硬膜外分娩镇痛相关产时发热的研究进展
Research Progress of Intrapartum Fever Re-lated to Epidural Labor Analgesia
DOI: 10.12677/ACM.2022.125634, PDF,   
作者: 闫茹冰:青岛大学附属医院麻醉科,山东 青岛;韩 帅, 关 森, 修方腾, 梁永新*:青岛大学附属妇女儿童医院麻醉科,山东 青岛
关键词: 硬膜外镇痛产时发热分娩镇痛机制Epidural Analgesia Intrapartum Fever Labor Analgesia Mechanism
摘要: 随着无痛分娩观念的普及和产妇对减轻产痛需求的增加,越来越多的医疗机构响应政策开展无痛分娩工作。硬膜外分娩镇痛是目前临床上使用最有效且最广泛的分娩镇痛方法,但大量研究表明,分娩镇痛与产时发热相关。引起产时发热的机制尚未阐明,可能与炎症反应、麻醉药物的作用、体温调节失衡、硬膜外穿刺创伤、产妇自身特点及分娩过程等有关。产时发热对产妇和新生儿均可造成不良影响,可能增加对产程的干预、引起剖宫产率升高、且易被误诊为感染从而过度医疗,也会影响新生儿神经系统发育,增加新生儿抗生素暴露等。因此,更全面地了解硬膜外分娩镇痛相关产时发热的机制与危害,对提高分娩镇痛效果和改善母婴临床结局具有重大现实意义。
Abstract: With the popularity of the notion of painless delivery and the increase in maternal demand to less-en labor pain, an increasing number of medical facilities are implementing painless delivery poli-cies. Epidural labor analgesia is currently the most effective and widely used method of labor anal-gesia in clinical practice, but numerous studies have shown that labor analgesia is associated with intrapartum fever. The mechanism of intrapartum fever has not been elucidated and may be relat-ed to inflammatory response, the role of anesthetic drugs, thermoregulatory imbalance, epidural puncture trauma, maternal characteristics, and delivery process. Intrapartum fever can cause ad-verse effects on both parturients and newborns, which may increase the intervention of labor, cause an increased rate of cesarean section, and be easily misdiagnosed as infection, resulting in unnec-essary medical treatment, but also affect neonatal neurological development and increase antibiotic exposure. Therefore, a more comprehensive understanding of the mechanism and harm of intra-partum fever caused by epidural labor analgesia is of great practical significance to improve labor analgesia and improve maternal and fetal clinical outcomes.
文章引用:闫茹冰, 韩帅, 关森, 修方腾, 梁永新. 硬膜外分娩镇痛相关产时发热的研究进展[J]. 临床医学进展, 2022, 12(5): 4371-4380. https://doi.org/10.12677/ACM.2022.125634

参考文献

[1] Wilson, S.H., Elliott, M.P., Wolf, B.J. and Hebbar, L. (2014) A Prospective Observational Study of Ethnic and Racial Differences in Neuraxial Labor Analgesia Request and Pain Relief. Anesthesia, 119, 105-109. [Google Scholar] [CrossRef
[2] 徐铭军, 姚尚龙. 中国分娩镇痛现状与对策[J]. 国际麻醉学与复苏杂志, 2018, 39(4): 289-293+337.
[3] 汪琳, 王欣, 范裕如, 邢媛. 硬膜外分娩镇痛期间产间发热的影响因素分析[J]. 中国现代医学杂志, 2020, 30(13): 75-79.
[4] Gleeson, N.C., Nolan, K.M. and Ford, M.R.W. (1989) Temperature, Labour, and Epidural Analgesia. Lancet, 334, 861-862. [Google Scholar] [CrossRef
[5] Segal, S. (2010) Labor Epidural Analgesia and Maternal Fe-ver. Anesthesia & Analgesia, 111, 1467-1475. [Google Scholar] [CrossRef
[6] 高夏, 苏晶晶, 李韵, 陶瑞雪, 张东升, 尹宗智. 椎管内分娩镇痛后发热患者的妊娠结局研究[J]. 实用妇产科杂志, 2020, 36(5): 385-389.
