37
Views
0
CrossRef citations to date
0
Altmetric
Review Article

Relationship Between Preoperative Nutritional Indicators and Postoperative Complications in Patients with Oesophageal Cancer: A Meta-Analysis

, , &
Pages 563-572 | Received 23 Sep 2023, Accepted 26 Apr 2024, Published online: 19 May 2024

References

  • Sung H, Ferlay J, Siegel RL, Laversanne M, Soerjomataram I, Jemal A, Bray F. Global Cancer Statistics 2020: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA Cancer J Clin. 2021;71(3):209–49. doi:10.3322/caac.21660
  • Pu S, Chen H, Zhou C, Yu S, Liao X, Zhu L, He J, Wang B. Major postoperative complications in esophageal cancer after minimally invasive esophagectomy compared with open esophagectomy: an updated meta-analysis. J Surg Res. 2021;257:554–571. doi:10.1016/j.jss.2020.08.011
  • Baba Y, Yoshida N, Shigaki H, Iwatsuki M, Miyamoto Y, Sakamoto Y, Watanabe M, Baba H. Prognostic impact of postoperative complications in 502 patients with surgically resected esophageal squamous cell carcinoma: a retrospective single-institution study. Ann Surg. 2016;264(2):305–311. doi:10.1097/SLA.0000000000001510
  • Tong C, Liu Y, Wu J. Development and validation of a novel nomogram for postoperative pulmonary complications following minimally invasive esophageal cancer surgery. Updates Surg. 2022;74(4):1375–1382. doi:10.1007/s13304-021-01196-z
  • Salas S, Cottet V, Dossus L, Fassier P, Ginhac J, Latino-Martel P, Romieu I, Schneider S, Srour B, Touillaud M, et al. Nutritional factors during and after cancer: impacts on survival and quality of life. Nutrients. 2022;14(14):14. doi:10.3390/nu14142958
  • Jensen GL, Cederholm T, Correia MITD, Gonzalez MC, Fukushima R, Higashiguchi T, de Baptista GA, Barazzoni R, Blaauw R, Coats AJS, et al. GLIM criteria for the diagnosis of malnutrition: a consensus report from the Global Clinical Nutrition Community. J Parenter Enteral Nutr. 2019;43(1):32–40. doi:10.1002/jpen.1440
  • Boshier PR, Heneghan R, Markar SR, Baracos VE, Low DE. Assessment of body composition and sarcopenia in patients with esophageal cancer: a systematic review and meta-analysis. Dis Esophagus. 2018;31(8):1–11. doi:10.1093/dote/doy047
  • Jogiat UM, Sasewich H, Turner SR, Baracos V, Eurich DT, Filafilo H, Bédard ELR. Sarcopenia determined by skeletal muscle index predicts overall survival, disease-free survival, and postoperative complications in resectable esophageal cancer: a systematic review and meta-analysis. Ann Surg. 2022;276(5):e311–e318. doi:10.1097/SLA.0000000000005452
  • Schizas D, Frountzas M, Lidoriki I, Spartalis E, Toutouzas K, Dimitroulis D, Liakakos T, Mylonas KS. Sarcopenia does not affect postoperative complication rates in oesophageal cancer surgery: a systematic review and meta-analysis. Ann R Coll Surg Engl. 2020;102(2):120–132. doi:10.1308/rcsann.2019.0113
  • Noh JH, Na HK, Kim Y-H, Song HJ, Kim HR, Choi KD, Lee GH, Jung H-Y. Influence of preoperative nutritional status on patients who undergo upfront surgery for esophageal squamous cell carcinoma. Nutr Cancer. 2022;74(8):2910–2919. doi:10.1080/01635581.2022.2042573
  • Fan H, Ma W, Fu Y, Yi T, Tian J. Association of geriatric nutritional risk index with survival outcomes in patients with esophageal squamous cell carcinoma: a meta-analysis. Nutr Cancer. 2022;74(8):2796–2802. doi: 10.1080/01635581.2022.2028865
