| Literature DB >> 30881117 |
Xu-Ping Gao1, Yan-Hua Liu2, Ze-Ying Liu1, Li-Jun Wang3, Chun-Xia Jing1, Sui Zhu4, Fang-Fang Zeng1.
Abstract
INTRODUCTION: In this meta-analysis, we analyzed retrospective cohort studies that assessed the prognostic potential of the pretreatment lymphocyte-to-monocyte ratio (LMR) among patients with ovarian cancer (OC).Entities:
Keywords: lymphocyte-to-monocyte ratio; meta-analysis; ovarian cancer; prognosis
Year: 2019 PMID: 30881117 PMCID: PMC6398401 DOI: 10.2147/CMAR.S184970
Source DB: PubMed Journal: Cancer Manag Res ISSN: 1179-1322 Impact factor: 3.989
Figure 1Flowchart of study selection in the current meta-analysis.
Abbreviations: CNKI, Chinese National Knowledge Infrastructure; LMR, lymphocyte-to-monocyte ratio; OC, ovarian cancer; OS, overall survival; PFS, progression-free survival.
Characteristics of studies included in the meta-analysis
| Study | Year | Country | Ethnicity | Duration of study conducted | Follow-up duration (months) | Age (years) | Pathological type | Pathological subtypes, n (%) | No. of patients | No. of stage I/II | No. of stage III/IV | Outcome | Cutoff value | Method of obtaining cutoff | NOS score |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
| |||||||||||||||
| Eo et al | 2016 | Korea | Asian | 2006.1– 2013.12 | NA | 54 (14–84) | EOC | Serous: 132 (56.4) | 234 | 97 | 137 | OS and PFS | 2.07 | ROC curve | 6 |
| Sun and Song | 2016 | China | Asian | 2006.2– 2014.4 | NA | 55 (17–84) | EOC | Serous: 103 (54.5) | 189 | 78 | 111 | OS and PFS | 1.85 | ROC curve | 6 |
| Wang et al | 2016 | China | Asian | 2000.1– 2013.12 | NA | 56.1±10.2 | OC | Serous: 214 (89.2) | 240 | 59 | 181 | OS | 3.949 | ROC curve | 6 |
| Kwon et al | 2017 | Korea | Asian | 2009.4– 2012.6 | NA | 70 (65–85) | EOC | Serous: 33 (78.6) | 42 | 0 | 42 | OS and PFS | 3.63 | ROC curve | 6 |
| Li et al | 2017 | USA | Caucasian | 2000–2010 | 49.5 (0.1–175.3) | 63 (28–93) | EOC | High-grade serous: 525 (80.3) | 654 | 121 | 533 | OS and PFS | 2.22 | ROC curve | 8 |
| Xiang et al | 2017 | China | Asian | 2011.1– 2016.3 | 23.6 (0.77–69.4) | 53.3±13.6 (20–82) | OC | Serous: 87 (65.4) | 124 | 64 | 69 | OS | 4.35 | ROC curve | 6 |
| Zhang et al | 2017 | China | Asian | 2007.1– 2015.12 | NA | 50 (24–76) | OC | Serous: 123 (51.9) | 237 | 67 | 170 | OS and PFS | 3.82 | NA | 5 |
| Zhu et al | 2017 | China | Asian | 2008.6– 2015.12 | 38 (5–103) | 55 (30–70) | EOC | Serous: 484 (72.0) | 672 | 0 | 672 | OS and PFS | 3.45 | ROC curve | 7 |
| Tang et al | 2017 | China | Asian | 2005.1– 2015.1 | 46 (2–120) | 52.2±12.0 | EOC | Serous: 146 (68.2) | 214 | 99 | 115 | OS | 3.85 | ROC curve | 7 |
| Tian | 2017 | China | Asian | 2009.1– 2011.7 | 58 (2–60) | 54 (14–76) | EOC | Serous: 166 (62.2) | 267 | 86 | 181 | OS and PFS | 3.09 (OS) 2.07 (PFS) | ROC curve | 7 |
| Yang and Lo | 2017 | China | Asian | 2005.1–2011.5 | 37 (1–112) | 54 (22–78) | EOC | Serous: 206 (56.6) | 364 | 52 | 312 | OS and PFS | 3.84 | ROC curve | 7 |
| Kwon et al | 2018 | Korea | Asian | 2005.1–2011.5 | NA | 50 (24–77) | OCCC | OCCC: 109 (100) | 109 | 64 | 45 | OS and PFS | 4.2 | ROC curve | 6 |
Notes:
Mean, median (range) of age at baseline.
