BackgroundPrognosis after a diagnosis of invasive epithelial ovarian cancer is poor. Some studies have suggested modifiable behaviors, like diet, are associated with survival but the evidence is inconsistent.ObjectivesThis study aims to poo…
Supplementary Figure 1 shows a flowchart of exclusions to obtain the study population, with the number of cases and controls eligible for the analysis.
Supplementary Figure 2 shows two forest plots depicting the association between (A) dietary folate intake and (B) supplemental folate intake and ovarian cancer for women with endometriosis, stratified by potential effect modifiers
Supplementary Figure 3 shows scatter plots with the genetic association with folate on the x-axis and the genetic association with ovarian cancer on the y-axis, for (A) women with and (B) without endometriosis. The regression line for the i…
Supplementary Table 1 shows the range of folate intake included in each tertile, by OCAC study site.
Supplementary Table 2 shows the single nucleotide polymorphisms (SNPs) used as instruments for folate level in the Mendelian randomization analysis.
Supplementary Table 3 shows the associations between folate intake (dietary, supplemental, total) and ovarian cancer by endometriosis status, and by histological subtype (endometrioid/clear cell cancers and high grade serous cancers).
Supplementary Table 4 shows the association between glycemic index, glycemic load, grain intake and risk of ovarian cancer for women with and without endometriosis.
Supplementary Table 5 shows the results from the different Mendelian randomization methods investigating the association between genetically predicted folate and risk of ovarian cancer, by endometriosis status
AbstractBackground While folate intake has not been associated with an increased risk of ovarian cancer overall, studies of other cancer types have suggested that high folate intake may promote carcinogenesis in pre-cancerous lesions. Women…
Limited estimates exist on risk factors for epithelial ovarian cancer (EOC) in Asian, Hispanic, and Native Hawaiian/Pacific Islander women. Participants in this study included 1734 Asian (n = 785 case and 949 control participants), 266 Nati…
Supplementary Figure 1 shows a flowchart of exclusions to obtain the study population, with the number of cases and controls eligible for the analysis.
Supplementary Figure 1 shows a flowchart of exclusions to obtain the study population, with the number of cases and controls eligible for the analysis.
Supplementary Figure 2 shows two forest plots depicting the association between (A) dietary folate intake and (B) supplemental folate intake and ovarian cancer for women with endometriosis, stratified by potential effect modifiers
Supplementary Figure 2 shows two forest plots depicting the association between (A) dietary folate intake and (B) supplemental folate intake and ovarian cancer for women with endometriosis, stratified by potential effect modifiers
Supplementary Figure 3 shows scatter plots with the genetic association with folate on the x-axis and the genetic association with ovarian cancer on the y-axis, for (A) women with and (B) without endometriosis. The regression line for the i…
Supplementary Figure 3 shows scatter plots with the genetic association with folate on the x-axis and the genetic association with ovarian cancer on the y-axis, for (A) women with and (B) without endometriosis. The regression line for the i…
Supplementary Table 1 shows the range of folate intake included in each tertile, by OCAC study site.
Supplementary Table 1 shows the range of folate intake included in each tertile, by OCAC study site.
Supplementary Table 2 shows the single nucleotide polymorphisms (SNPs) used as instruments for folate level in the Mendelian randomization analysis.
Supplementary Table 2 shows the single nucleotide polymorphisms (SNPs) used as instruments for folate level in the Mendelian randomization analysis.
Supplementary Table 3 shows the associations between folate intake (dietary, supplemental, total) and ovarian cancer by endometriosis status, and by histological subtype (endometrioid/clear cell cancers and high grade serous cancers).
Supplementary Table 3 shows the associations between folate intake (dietary, supplemental, total) and ovarian cancer by endometriosis status, and by histological subtype (endometrioid/clear cell cancers and high grade serous cancers).
Supplementary Table 4 shows the association between glycemic index, glycemic load, grain intake and risk of ovarian cancer for women with and without endometriosis.
Supplementary Table 4 shows the association between glycemic index, glycemic load, grain intake and risk of ovarian cancer for women with and without endometriosis.