Clinical Focus ›› 2024, Vol. 39 ›› Issue (1): 70-74.doi: 10.3969/j.issn.1004-583X.2024.01.013
Previous Articles Next Articles
Received:
2022-12-15
Online:
2024-01-20
Published:
2024-03-22
CLC Number:
Add to citation manager EndNote|Ris|BibTeX
URL: https://huicui.hebmu.edu.cn/EN/10.3969/j.issn.1004-583X.2024.01.013
[1] |
Singer M, Deutschman CS, Seymour CW, et al. The third international consensus definitions for sepsis and septic shock (sepsis-3)[J]. JAMA, 2016, 315(8): 801-810.
doi: 10.1001/jama.2016.0287 pmid: 26903338 |
[2] | Liu D, Huang SY, Sun JH, et al. Sepsis-induced immunosuppression: Mechanisms, diagnosis and current treatment options[J]. Mil Med Res, 2022, 9(1): 56. |
[3] |
Wang Y, Sun F, Hong G, et al. Thyroid hormone levels as a predictor marker predict the prognosis of patients with sepsis[J]. Am J Emerg Med, 2021, 45: 42-47.
doi: 10.1016/j.ajem.2021.02.014 pmid: 33652253 |
[4] |
Wasyluk W, Wasyluk M, Zwolak A. Sepsis as a pan-endocrine illness-endocrine disorders in septic patients[J]. J Clin Med, 2021, 10(10): 2075.
doi: 10.3390/jcm10102075 URL |
[5] | Luo B, Yu Z, Li Y. Thyroid hormone disorders and sepsis[J]. Biomed Mater Eng, 2017, 28(s1): S237-S241. |
[6] |
Maiden MJ, Torpy DJ. Thyroid hormones in critical illness[J]. Crit Care Clin, 2019, 35(2): 375-388.
doi: S0749-0704(18)30780-2 pmid: 30784616 |
[7] | Wenzek C, Boelen A, Westendorf AM, et al. The interplay of thyroid hormones and the immune system-where we stand and why we need to know about it[J]. Eur J Endocrinol, 2022, 186(5): R65-R77. |
[8] |
Hershman JM, Beck-Peccoz P. Discoveries around the hypothalamic-pituitary-thyroid axis[J]. Thyroid, 2023, 33(7):785-790.
doi: 10.1089/thy.2022.0258 URL |
[9] |
Fliers E, Boelen A. An update on non-thyroidal illness syndrome[J]. J Endocrinol Invest, 2021, 44(8): 1597-1607.
doi: 10.1007/s40618-020-01482-4 pmid: 33320308 |
[10] | Senese R, Cioffi F, de Lange P, et al. Thyroid: Biological actions of 'nonclassical' thyroid hormones[J]. J Endocrinol, 2014, 221(2): R1-R12. |
[11] |
Cheng SY, Leonard JL, Davis PJ. Molecular aspects of thyroid hormone actions[J]. Endocr Rev, 2010, 31(2): 139-170.
doi: 10.1210/er.2009-0007 URL |
[12] |
Langouche L, Jacobs A, Van den Berghe G. Nonthyroidal Illness syndrome across the ages[J]. J Endocr Soc, 2019, 3(12): 2313-2325.