[7] 李霞, 田黎丽, 魏新川. 硬膜外相关产时发热的机制研究进展[J]. 实用医院临床杂志, 2021, 18(6): 223-225.
[8] Riley, L.E., Celi, A.C., Onderdonk, A.B., Roberts, D.J., Johnson, L.C., Tsen, L.C., Leffert, L., Pian-Smith, M.C.M., Heffner, L.J. and Haas, S.T. (2011) Association of Epidural-Related Fever and Noninfectious Inflammation in Term Labor. Obstetrics & Gyne-cology, 117, 588-595. [Google Scholar] [CrossRef
[9] Sharma, S.K., Rogers, B.B., Alex-ander, J.M., Mcintire, D.D. and Leveno, K.J. (2014) A Randomized Trial of the Effects of Antibiotic Prophylaxis on Epidural-Related Fever in Labor. Anesthesia & Analgesia, 118, 604-610. [Google Scholar] [CrossRef
[10] Curtin, W.M., Katzman, P.J., Florescue, H., Metlay, L.A. and Ural, S.H. (2015) Intrapartum Fever, Epidural Analgesia and Histologic Chorioamnionitis. Journal of Perinatology, 35, 396-400. [Google Scholar] [CrossRef] [PubMed]
[11] Li, C.J., Xia, F., Xu, S.Q. and Shen, X.F. (2020) Concerned Topics of Epidural Labor Analgesia: Labor Elongation and Maternal Pyrexia: A Systematic Review. Chinese Medical Journal, 133, 597-605. [Google Scholar] [CrossRef
[12] Sultan, P., David, A.L., Fernando, R. and Ackland, G.L. (2016) Inflammation and Epidural-Related Maternal Fever: Proposed Mechanisms. Anesthesia and Analgesia, 122, 1546-1553. [Google Scholar] [CrossRef
[13] 何虹, 章莉, 龚波, 曹爽, 孙静璐, 沈丽敏, 王红, 熊源长. 观察硬脊膜外腔阻滞分娩镇痛产妇体温和炎性细胞因子的变化[J]. 上海医学, 2018, 41(8): 472-476.
[14] Christiaens, I., Zaragoza, D.B., Guilbert, L., Robertson, S.A., Mitchell, B.F. and Olson, D.M. (2008) In-flammatory Processes in Preterm and Term Parturition. Journal of Reproductive Immunology, 79, 50-57. [Google Scholar] [CrossRef] [PubMed]
[15] Neal, J.L., Lamp, J.M., Lowe, N.K., Gillespie, S.L., Sinnott, L.T. and Mccarthy, D.O. (2015) Differences in Inflammatory Markers between Nulliparous Women Admitted to Hospitals in Preactive vs Active Labor. American Journal of Obstetrics & Gynecology, 212, 68.e1-68.e8. [Google Scholar] [CrossRef] [PubMed]
[16] Schminkey, D.L. and Groer, M. (2014) Imitating a Stress Response: A New Hypothesis about the Innate Immune System’s Role in Pregnancy. Medical Hypotheses, 82, 721-729. [Google Scholar] [CrossRef] [PubMed]
[17] 王宇, 闫玉荣. 硬膜外分娩镇痛所致产时发热的研究进展[J]. 中国当代医药, 2021, 28(9): 39-42.
[18] Goetzl, L., Evans, T., Rivers, J., Suresh, M.S. and Lieberman, E. (2002) Ele-vated Maternal and Fetal Serum Interleukin-6 Levels Are Associated with Epidural Fever. American Journal of Obstet-rics & Gynecology, 187, 834-838. [Google Scholar] [CrossRef] [PubMed]
[19] Sharpe, E.E. and Arendt, K.W. (2017) Epidural Labor Analgesia and Maternal Fever. Clinical Obstetrics and Gynecology, 60, 365-374. [Google Scholar] [CrossRef
[20] Cela, O., Piccoli, C., Scrima, R., Quarato, G. and Capitanio, N. (2010) Bupivacaine Uncouples the Mitochondrial Oxidative Phosphorylation, Inhibits Respiratory Chain Complexes I and Iii and Enhances Ros Production: Results of a Study on Cell Cultures. Mitochondrion, 10, 487-496. [Google Scholar] [CrossRef] [PubMed]
[21] 张玥琪, 徐振东, 刘志强. 硬膜外镇痛相关母体发热的炎症机制研究进展[J]. 国际麻醉学与复苏杂志, 2020, 41(1): 76-78.