Number of patients at baseline.
Abbreviations: EOC, epithelial ovarian cancer; NA, not available; NOS, Newcastle–Ottawa Scale; OC, ovarian cancer; OCCC, ovarian clear cell carcinoma; OS, overall survival; PFS, progression-free survival; ROC, receiver-operator characteristic.
Total, stratified, and sensitivity analyses of the associations between pretreatment LMR and survival among OC patients
| Groups | OS | PFS | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|
|
| ||||||||||
| No | RR (95% CIs) | No | RR (95% CIs) | |||||||
|
| ||||||||||
| 12 | 1.85 (1.50–2.28) | <0.001 | 76.5 | <0.001 | 8 | 1.70 (1.49–1.94) | <0.001 | 24.4 | 0.234 | |
| 11 | 1.97 (1.62–2.40) | <0.001 | 67.0 | 0.001 | 8 | 1.70 (1.49–1.94) | <0.001 | 24.4 | 0.234 | |
| 8 | 1.69 (1.34–2.13) | <0.001 | 79.4 | <0.001 | 6 | 1.64 (1.48–1.82) | <0.001 | 0.0 | 0.483 | |
| Age (years) | ||||||||||
| <55 | 7 | 2.28 (1.72–3.01) | <0.001 | 61.9 | 0.015 | 5 | 1.74 (1.37–2.20) | <0.001 | 54.7 | 0.065 |
| ≥55 | 5 | 1.47 (1.17–1.85) | 0.001 | 72.2 | 0.006 | 3 | 1.70 (1.50–1.94) | <0.001 | 0.0 | 0.811 |
| LMR cutoff values | ||||||||||
| ≤3.0 | 3 | 1.38 (1.06–1.80) | 0.015 | 64.0 | 0.062 | 2 | 1.81 (1.11–2.97) | 0.018 | 65.3 | 0.090 |
| >3.0 | 9 | 2.09 (1.63–2.67) | <0.001 | 70.1 | 0.001 | 6 | 1.72 (1.48–1.99) | <0.001 | 18.0 | 0.297 |
| Sample size | ||||||||||
| ≤200 | 4 | 1.59 (0.99–2.56) | 0.057 | 37.8 | 0.186 | 3 | 1.36 (0.83–2.20) | 0.219 | 0.0 | 0.970 |
| >200 | 8 | 1.94 (1.50–2.50) | <0.001 | 83.1 | <0.001 | 5 | 1.74 (1.48–2.06) | <0.001 | 52.0 | 0.080 |
| NOS score | ||||||||||
| <7 | 7 | 1.94 (1.45–2.60) | <0.001 | 57.1 | 0.030 | 5 | 2.06 (1.65–2.59) | <0.001 | 0.0 | 0.429 |
| ≥7 | 5 | 1.79 (1.31–2.46) | <0.001 | 86.7 | <0.001 | 3 | 1.63 (1.46–1.81) | <0.001 | 0.0 | 0.379 |
| Minimal | – | 1.75 (1.43–2.13) | <0.001 | 72.9 | <0.001 | – | 1.64 (1.48–1.81) | <0.001 | 0.0 | 0.560 |
| Maximal | – | 1.97 (1.62–2.40) | <0.001 | 67.0 | 0.001 | – | 1.76 (1.51–2.05) | <0.001 | 23.0 | 0.254 |
Notes:
Number of studies.
RRs and 95% CIs were pooled by using the random-effects model (the DerSimonian and Laird method).
P-value of Z-test for the significance of pooled RRs and 95% CIs.
P-value of Q-test for between-study heterogeneity test.
Influence analysis was conducted by eliminating one study at a time; for OS, the excluded study was the study by Tang et al22 for minimal pooled RRs, and Li et al10 for the maximal pooled RRs; for PFS, the excluded study was the study by Zhang et al5 for minimal pooled RRs, and Tian23 for the maximal pooled RR.