doi: 10.1210/js.2019-00325 pmid: 31745528 |
[13] | Boltzmann M, Schmidt SB, Rollnik JD. Thyroid hormone levels help to predict outcome of critically ill patients undergoing early neurological rehabilitation[J]. Biomed Res Int, 2022, 10(2022): 8447080. |
[14] | Sciacchitano S, Capalbo C, Napoli C, et al. Nonthyroidal Illness syndrome: To treat or not to treat? have we answered the question? A review of metanalyses[J]. Front Endocrinol (Lausanne), 2022, 10(13): 850328. |
[15] | Xu MX, Liu G, Cao LJ, et al. Association of non-thyroidal illness syndrome with interleukin-6 and interleukin-10 in critically ill children with sepsis[J]. CJCP, 2020, 22(11): 1215-1220. |
[16] | Wang YF, Heng JF, Yan J, et al. Relationship between disease severity and thyroid function in Chinese patients with euthyroid sick syndrome[J]. Medicine (Baltimore), 2018, 97(31): e11756. |
[17] | 孙才智, 仲伯蒙, 沈华, 等. 血清甲状腺激素对脓毒症休克患者短期预后的预测价值[J]. 中华急诊医学杂志, 2021, 30(2): 183-188. |
[18] | Guo J, Hong Y, Wang Z, et al. Analysis of the incidence of euthyroid sick syndrome in comprehensive intensive care units and related risk factors[J]. Front Endocrinol (Lausanne), 2021, 9(12): 656641. |
[19] | 韩刚, 乔小放, 马志明. 腹腔感染合并甲状腺功能低下的诊治[J]. 中华胃肠外科杂志, 2018, 21(12): 1356-1360. |
[20] | Zhang JG, Fu SM, Liu F, et al. Correlation and prognostic assessment of low t3 syndrome and norepinephrine dosage for patients with sepsis: A retrospective single-center (cohort) study[J]. Int J Gen Med, 2022, 10(15): 4837-4847. |
[21] | Kim JG, Shin H, Kim W, et al. The value of decreased thyroid hormone for predicting mortality in adult septic patients: A systematic review and meta-analysis[J]. Sci Rep, 2018, 8(1): 14137. |
[22] |
Liu YC, Jiang TY, Chen ZS, et al. Thyroid hormone disorders: A predictor of mortality in patients with septic shock defined by sepsis-3?[J]. Intern Emerg Med, 2021, 16(4): 967-973.
doi: 10.1007/s11739-020-02546-2 |
[23] | Lado-Abeal J. Non-thyroidal illness syndrome, the hidden player in the septic shock induced myocardial contractile depression[J]. Med Hypotheses, 2020, 9(142): 109775. |
[24] |
Lisco G, De Tullio A, Iacoviello M, et al. Congestive heart failure and thyroid dysfunction: The role of the low T3 syndrome and therapeutic aspects[J]. Endocr Metab Immune Disord Drug Targets, 2020, 20(5): 646-653.
doi: 10.2174/1871530319666191119112950 pmid: 31742499 |
[25] |
Nistal-Nuno B. Euthyroid sick syndrome in paediatric and adult patients requiring extracorporeal circulatory support and the role of thyroid hormone supplementation: A review[J]. Perfusion, 2021, 36(1): 21-33.
doi: 10.1177/0267659120914136 URL |
[26] |
Yanni GN, Destariani CP, Lubis AN, et al. Thyroid hormone profile in children with sepsis: Does euthyroid sick syndrome exist?[J]. Open Access Maced J Med Sci, 2019, 7(7): 1110-1113.
doi: 10.3889/oamjms.2019.262 pmid: 31049090 |
[27] |
Song J, Cui Y, Wang C, et al. Predictive value of thyroxine for prognosis in pediatric septic shock: A prospective observational study[J]. J Pediatr Endocrinol Metab, 2020, 33(5): 653-659.
doi: 10.1515/jpem-2019-0502 pmid: 32229670 |
[28] | 王静恩, 蔡金芳, 钱铭. 脓毒症患者甲状腺激素动态变化和预后分析[J]. 中国医药指南, 2013, 11(16): 435-437. |
[29] | 周媛媛, 朱桂松, 傅元东, 等. 血清甲状腺激素水平与脓毒症严重程度及预后的相关性研究[J]. 中外医学研究, 2017, 15(22): 43-44. |
[30] |
Lee S, Farwell AP. Euthyroid sick syndrome[J]. Compr Physiol, 2016, 6(2): 1071-1080.
doi: 10.1002/cphy.c150017 pmid: 27065175 |
[31] |
Shigihara S, Shirakabe A, Kobayashi N, et al. Clinical significance of low-triiodothyronine syndrome in patients requiring non-surgical intensive care- triiodothyronine is a comprehensive prognostic marker for critical patients with cardiovascular disease[J]. Circ Rep, 2021, 3(10): 578-588.
doi: 10.1253/circrep.CR-21-0040 pmid: 34703935 |
[32] | Vidart J, Jaskulski P, Kunzler AL, et al. Non-thyroidal illness syndrome predicts outcome in adult critically ill patients: A systematic review and meta-analysis[J]. Endocrine Connections, 2022, 11(2):e210504. |
[33] | Dulchavsky SA, Bailey J. Triiodothyronine treatment maintains surfactant synthesis during sepsis[J]. Surgery, 1992, 112(2): 475-479. |
[34] |
Inan M, Koyuncu A, Aydin C, et al. Thyroid hormone supplementation in sepsis: An experimental study[J]. Surg Today, 2003, 33(1): 24-29.