  • Liberati A, Altman DG, Tetzlaff J, Mulrow C, Gøtzsche PC, Ioannidis JPA, Clarke M, Devereaux PJ, Kleijnen J, Moher D. The PRISMA statement for reporting systematic reviews and meta-analyses of studies that evaluate health care interventions: explanation and elaboration. PLoS Med. 2009;6(7):e1000100. doi:10.1371/journal.pmed.1000100
  • Stang A. Critical evaluation of the Newcastle-Ottawa scale for the assessment of the quality of nonrandomized studies in meta-analyses. Eur J Epidemiol. 2010;25(9):603–605. doi:10.1007/s10654-010-9491-z
  • Dindo D, Demartines N, Clavien P-A. Classification of surgical complications: a new proposal with evaluation in a cohort of 6336 patients and results of a survey. Ann Surg. 2004;240(2):205–213. doi:10.1097/01.sla.0000133083.54934.ae
  • Cheung MWL, Vijayakumar R. A guide to conducting a meta-analysis. Neuropsychol Rev. 2016;26(2):121–128. doi:10.1007/s11065-016-9319-z
  • Higgins JPT, Thompson SG, Deeks JJ, Altman DG. Measuring inconsistency in meta-analyses. BMJ. 2003;327(7414):557–560. doi:10.1136/bmj.327.7414.557
  • Begg CB, Mazumdar M. Operating characteristics of a rank correlation test for publication bias. Biometrics. 1994;50(4):1088–1101. doi:10.2307/2533446
  • Higashizono K, Sato S, Nakatani E, Hawke P, Nagai E, Taki Y, Nishida M, Watanabe M, Oba N. Skeletal muscle loss during neoadjuvant chemotherapy predicts the incidence of postoperative infectious complications in esophageal cancer patients undergoing esophagectomy. Cancer Diagn Progn. 2023;3(1):67–74. doi:10.21873/cdp.10181
  • Yamane T, Sawayama H, Yoshida N, Morinaga T, Akiyama T, Eto K, Harada K, Ogawa K, Iwatsuki M, Iwagami S, et al. Preoperative transferrin level is a novel indicator of short- and long-term outcomes after esophageal cancer surgery. Int J Clin Oncol. 2022;27(1):131–140. doi:10.1007/s10147-021-02031-6
  • Yin L, Cheng N, Chen P, Zhang M, Li N, Lin X, He X, Wang Y, Xu H, Guo W, et al. Association of malnutrition, as defined by the PG-SGA, ESPEN 2015, and GLIM Criteria, with complications in esophageal cancer patients after esophagectomy. Front Nutr. 2021;8:632546. doi:10.3389/fnut.2021.632546
  • Qiuhao L, Minjie M, Ruijiang L, Chenhan W, Zhiwei H, Biao H. Application value of prognostic nutritional index in postoperative complications of McKeown surgery for da Vinci robotic esophageal cancer. Chin J Clin Thoracic Cardiovasc Surg. 2022;29:1–9.
  • Lili Z, Dan W, Haiyan S. Efficiency of Global Leadership Initiative on Malnutrition for nutritional assessment and prediction of postoperative complications in esophageal cancer. Electron J Metab Nutr Cancer. 2022;9:594–601.
  • Meiduan L, Juan Z, Shengsheng Y, Xueling H. Predictive value of prognostic nutritional index for postoperative complications of esophageal cancer. J Clin Pathol Res. 2018;38:1267–1273.
  • Fukushima T, Watanabe N, Okita Y, Yokota S, Matsuoka A, Kojima K, Kurita D, Ishiyama K, Oguma J, Kawai A, et al. The evaluation of the association between preoperative sarcopenia and postoperative pneumonia and factors for preoperative sarcopenia in patients undergoing thoracoscopic-laparoscopic esophagectomy for esophageal cancer. Surg Today. 2023;53(7):782–790.