[22] 储国海, 谭永星. 硬膜外分娩镇痛产时发热的研究现状[J]. 世界最新医学信息文摘(连续型电子期刊), 2020, 20(83): 30-31+53.
[23] 徐静, 武振芳. 硬膜外分娩镇痛相关产时发热的研究进展[J]. 中华围产医学杂志, 2019, 22(11): 829-832.
[24] Block, L., Jörneberg, P., Björ-klund, U., Westerlund, A., Biber, B. and Hansson, E. (2013) Ultralow Concentrations of Bupivacaine Exert An-ti-Inflammatory Effects on Inflammation-Reactive Astrocytes. European Journal of Neuroscience, 38, 3669-3678. [Google Scholar] [CrossRef] [PubMed]
[25] Wohlrab, P., Boehme, S., Kaun, C., Wojta, J. and Tretter, V. (2020) Ropi-vacaine Activates Multiple Proapoptotic and Inflammatory Signaling Pathways That Might Subsume to Trigger Epidur-al-Related Maternal Fever. Obstetric Anesthesia Digest, 40, 158-159. [Google Scholar] [CrossRef
[26] 卢园园, 毛卫亮, 夏瑞强, 张冰, 胡明品, 李军. 不同浓度罗哌卡因复合舒芬太尼硬膜外分娩镇痛对发热的影响[J]. 中华麻醉学杂志, 2018, 38(9): 1042-1044.
[27] 曹家刚, 李胜华, 冯迪, 陈原丽, 吕欣. 不同浓度罗哌卡因复合舒芬太尼分娩镇痛对产妇产间发热的影响[J]. 临床麻醉学杂志, 2019, 35(4): 327-330.
[28] Zhou, X., Li, J., Deng, S., Xu, Z. and Liu, Z. (2019) Ropivacaine at Differ-ent Concentrations on Intrapartum Fever, Il-6 and Tnf-Alpha in Parturient with Epidural Labor Analgesia. Experimental and Therapeutic Medicine, 17, 1631-1636. [Google Scholar] [CrossRef] [PubMed]
[29] 芮海涛, 胡喜红, 王辉, 梁根强. 不同浓度罗哌卡因连续硬膜外给药镇痛分娩对产妇体温的影响[J]. 吉林医学, 2019, 40(1): 115-117.
[30] 涂兵权. 阴式子宫切除术中应用右旋美托咪啶联合低浓度罗哌卡因腹横肌膜神经阻滞的有效性及安全性[J]. 中国计划生育学杂志, 2017, 25(3): 181-183.
[31] Mantha, V.R., Vallejo, M.C., Vimala, R., Jones, B.L. and Sivam, R. (2012) Maternal and Cord Serum Cytokine Changes with Continuous and Intermittent Labor Epidural Analgesia: A Randomized Study. The Scientific World Journal, 2012, Article ID: 607938. [Google Scholar] [CrossRef] [PubMed]
[32] 刘芳园, 崔睿. 椎管内阻滞分娩镇痛后产时发热的影响因素[J]. 麻醉安全与质控, 2021, 5(2): 119-123.
[33] Fan, Y., Hou, W., Feng, S., Mao, P., Wang, X., Jiang, J., et al. (2019) Programmed Intermittent Epidural Bolus Decreases the Incidence of Intra-Partum Fever for Labor Analgesia in Primiparous Women: A Randomized Controlled Study. Archives of Gynecology and Ob-stetrics, 300, 1551-1557. [Google Scholar] [CrossRef] [PubMed]
[34] Wong, C.A., Ratliff, J.T., Sullivan, J.T., Scavone, B.M., Toledo, P. and Mccarthy, R.J. (2006) A Randomized Comparison of Programmed Intermittent Epidural Bolus with Continuous Epidural Infusion for Labor Analgesia. Anesthesia & Analgesia, 102, 904-909. [Google Scholar] [CrossRef] [PubMed]
[35] Kumari, I., Sharma, K., Bedi, V., Mohan, M. and Modi, M. (2018) Comparison of Ropivacaine (0.2%) with or without Clonidine 1 Μg/Kg for Epidural Labor Analgesia: A Randomized Controlled Study. Journal of Anaesthesiology Clinical Pharmacology, 34, 18-22. [Google Scholar] [CrossRef
[36] 徐淑兰, 尹军, 于永生, 孔慧娟. 腰硬联合阻滞分娩镇痛中规律间断注射舒芬太尼联合罗哌卡因对分娩结局,产间发热及镇痛效果的影响[J]. 广西医学, 2020, 42(9): 1096-1099.
