327. https://doi.org/10.3390/jcm12196327
APA StyleBenk, J., Berger, T., Kondov, S., D’Inka, M., Bork, M., Walter, T., Discher, P., Rylski, B., Czerny, M., & Kreibich, M. (2023). Comparative Study of Male and Female Patients Undergoing Frozen Elephant Trunk Total Arch Replacement. Journal of Clinical Medicine, 12(19), 6327. https://doi.org/10.3390/jcm12196327