  • Fang P, Yang Q, Zhou J, Yang Y, Luan S, Xiao X, Li X, Gu Y, Shang Q, Zhang H, et al. The impact of geriatric nutritional risk index on esophageal squamous cell carcinoma patients with neoadjuvant therapy followed by esophagectomy. Front Nutr. 2022;9:983038. doi:10.3389/fnut.2022.983038
  • Horinouchi T, Yoshida N, Harada K, Eto K, Sawayama H, Iwatsuki M, Iwagami S, Baba Y, Miyamoto Y, Baba H. A retrospective study of preoperative malnutrition based on the Controlling Nutritional Status score as an associated marker for short-term outcomes after open and minimally invasive esophagectomy for esophageal cancer. Langenbecks Arch Surg. 2022;407(8):3367–3375. doi:10.1007/s00423-022-02655-w
  • Maruyama S, Okamura A, Kanie Y, Sakamoto K, Fujiwara D, Kanamori J, Imamura Y, Kumagai K, Watanabe M. C-reactive protein to prealbumin ratio: a useful inflammatory and nutritional index for predicting prognosis after curative resection in esophageal squamous cell carcinoma patients. Langenbecks Arch Surg. 2022;407(5):1901–1909. doi:10.1007/s00423-022-02508-6
  • Qi Q, Song Q, Cheng Y, Wang N. Prognostic significance of preoperative prognostic nutritional index for overall survival and postoperative complications in esophageal cancer patients. Cancer Manag Res. 2021;13:8585–8597. doi:10.2147/CMAR.S333190
  • Wang P, Chen X, Liu Q, Liu X, Li Y. Good performance of the Global Leadership Initiative on Malnutrition criteria for diagnosing and classifying malnutrition in people with esophageal cancer undergoing esophagectomy. Nutrition. 2021;91–92:111420. doi:10.1016/j.nut.2021.111420
  • Wang P-Y, Chen X-K, Liu Q, Xu L, Zhang R-X, Liu X-B, Li Y. Application of four nutritional risk indexes in perioperative management for esophageal cancer patients. J Cancer Res Clin Oncol. 2021;147(10):3099–3111. doi:10.1007/s00432-021-03585-8
  • Oguma J, Ozawa S, Kazuno A, Yamamoto M, Ninomiya Y, Yatabe K. Prognostic significance of sarcopenia in patients undergoing esophagectomy for superficial esophageal squamous cell carcinoma. Dis Esophagus. 2019;32(7):doy104 doi:10.1093/dote/doy104
  • Kubo N, Sakurai K, Tamura T, Toyokawa T, Tanaka H, Muguruma K, Yashiro M, Ohira M. The impact of geriatric nutritional risk index on surgical outcomes after esophagectomy in patients with esophageal cancer. Esophagus. 2019;16(2):147–154. doi:10.1007/s10388-018-0644-6
  • Soma D, Kawamura YI, Yamashita S, Wake H, Nohara K, Yamada K, Kokudo N. Sarcopenia, the depletion of muscle mass, an independent predictor of respiratory complications after oncological esophagectomy. Dis Esophagus. 2019;32(3):doy092 doi:10.1093/dote/doy092
  • Elliott JA, Doyle SL, Murphy CF, King S, Guinan EM, Beddy P, Ravi N, Reynolds JV. Sarcopenia: prevalence, and impact on operative and oncologic outcomes in the multimodal management of locally advanced esophageal cancer. Ann Surg. 2017;266(5):822–830. doi:10.1097/SLA.0000000000002398
  • Ikeguchi M, Kouno Y, Kihara K, Suzuki K, Endo K, Nakamura S, Sawada T, Shimizu T, Matsunaga T, Fukumoto Y, et al. Evaluation of prognostic markers for patients with curatively resected thoracic esophageal squamous cell carcinomas. Mol Clin Oncol. 2016;5(6):767–772. doi:10.3892/mco.2016.1073
