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Naccarati, A.

Publications and source records attributed to Naccarati, A..

2 recordsLinked to original sources

Fasting-mimicking diet counteracts gut microbial dysbiosis in experimental Lynch syndrome

The development of colorectal cancer (CRC) is largely influenced by hereditary factors, with up to one-third of cases linked to genetic predisposition. In parallel, environmental factors such as diet and intestinal microbiota play a significant role. Lynch syndrome (LS), the most common form of hereditary CRC, is due to mutations in DNA mismatch repair genes. Diet interventions such as calorie restriction (CR) can modify the course of the disease, altering nutrient supply and promoting beneficial microbial populations. Fasting-mimicking diets (FMD) are plant-based CR regimens that showed promise in modulating the gut microbiota and suppressing CRC progression in pre-clinical ectopic cancer models. In this study, Villin-Cre/Msh2-floxed (VCM) mice, modelling LS, were subjected to periodic FMD cycles for 10 months. Although not impacting on macroscopic tumor development, FMD influenced animal weight in a sexually dimorphic manner. Moreover, shotgun metagenomic sequencing revealed that FMD mitigated the dysbiotic longitudinal changes associated with cancer onset, preserving beneficial species, such as Lactobacillus johnsonii, and reducing adverse species, such as Escherichia coli. Metabolic pathway analysis also showed significant differences, with FMD preventing the upregulation of pathways involved in amino acid and nucleotide synthesis, potentially promoting tumor growth. Overall, the findings suggest that periodic FMD may be adopted as an adjuvant therapy in LS management, counteracting gut microbiota alterations.

pathology↗

TACSTD2 expression marks the early transition to colon adenomas

This study aimed to address new molecular events occurring in precancerous stages of colorectal cancer (CRC) by integrated analysis of gene expression data and DNA methylation profiles. Whole-transcriptome sequencing analysis was performed on 16 fresh frozen colorectal adenoma and matched mucosa specimens along with validation of candidates in an independent cohort of 20 fresh frozen paired adenoma and adjacent mucosa tissues as well as eight independent public datasets (335 cases). Genome-wide methylation profiles were determined for 5 adenoma pairs and confirmed by pyrosequencing on 20 tissue pairs used for validation. Functional analysis was performed in vitro and in vivo using the inflammation-associated azoxymethane/dextran sodium sulfate (AOM/DSS) and the sporadic colorectal carcinogenesis (six AOM injections) mouse models as well as ApcMin/+ mice. Candidates were investigated by immunohistochemical staining of human adenomas and early-stage (pT1) CRC tumors. A total of 1,917 differentially expressed genes and 148,191 differentially methylated CpG sites were detected in adenomas compared with adjacent mucosa samples. Based on the transcriptome data and relevance to CRC, TACSTD2, MMP7, MMP1, CLDN2, CLDN1, and ETV4, were selected for further validation. TACSTD2 promoter hypomethylation in adenoma tissues was validated in 20 additional tissue pairs and corresponded with increased TACSTD2 expression. TACSTD2 was also overexpressed in an in vitro transformation model of human colonic epithelial cells. The TACSTD2 protein TROP2 was elevated in human adenomas, pT1 tumors, and in murine adenomas, while it was absent in the unaffected adjacent mucosa. TROP2 overexpression might trigger the development of precancerous lesions and could help identify early transformation foci in colon biopsies. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=110 SRC="FIGDIR/small/620817v1_ufig1.gif" ALT="Figure 1"> View larger version (34K): org.highwire.dtl.DTLVardef@1f23753org.highwire.dtl.DTLVardef@10e6abeorg.highwire.dtl.DTLVardef@181f500org.highwire.dtl.DTLVardef@fc0d38_HPS_FORMAT_FIGEXP M_FIG C_FIG

cancer biology↗