pmid: 12560903 |
[35] |
Hesch RD, Hüsch M, Ködding R, et al. Treatment of dopamine-dependent shock with triiodothyronine[J]. Endocr Res Commun, 1981, 8(4): 229-237.
pmid: 7338211 |
[36] |
Foks M, Dudek A, Polok K, et al. Thyroid hormones as potential prognostic factors in sepsis[J]. Anaesthesiol Intensive Ther, 2019, 51(3): 205-209.
doi: 37306 pmid: 31418258 |
[1] | Tang Aijun, Wang Liwei. Predictive values of platelet count and coagulation index in the 28-day survival of sepsis patients [J]. Clinical Focus, 2023, 38(3): 250-254. |
[2] | Zhou Bin, Zeng Cizheng, Huang Yuge, Zhong Mianling, Wu Jiayuan. Effect of pSOFA score combined with C-reactive protein and procalcitonin in prognosis assessment of sepsis children [J]. Clinical Focus, 2022, 37(7): 616-622. |
[3] | Zhang Mengyuan, Zhu Yong. Predictive value of procalcitonin clearance and SOFA score on the prognosis of patients with severe sepsis [J]. Clinical Focus, 2022, 37(3): 225-229. |
[4] | Xiao Liuniu, Zhong Yanxia, Li Shusheng. Effect of extracorporeal hemopurification for clinical prognosis and cytokine levels of septic: A meta-analysis [J]. Clinical Focus, 2022, 37(1): 5-13. |
[5] | . [J]. Clinical Focus, 2021, 36(10): 946-950. |
[6] | Hou Wei, Zhang Lijun, Zhang Man, Wang Yakun, Jia Meixuan, Tian Liyuan. Clinical analysis in 84 children with the sepsis of non-elevated peripheral blood leukocytes [J]. Clinical Focus, 2021, 36(9): 799-802. |
[7] | Jia Yajie, Yao Ming. Effect of limited and open fluid resuscitation on respiratory mechanics and oxygen metabolism in septic shock patients [J]. Clinical Focus, 2021, 36(9): 803-806. |
[8] | Dong Hong, Zhang Huizhi,Qian Qinjuan. Change of Tregs cells percentage, interferon-γ, interleukin-4 and CD25 level in sepsis patients of intensive care unit [J]. Clinical Focus, 2016, 31(1): 63-67. |
[9] | Lu Chengxiang;Sun Dejun;Qiu Ting. Role of lactate clearance in evaluation of therapeutic efficacy and prognosis of severe sepsis and septic shock caused by infectious wounds [J]. Clinical Focus, 2015, 30(10): 1152-1155. |
[10] | . [J]. Clinical Focus, 2015, 30(4): 468-471. |
[11] | PENG Huan-qing;PENG Zhi-yun;FAN Zhi-yong;TANG Zhong-xiang;LIN Hui-wen;LI Feng-hui;WANG Ying-jing. Influence of ulinastatin on von Willebrand factor and thrombomodulin in patients with sepsis [J]. Clinical Focus, 2014, 29(9): 1012-1.0141e+007. |
[12] | WANG Xia;TONG Fei;CHEN Hui;HUO Shu-hua;LIU Fang;LIU Zhi-kuan;ZHANG Man-li;ZHAO Kun;LIU Fu-rong. Clinical effect of ω-3 polyunsaturated fatty acid on patients with abdominal sepsis [J]. Clinical Focus, 2014, 29(5): 502-504508. |
[13] | BI De-fei;ZHAO Lei;QIAN Feng-hua;QIAN Yi-ming;XI Yao. Diagnosis value of urine N-acetyl-β-D-glocosaminidase on early renal impairment in sepsis patients [J]. CLINICAL FOCUS, 2014, 29(3): 315-317. |
[14] | . [J]. CLINICAL FOCUS, 2013, 28(10): 1161-1163. |
[15] | CUI Ying;LI Yong;GUO Jin-ping;YANG Long;JIA Chun-mei;LI Chun-xue. Effect of different patterns of continuous blood purification on sepsis [J]. Clinical Focus, 2012, 27(2): 100-102105. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||