Abbreviations: EOC, epithelial ovarian cancer; LMR, lymphocyte-to-monocyte ratio; NOS, Newcastle–Ottawa Scale; OC, ovarian cancer; OS, overall survival; PFS, progression-free survival.
Figure 2Forest plots of studies evaluating HRs of high pretreatment LMR among patients with OC for (A) OS and (B) PFS. Error bars indicate 95% CI.
Abbreviations: LMR, lymphocyte-to-monocyte ratio; OC, ovarian cancer; OS, overall survival; PFS, progression-free survival.
Figure 3Funnel plots of studies evaluating HRs of high pretreatment LMR among patients with OC for (A) OS and (B) PFS.
Abbreviations: LMR, lymphocyte-to-monocyte ratio; OC, ovarian cancer; OS, overall survival; PFS, progression-free survival.
PRISMA 2009 checklist
| Section/topic | No. | Checklist item | Reported on page number |
|---|---|---|---|
| Title | 1 | Identify the report as a systematic review, meta-analysis, or both | 1 |
| Structured summary | 2 | Provide a structured summary including, as applicable: background; objectives; data sources; study eligibility criteria, participants, and interventions; study appraisal and synthesis methods; results; limitations; conclusions and implications of key findings; systematic review registration number | 3 |
| Rationale | 3 | Describe the rationale for the review in the context of what is already known | 4, 5 |
| Objectives | 4 | Provide an explicit statement of questions being addressed with reference to participants, interventions, comparisons, outcomes, and study design (PICOS) | 5 |
| Protocol and registration | 5 | Indicate if a review protocol exists, if and where it can be accessed (eg, Web address), and, if available, provide registration information including registration number | NA |
| Eligibility criteria | 6 | Specify study characteristics (eg, PICOS and length of follow-up) and report characteristics (eg, years considered, language, and publication status) used as criteria for eligibility, giving rationale | 6 |
| Information sources | 7 | Describe all information sources (eg, databases with dates of coverage, contact with study authors to identify additional studies) in the search and date last searched | 5 |
| Search | 8 | Present full electronic search strategy for at least one database, including any limits used, such that it could be repeated | 5, Supplementary materials, pages 1–2 |
| Study selection | 9 | State the process for selecting studies (ie, screening, eligibility, included in systematic review, and, if applicable, included in the meta-analysis) | 6 |
| Data collection process | 10 | Describe method of data extraction from reports (eg, piloted forms, independently, and in duplicate) and any processes for obtaining and confirming data from investigators | 6 |
| Data items | 11 | List and define all variables for which data were sought (eg, PICOS and funding sources) and any assumptions and simplifications made | 6 |
| Risk of bias in individual studies | 12 | Describe methods used for assessing risk of bias of individual studies (including specification of whether this was done at the study or outcome level), and how this information is to be used in any data synthesis | 7, |
| Summary measures | 13 | State the principal summary measures (eg, risk ratio and difference in means) | 7 |
| Synthesis of results | 14 | Describe the methods of handling data and combining results of studies, if done, including measures of consistency (eg, | 7 |
| Risk of bias across studies | 15 | Specify any assessment of risk of bias that may affect the cumulative evidence (eg, publication bias and selective reporting within studies) | 7, 8 |
| Additional analyses | 16 | Describe methods of additional analyses (eg, sensitivity or subgroup analyses, meta- regression), if done, indicating which were prespecified | 7 |
| Study selection | 17 | Give numbers of studies screened, assessed for eligibility, and included in the review, with reasons for exclusions at each stage, ideally with a flow diagram | 8, |
| Study characteristics | 18 | For each study, present characteristics for which data were extracted (eg, study size, PICOS, and follow-up period) and provide the citations | 8, |
| Risk of bias within studies | 19 | Present data on risk of bias of each study and, if available, any outcome level assessment (see item 12) | 10, |
| Results of individual studies | 20 | For all outcomes considered (benefits or harms), present, for each study: (a) simple summary data for each intervention group (b) effect estimates and CIs, ideally with a forest plot | |
| Synthesis of results | 21 | Present results of each meta-analysis done, including CIs and measures of consistency | 9, 10, |
| Risk of bias across studies | 22 | Present results of any assessment of risk of bias across studies (see item 15) | 10, |
| Additional analysis | 23 | Give results of additional analyses, if done (eg, sensitivity or subgroup analyses, meta- regression [see item 16]) | 9, 10 |
| Summary of evidence | 24 | Summarize the main findings including the strength of evidence for each main outcome; consider their relevance to key groups (eg, health care providers, users, and policy makers) | 10 |
| Limitations | 25 | Discuss limitations at study and outcome level (eg, risk of bias), and at review level (eg, incomplete retrieval of identified research and reporting bias) | 12, 13 |
| Conclusions | 26 | Provide a general interpretation of the results in the context of other evidence and implications for future research | 13 |
| Funding | 27 | Describe sources of funding for the systematic review and other support (eg, supply of data); role of funders for the systematic review | 13 |
Note: Liberati A, Altman DG, Tetzlaff J, Mulrow C, Gøtzsche PC, Ioannidis JPA, et al. 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. https://doi.org/10.1371/journal.pmed.1000100. For more information, visit: www.prisma-statement.org.
