TY - JOUR
T1 - Pre-diagnostic immunological markers of bacterial translocation and liver cancer risk
T2 - A nested case–control analysis of 12 prospective cohorts
AU - Watling, Cody Z.
AU - Campbell, Peter T.
AU - Graubard, Barry I.
AU - Wang, Yanyu
AU - Gewirtz, Andrew T.
AU - Zhang, Xuehong
AU - Barnett, Matthew J.
AU - Buring, Julie E.
AU - Chen, Yu
AU - Eliassen, A. Heather
AU - Gaziano, J. Michael
AU - Hofmann, Jonathan N.
AU - Huang, Wen Yi
AU - Kang, Jae H.
AU - Koshiol, Jill
AU - Loftfield, Erikka
AU - Lee, I. Min
AU - Moore, Steven C.
AU - Mucci, Lorelei A.
AU - Neuhouser, Marian L.
AU - Newton, Christina C.
AU - Purdue, Mark P.
AU - Sesso, Howard D.
AU - Shrubsole, Martha
AU - Sinha, Rashmi
AU - Tinker, Lesley
AU - Triplette, Matthew
AU - Um, Caroline Y.
AU - Visvanathan, Kala
AU - Watts, Eleanor L.
AU - Wactawski-Wende, Jean
AU - Willett, Walter
AU - Wu, Fen
AU - Zheng, Wei
AU - Barupal, Dinesh
AU - Petrick, Jessica L.
AU - McGlynn, Katherine A.
N1 - Publisher Copyright:
© 2025 The Author(s). International Journal of Cancer published by John Wiley & Sons Ltd on behalf of UICC.
PY - 2026/4/1
Y1 - 2026/4/1
N2 - The gut-liver axis may play an important role in hepatocarcinogenesis. However, limited prospective research has explored associations with liver cancer risk. We conducted a nested case–control study based in 12 prospective cohort studies from across the United States, which included 867 cases of liver cancer and 867 matched controls. We measured bacterial translocation markers, specifically immunoglobulin (Ig) A, IgG, and IgM against lipopolysaccharide and flagellin; soluble CD14 (a co-receptor for lipopolysaccharide); and lipopolysaccharide-binding protein. Multivariable conditional logistic regression was used to estimate adjusted odds ratios (OR) and 95% confidence intervals (CI) between bacterial translocation marker concentrations per doubling in concentrations and liver cancer risk. Lipopolysaccharide-binding protein concentrations were most strongly associated with higher liver cancer risk (OR per doubling in concentrations: 1.48, 95% CI: 1.23–1.79). Concentrations of anti-flagellin IgA (1.13, 1.01–1.28) and IgG (1.13, 1.01–1.28), anti-lipopolysaccharide IgG (1.20, 1.01–1.42), and soluble CD14 (1.12, 1.01–1.24) were also associated with liver cancer risk. When analyses were separated into hepatocellular carcinoma (HCC, N = 436 cases) and intrahepatic cholangiocarcinoma (ICC, N = 110 cases), no evidence of heterogeneity was observed except for lipopolysaccharide-binding protein concentrations, which were positively associated with HCC (1.77, 1.34–2.33) but not ICC (0.67, 0.37–1.22; p-heterogeneity =.003). Associations did not differ by time to liver cancer diagnosis or other subgroups. These findings support the role of gut barrier dysfunction in hepatocarcinogenesis, necessitating further research to understand the complex interplay among the mechanisms and risk factors disrupting the gut barrier, microbiota, and liver cancer.
AB - The gut-liver axis may play an important role in hepatocarcinogenesis. However, limited prospective research has explored associations with liver cancer risk. We conducted a nested case–control study based in 12 prospective cohort studies from across the United States, which included 867 cases of liver cancer and 867 matched controls. We measured bacterial translocation markers, specifically immunoglobulin (Ig) A, IgG, and IgM against lipopolysaccharide and flagellin; soluble CD14 (a co-receptor for lipopolysaccharide); and lipopolysaccharide-binding protein. Multivariable conditional logistic regression was used to estimate adjusted odds ratios (OR) and 95% confidence intervals (CI) between bacterial translocation marker concentrations per doubling in concentrations and liver cancer risk. Lipopolysaccharide-binding protein concentrations were most strongly associated with higher liver cancer risk (OR per doubling in concentrations: 1.48, 95% CI: 1.23–1.79). Concentrations of anti-flagellin IgA (1.13, 1.01–1.28) and IgG (1.13, 1.01–1.28), anti-lipopolysaccharide IgG (1.20, 1.01–1.42), and soluble CD14 (1.12, 1.01–1.24) were also associated with liver cancer risk. When analyses were separated into hepatocellular carcinoma (HCC, N = 436 cases) and intrahepatic cholangiocarcinoma (ICC, N = 110 cases), no evidence of heterogeneity was observed except for lipopolysaccharide-binding protein concentrations, which were positively associated with HCC (1.77, 1.34–2.33) but not ICC (0.67, 0.37–1.22; p-heterogeneity =.003). Associations did not differ by time to liver cancer diagnosis or other subgroups. These findings support the role of gut barrier dysfunction in hepatocarcinogenesis, necessitating further research to understand the complex interplay among the mechanisms and risk factors disrupting the gut barrier, microbiota, and liver cancer.
KW - endotoxin
KW - flagellin
KW - gut dysbiosis
KW - hepatocellular carcinoma
KW - intrahepatic cholangiocarcinoma
UR - https://www.scopus.com/pages/publications/105019691871
U2 - 10.1002/ijc.70201
DO - 10.1002/ijc.70201
M3 - Article
C2 - 41129365
AN - SCOPUS:105019691871
SN - 0020-7136
VL - 158
SP - 1801
EP - 1812
JO - International Journal of Cancer
JF - International Journal of Cancer
IS - 7
ER -