[37] 张永刚, 梁浩, 李红霞, 杨亚莉. 舒芬太尼联合罗哌卡因在分娩镇痛中对产间发热的影响[J]. 中国实验诊断学, 2017, 21(12): 2068-2071.
[38] Lin, R., Tao, Y., Yu, Y., Xu, Z., Su, J. and Liu, Z. (2014) Intravenous Remifentanil versus Epidural Ropivacaine with Sufentanil for Labour Analgesia: A Retrospective Study. PLoS ONE, 9, Article ID: e112283. [Google Scholar] [CrossRef] [PubMed]
[39] 江松妙, 石碧明. 硬膜外分娩镇痛相关产时发热的研究进展[J]. 浙江医学, 2020, 42(21): 124-129.
[40] Fraga, D., Machado, R.R., Fernandes, L.C., Souza, G.E. and Zampronio, A.R. (2008) Endogenous Opioids: Role in Prostaglandin-Dependent and -Independent Fever. American Journal of Physiology—Regulatory, Integrative and Comparative Physiology, 294, R411-R420. [Google Scholar] [CrossRef] [PubMed]
[41] Negishi, C., Lenhardt, R., Ozaki, M., Ettinger, K., Bastanmehr, H., Bjorksten, A.R. and Sessler, D.I. (2001) Opioids Inhibit Febrile Responses in Humans, Whereas Epidural Analgesia Does Not. Anesthesiology, 94, 218-222. [Google Scholar] [CrossRef] [PubMed]
[42] Fubo, T., Kai, W., Jianying, H., Yi, X., Shen, S., Zui, Z. and Shaoqiang, H. (2013) Continuous Spinal Anesthesia with Sufentanil in Labor Analgesia Can Induce Maternal Febrile Responses in Puerperas. International Journal of Clinical and Experimental Medicine, 6, 334-341.
[43] Goodlin, R.C., Chapin, J.W. (1982) Determinants of Matermal Temperature during Labor. American Journal of Obstetrics & Gynecolo-gy, 143, 97-103. [Google Scholar] [CrossRef] [PubMed]
[44] Glosten, B., Savage, M., Rooke, G.A. and Brengelmann, G.L. (1998) Epidural Anesthesia and the Thermoregulatory Responses to Hyperthermia—Preliminary Observations in Volunteer Subjects. Acta Anaesthesiologica Scandinavica, 42, 442-446. [Google Scholar] [CrossRef] [PubMed]
[45] Zhou, S.Q., Wang, J., Du, W.J., Song, Y.J., Xu, Z.D. and Liu, Z.Q. (2020) Optimum Interval Time of Programmed Intermittent Epidural Bolus of Ropivacaine 0.08% with Sufentanyl 0.3 μg/mL for Labor Analgesia: A Biased-Coin up-and-Down Sequential Allocation Trial. Chinese Medical Journal, 133, 517-522. [Google Scholar] [CrossRef
[46] Irestedt, L. (2003) The Rise in Maternal Temperature Asso-ciated with Regional Analgesia in Labour Is Harmful and Should Be Treated. International Journal of Obstetric Anesthe-sia, 12, 284-286. [Google Scholar] [CrossRef
[47] Kodali, B.S., Choi, L., Chau, A., Harvey, B.C. and Pal-anisamy, A. (2019) Use of a Novel Non-Invasive Respiratory Monitor to Study Changes in Pulmonary Ventilation Dur-ing Labor Epidural Analgesia. Journal of Clinical Monitoring and Computing, 34, 567-574. [Google Scholar] [CrossRef] [PubMed]