Abbreviation: NA, not available.
Methodological quality of all studies based on NOS for assessing the quality of each included study
| Study | Representa- tiveness of exposed cohort | Selection of non- exposed cohort | Assessment of exposure | Outcome not present at the start of the study | Compara- bility based on the design or analysis | Assessment of outcome | Follow- up long enough for outcomes | Adequacy of follow-up | Total score |
|---|---|---|---|---|---|---|---|---|---|
| Eo et al | 1 | 1 | 1 | 1 | 2 | 0 | 0 | 0 | 6 |
| Sun and Song | 1 | 1 | 1 | 1 | 2 | 0 | 0 | 0 | 6 |
| Wang et al | 1 | 1 | 1 | 1 | 2 | 0 | 0 | 0 | 6 |
| Kwon et al | 1 | 1 | 1 | 1 | 2 | 0 | 0 | 0 | 6 |
| Li et al | 1 | 1 | 1 | 1 | 2 | 0 | 1 | 1 | 8 |
| Xiang et al | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | 6 |
| Zhang et al | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 0 | 5 |
| Zhu et al | 1 | 1 | 1 | 1 | 2 | 0 | 1 | 0 | 7 |
| Tang et al | 1 | 1 | 1 | 1 | 2 | 0 | 1 | 0 | 7 |
| Tian | 1 | 1 | 1 | 1 | 1 | 0 | 1 | 1 | 7 |
| Yang and Lo | 1 | 1 | 1 | 1 | 2 | 0 | 1 | 0 | 7 |
| Kwon et al | 1 | 1 | 1 | 1 | 2 | 0 | 0 | 0 | 6 |
Abbreviation: NOS, Newcastle–Ottawa Scale.
Meta-regression analyses of the associations between pretreatment LMR and survival among OC patients
| Coefficient | Standard error | 95% CI of intercept | |||
|---|---|---|---|---|---|
|
| |||||
| Year of publication | 0.0820097 | 0.2491714 | 0.33 | 0.749 | (–0.4731787, 0.6371981) |
| Age | −0.0738882 | 0.0200856 | −3.68 | 0.004 | (−0.1186417, −0.0291346) |
| Sample size | −0.0008594 | 0.0005413 | −1.59 | 0.143 | (−0.0020655, 0.0003466) |
| LMR cutoff value | 0.2008357 | 0.129754 | 1.55 | 0.153 | (−0.0882742, 0.4899455) |
| NOS score | −0.1728062 | 0.1330581 | −1.30 | 0.223 | (−0.4692782, 0.1236658) |
| Year of publication | −0.1952826 | 0.2098772 | −0.93 | 0.388 | (−0.7088336, 0.3182684) |
| Age | −0.0333006 | 0.0275148 | −1.21 | 0.272 | (−0.1006267, 0.0340256) |
| Sample size | −0.0000113 | 0.0004759 | −0.02 | 0.982 | (−0.0011757, 0.0011531) |
| LMR cutoff value | 0.0189409 | 0.1054612 | 0.18 | 0.863 | (−0.2391134, 0.2769952) |
| NOS score | −0.1618594 | 0.0787455 | −2.06 | 0.086 | (−0.3545426, 0.0308238) |
Abbreviations: LMR, lymphocyte-to-monocyte ratio; NOS, Newcastle–Ottawa Scale; OC, ovarian cancer; OS, overall survival; PFS, progression-free survival.