Functional characterization of microbes which colonize CRC is impeded by a lack of bacterial strains from tumor tissues. Here, we report the Cancer-Associated Microbe Library (CAM-L), comprising more than 3,000 viable bacterial isolates, representing 121 distinct species, and 60 matching organoid...
Metabolic syndrome (MS) is a risk factor for both the development and progression of endometrial cancer (EC); however, the mechanism remains unclear. We found that polyamine metabolites are significantly elevated in the sera and tumor tissues of EC patients with MS (ECWMS). Hyperlipidemia is a cr...
The incidence of obesity and colorectal cancer (CRC) is rising annually. Obesity, particularly visceral obesity, poses a serious health threat, yet the association of obesity with CRC progression, as well as the role of visceral obesity, remains debated. This study analyzed 394 CRC patients ...
Metabolic reprogramming is critical for tumor initiation and progression. However, the exact impact of specific metabolic changes on cancer progression is poorly understood. Here, we integrate multimodal analyses of primary and metastatic clonally-related clear cell renal cancer cells (ccRCC) gro...
This study aimed to highlight the relationships between vaginal microbiome composition, metabolic alterations, and gene expression changes during cervical cancer. Multi-omics analysis for the healthy (Z group), abortion (AB group), HPV infection (HP group), and cervical cancer group (CC group), q...
Introduction: Cervical cancer is the fourth most common malignancy in women and is primarily caused by persistent infection with high-risk human papillomavirus (HPV). In addition, host immune responses, genetic factors, and lifestyle habits also have etiological roles. The cervicovaginal microbio...
Upon penetrating the basement membrane, breast cancer cells directly interact with their surrounding adipose tissue, which forms a unique tumor-associated adipose microenvironment (TAME). However, the underlying mechanism involved in the regulation of lipid metabolic remodeling in the TAME remain...
Upon penetrating the basement membrane, breast cancer cells directly interact with their surrounding adipose tissue, which forms a unique tumor-associated adipose microenvironment (TAME). However, the underlying mechanism involved in the regulation of lipid metabolic remodeling in the TAME remain...
Upon penetrating the basement membrane, breast cancer cells directly interact with their surrounding adipose tissue, which forms a unique tumor-associated adipose microenvironment (TAME). However, the underlying mechanism involved in the regulation of lipid metabolic remodeling in the TAME remain...