[48] Kozlov, I. (2012) Why Labor Epidural Causes Fever and Why Lidocaine Burns on Injection? Role of Trpv 1 Receptor in Hyperthermia: Possible Explanation of Mechanism of Hyper-thermia during Labor Epidural and Burning Sensation on Injection of Local Anesthetics. Open Journal of Anesthesiology, 2, 134-137. [Google Scholar] [CrossRef
[49] Igarashi, T., Hirabayashi, Y., Shimizu, R., Saitoh, K., Fukuda, H. and Suzuki, H. (2000) The Fiberscopic Findings of the Epidural Space in Pregnant Women. Anesthesiology, 92, 1631-1636. [Google Scholar] [CrossRef] [PubMed]
[50] Haddad, R., Tromp, G., Kuivaniemi, H., Chaiworapongsa, T., Kim, Y.M. and Romero, R. (2004) Spontaneous Labor at Term Is Characterized by a Genomic Signature of Acute Inflammation in the Chorioamniotic Membranes but Not in the Systemic Circulation. American Jour-nal of Obstetrics & Gynecology, 191, S138. [Google Scholar] [CrossRef
[51] Arroyo, A., Sanchez, J., Patel, S., Phillips, S., Reyes, A., Cubillos, C., Fernando, R., David, A.L., Sultan, P. and Ackland, G.L. (2019) Role of Leucocyte Caspase-1 Activity in Epidur-al-Related Maternal Fever: A Single-Centre, Observational, Mechanistic Cohort Study. British Journal of Anaesthesia, 122, 92-102. [Google Scholar] [CrossRef] [PubMed]
[52] Burgess, A., Katz, J.E., Moretti, M. and Lakhi, N. (2017) Risk Fac-tors for Intrapartum Fever in Term Gestations and Associated Maternal and Neonatal Sequelae. Gynecologic & Obstetric Investigation, 82, 508-516. [Google Scholar] [CrossRef] [PubMed]
[53] Fuchs, A.R., Graddy, L.G., Kowalski, A.A. and Fields, M.J. (2002) Oxy-tocin Induces Pge2 Release from Bovine Cervical Mucosa in Vivo. Prostaglandins & Other Lipid Mediators, 70, 119-129. [Google Scholar] [CrossRef
[54] 刘叶, 李红, 刘枝, 毛慧敏, 张瑾, 高义, 李腾. 硬膜外分娩镇痛期间产时发热的相关因素[J]. 临床麻醉学杂志, 2022, 38(1): 57-60.
[55] 宋佳, 王冬雪, 王冰冰, 申健. 不同时机实施分娩镇痛对初产妇产程和分娩方式及新生儿结局的影响[J]. 中华妇产科杂志, 2020, 55(7): 476-479.
[56] 段宝敏, 洪凡真, 徐永萍, 辛刚, 孙文娟, 陈丽宇, 肖娟. 实施硬膜外分娩镇痛时机对初产妇妊娠结局的影响[J]. 现代妇产科进展, 2021, 30(7): 528-531.
[57] Sng, B.L., Leong, W.L., Zeng, Y., Siddiqui, F.J., As-sam, P.N., Lim, Y., Chan, E.S. and Sia, A.T. (2014) Early versus Late Initiation of Epidural Analgesia for Labour. Cochrane Database of Systematic Reviews, No. 10, Article No. CD007238. [Google Scholar] [CrossRef] [PubMed]
[58] 刘婧岩, 樊雪梅, 李六兰, 栾婷, 范裕如, 周春秀. 产时发热的相关因素分析[J]. 护理实践与研究, 2018, 15(4): 1-4.
[59] 梅洪梁, 谢菡, 张海霞, 葛卫红, 戴毅敏. 硬膜外分娩镇痛相关产时发热影响因素分析[J]. 现代妇产科进展 2022, 31(2): 81-85.
[60] 陈伟业, 李宗存, 席四平, 张立贤. 硫酸镁对子痫前期产妇硬膜外分娩镇痛产时发热的影响[J]. 临床麻醉学杂志, 2021, 37(1): 27-30.