  • Makiura D, Ono R, Inoue J, Kashiwa M, Oshikiri T, Nakamura T, Kakeji Y, Sakai Y, Miura Y. Preoperative sarcopenia is a predictor of postoperative pulmonary complications in esophageal cancer following esophagectomy: A retrospective cohort study. J Geriatr Oncol. 2016;7(6):430–436. doi:10.1016/j.jgo.2016.07.003
  • Ida S, Watanabe M, Yoshida N, Baba Y, Umezaki N, Harada K, Karashima R, Imamura Y, Iwagami S, Baba H. Sarcopenia is a predictor of postoperative respiratory complications in patients with esophageal cancer. Ann Surg Oncol. 2015;22(13):4432–4437. doi:10.1245/s10434-015-4559-3
  • Filip B, Scarpa M, Cavallin F, Cagol M, Alfieri R, Saadeh L, Ancona E, Castoro C. Postoperative outcome after oesophagectomy for cancer: nutritional status is the missing ring in the current prognostic scores. Eur J Surg Oncol. 2015;41(6):787–794. doi:10.1016/j.ejso.2015.02.014
  • Muscaritoli M, Arends J, Bachmann P, Baracos V, Barthelemy N, Bertz H, Bozzetti F, Hütterer E, Isenring E, Kaasa S, et al. ESPEN practical guideline: clinical Nutrition in cancer. Clin Nutr. 2021;40(5):2898–2913. doi:10.1016/j.clnu.2021.02.005
  • Yan L, Nakamura T, Casadei-Gardini A, Bruixola G, Huang Y-L, Hu Z-D. Long-term and short-term prognostic value of the prognostic nutritional index in cancer: a narrative review. Ann Transl Med. 2021;9(21):1630. doi:10.21037/atm-21-4528
  • Gao X, Liu H, Zhang L, Tian H, Zhou D, Li G, Ren B, Li G, Zhao W, Yu J, et al. The application value of preoperative fat-free mass index within Global Leadership Initiative on Malnutrition-defined malnutrition criteria for postoperative outcomes in patients with esophagogastric cancer. Nutrition. 2022;102:111748. doi:10.1016/j.nut.2022.111748
  • Mengardo V, Pucetti F, Mc Cormack O, Chaudry A, Allum WH. The impact of obesity on esophagectomy: a meta-analysis. Dis Esophagus. 2018;31(6):dox149 doi:10.1093/dote/dox149
  • Fahey PP, Mallitt K-A, Astell-Burt T, Stone G, Whiteman DC. Impact of pre-diagnosis behavior on risk of death from esophageal cancer: a systematic review and meta-analysis. Cancer Causes Control. 2015;26(10):1365–1373. doi:10.1007/s10552-015-0635-z
  • Tytgat GNJ, Van Sandick JW, Lanschot J, Obertop H. Role of surveillance in intestinal metaplasia of the esophagus and gastroesophageal junction. World J Surg. 2003;27(9):1021–1025. doi:10.1007/s00268-003-7194-2
  • Renehan AG, Sperrin M. The obesity paradox and mortality after colorectal cancer: a causal conundrum. JAMA Oncol. 2016;2(9):1127–1129. doi:10.1001/jamaoncol.2016.0868
  • Dyas AR, Stuart CM, Bronsert MR, Schulick RD, McCarter MD, Meguid RA. Minimally invasive surgery is associated with decreased postoperative complications after esophagectomy. J Thorac Cardiovasc Surg. 2023;166(1):268–278. doi:10.1016/j.jtcvs.2022.11.026
  • Jin Z, Zhu K, Sun J, Zhang J, Zhang B. Minimally invasive versus open esophagectomy after neoadjuvant therapy for esophageal cancer: a meta-analysis. J Cardiothorac Surg. 2023;18(1):90. doi:10.1186/s13019-023-02180-x
  • Luo X, Xie Q, Shi Q, Miao Y, Yu Q, Yu H, Yin H, Leng X, Han Y, Zhou H. Profiling patient-reported symptom recovery from oesophagectomy for patients with oesophageal squamous cell carcinoma: a real-world longitudinal study. Support Care Cancer. 2022;30(3):2661–2670. doi:10.1007/s00520-021-06711-x

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.