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Predictive Immune Modeling of Solid Tumors
Published on: February 25, 2020
Microbiome Landscape and Association with Response to Immune Checkpoint Inhibitors in Advanced Solid Tumors: A
Kentaro Sawada1, Riu Yamashita2,3, Shunsuke A Sakai2,3
1Department of Medical Oncology, Kushiro Rosai Hospital, Kushiro, Japan.
Abstract:
Although the gut microbiome is associated with cancer development and progression, little is known about the effects of the gut microbiome landscape and the efficacy of immune checkpoint inhibitors (ICI) across cancer types. We investigated the association between the microbiome, clinical features, and ICI efficacy across cancer types in a large nationwide screening project for solid tumors. Among 2,180 patients with advanced solid tumors enrolled in the SCRUM-Japan MONSTAR-SCREEN between October 2019 and September 2021, in the chemotherapy-naïve cohort (n = 817), a high prevalence of oral bacteria was observed in patients using proton pump inhibitors (PPI) and those with upper gastrointestinal cancers, particularly postoperative patients with gastric or pancreatic cancer. Among patients treated with ICIs (n = 333), a high abundance of sequence variants in the gut microbiome was not significantly associated with ICI efficacy across cancer types (HR = 0.94; 95% confidence interval, 0.73-1.21). However, high oral bacteria in feces significantly correlated with a shorter progression-free survival compared with low oral bacteria (median, 4.34 vs. 6.97 months; HR = 1.38; 95% confidence interval, 1.07-1.78). Notably, in patients using PPIs, a higher proportion of oral bacteria influenced progression-free survival outcomes of ICI treatment (median, 3.15 vs. 2.04 months; P = 0.08), unlike in PPI nonusers (median, 7.13 vs. 5.55 months; P = 0.74). This study of the gut microbiome has unveiled significant insights into its landscape and potential impact on ICI efficacy. It highlights that the abundance of oral bacteria in feces may play a critical role in diminishing ICI efficacy among patients using PPIs.
Significance:
As part of the MONSTAR-SCREEN, a prospective nationwide project for patients with solid tumors, we found that although gut microbiome diversity does not consistently predict ICI efficacy across cancer types, a high level of oral bacteria in the gut is linked to reduced ICI effectiveness, especially in patients using PPIs. These findings highlight the potential clinical impact of microbiome variations on cancer treatment outcomes.
Insights
High oral bacteria in the gut correlates with reduced immune checkpoint inhibitor (ICI) efficacy, particularly in patients using proton pump inhibitors (PPIs). Gut microbiome analysis reveals oral bacteria abundance impacts cancer treatment outcomes.
Area of Science:
- Oncology
- Microbiome Research
- Immunotherapy
Background:
- The gut microbiome's role in cancer development and immune checkpoint inhibitor (ICI) efficacy is increasingly recognized.
- However, comprehensive data on microbiome landscape variations and their impact on ICI efficacy across diverse cancer types remain limited.
Purpose of the Study:
- To investigate the association between the gut microbiome composition, clinical features, and ICI efficacy in a large cohort of patients with advanced solid tumors.
- To determine if gut microbiome diversity or specific bacterial abundances predict ICI treatment outcomes.
Main Methods:
- Analysis of gut microbiome data from 2,180 patients with advanced solid tumors enrolled in the SCRUM-Japan MONSTAR-SCREEN project.
- Correlation of microbiome profiles with clinical features and ICI efficacy, including progression-free survival (PFS).
- Subgroup analysis focusing on patients using proton pump inhibitors (PPIs).
Main Results:
- A high prevalence of oral bacteria was observed in patients using PPIs and those with upper gastrointestinal cancers.
- Overall gut microbiome diversity did not significantly predict ICI efficacy across cancer types (HR=0.94).
- Increased oral bacteria in feces was associated with shorter PFS (median 4.34 vs. 6.97 months) and diminished ICI efficacy, especially in PPI users (median PFS 3.15 vs. 2.04 months).
Conclusions:
- Gut microbiome composition, specifically the abundance of oral bacteria, significantly impacts ICI efficacy.
- The presence of oral bacteria in the gut may reduce treatment effectiveness, particularly in patients using PPIs.
- These findings underscore the clinical relevance of microbiome profiling for optimizing cancer immunotherapy.
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