[61] Segal, S., Pancaro, C., Bonney, I. and Marchand, J.E. (2017) Noninfectious Fever in the near-Term Preg-nant Rat Induces Fetal Brain Inflammation: A Model for the Consequences of Epidural-Associated Maternal Fever. An-esthesia & Analgesia, 125, 2134-2140. [Google Scholar] [CrossRef
[62] Wang, L.-Z., Hu, X.-X., Liu, X., Qian, P., Ge, J.-M. and Tang, B.-L. (2011) Influence of Epidural Dexamethasone on Maternal Tempera-ture and Serum Cytokine Concentration after Labor Epidural Analgesia. International Journal of Gynecology & Obstet-rics, 113, 40-43. [Google Scholar] [CrossRef] [PubMed]
[63] 符白玲, 李煜, 胡顺平, 刘惠英, 毕佳. 增加静脉输液预防椎管内阻滞分娩镇痛产时发热的效果观察[J]. 医学研究杂志, 2014, 43(8): 133-136.
[64] 刘波, 左云霞. 椎管内阻滞分娩镇痛相关产时发热的研究进展[J]. 临床麻醉学杂志, 2021, 37(12): 1314-1316.
[65] 张瑾, 陈亮, 姚淑萍, 高金贵. 《中国产科麻醉专家共识(2017)》解读[J]. 河北医科大学学报, 2019, 40(2): 128-132.
[66] Goetzl, L., Cohen, A., Frigoletto, F., Lang, J.M. and Lieberman, E. (2003) Maternal Epidural Analgesia and Rates of Maternal Antibiotic Treatment in a Low-Risk Nulliparous Population. Journal of Perinatology, 23, 457-461. [Google Scholar] [CrossRef] [PubMed]
[67] Jansen, S., Lopriore, E., Naaktgeboren, C., Sueters, M. and Bekker, V. (2020) Epidural-Related Fever and Maternal and Neonatal Morbidity: A Systematic Review and Meta-Analysis. Neona-tology, 117, 259-270. [Google Scholar] [CrossRef] [PubMed]
[68] Lavesson, T., Källén, K. and Olofsson, P. (2018) Fetal and Maternal Tem-peratures during Labor and Delivery: A Prospective Descriptive Study. The Journal of Maternal-Fetal & Neonatal Medi-cine, 21, 1533-1541. [Google Scholar] [CrossRef] [PubMed]
[69] Lieberman, Ellice, Lang, Janet, Richardson, Douglas, K., Frigoletto, Fredric, Obstetrical, D.J. and Survey, G. (2000) Intrapartum Maternal Fever and Neonatal Outcome. Obstet-rical & Gynecological Survey, 55, 421-422. [Google Scholar] [CrossRef
[70] Greenwell, E.A., Wyshak, G., Ringer, S.A., Johnson, L.C., Rivkin, M.J. and Lieberman, E. (2012) Intrapartum Temperature Elevation, Epidural Use, and Adverse Outcome in Term Infants. Pediatrics, 129, e447-e454.
[71] Lim, G., Facco, F.L., Nathan, N., Waters, J.H. and Eltzschig, H.K. (2019) A Review of the Impact of Obstetric Anesthesia on Maternal and Neonatal Outcomes. Obstetric Anesthesia Digest, 39, 65. [Google Scholar] [CrossRef
[72] Dior, U.P., Kogan, L., Eventov-Friedman, S., Gil, M., Bahar, R., Ergaz, Z., Porat, S. and Calderon-Margalit, R. (2016) Very High Intrapartum Fever in Term Pregnancies and Adverse Obstetric and Neonatal Outcomes. Neonatology, 109, 62-68. [Google Scholar] [CrossRef] [PubMed]
[73] Pancaro, C., Boulanger-Bertolus, J., Segal, S., Watson, C.J. and Marchand, J.E. (2019) Maternal Noninfectious Fever Enhances Cell Proliferation and Microglial Activation in the Neonatal Rat Dentate Gyrus. Anesthesia & Analgesia, 128, 1190-1198. [Google Scholar] [CrossRef
[74] Salameh, K.M., Paraparambil, V.A., Sarfrazul, A., Hussain, H.L. and Mahmoud, A.S. (2020) Effects of Labor Epidural Analgesia on Short Term Neonatal Morbidity. International Journal of Women’s Health, 12, 59-70. [Google Scholar] [CrossRef