Bifidobacterium longum prevent the progression of colon cancer via inhibiting metastasis and angiogenesis

Colorectal cancer (CRC) is one of the most common reasons for cancer-related death, and both angiogenesis and metastasis have established roles in CRC progression. Recent findings suggest that probiotics, like Bifidobacterium longum, are capable of suppressing anti-cancer activity through modulation of tumor-associated molecular pathways. The present study was undertaken to examine the impact of B. longum on tumor growth and gene expression of angiogenesis and metastasis-associated genes in an inbred model of CRC. In the current study, CRC was established in inbred mice and then treated with B. longum. Tumor size was measured, and gene expression levels for HIF-1α, VEGFA, ANGPT1, ANGPT2, SNAIL, TWIST, MMP9, and E-cadherin were measured by quantitative PCR. Results showed that there was a considerable reduction in tumor size following B. longum administration. HIF-1α, VEGFA, ANGPT1, ANGPT2, SNAIL, TWIST, and MMP9 were reduced significantly, and E-cadherin was increased. These findings indicate that B. longum inhibits hypoxia-induced angiogenesis by suppressing HIF-1α and VEGFA, inhibits vascular instability through the suppression of ANGPT2, and inhibits metastasis through the regulation of EMT-related genes (SNAIL, TWIST, and E-cadherin) and extracellular matrix degradation (MMPs). In brief, B. longum suppresses CRC development by targeting multiple pathways that are involved in the development of CRC. These results suggest its potential for use as an adjunct therapy against CRC and deserve further investigation in the clinic.

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Publication Details

Journal
BMC Microbiology
Published
2026-09-22
DOI
https://doi.org/10.1186/s12866-026-05619-y
Primary Topic
Probiotics and Fermented Foods
Type
article
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article

Bifidobacterium longum prevent the progression of colon cancer via inhibiting metastasis and angiogenesis

Sayed Mohammad Shafiee, Saba Tarkashvand, Golshid Javdani Shahedin, Mohammad Hasan Maleki et al.
BMC Microbiology
Probiotics and Fermented Foods
article

Bifidobacterium longum prevent the progression of colon cancer via inhibiting metastasis and angiogenesis

Sayed Mohammad Shafiee, Saba Tarkashvand, Golshid Javdani Shahedin, Mohammad Hasan Maleki, Nariman Mehrnia, Hossein Hosseini, Masoud Sanati, Pedram Pouyan, Parniya Hemmati, Bahareh Filom, Parisa Rashidi, Elham Azarnoush, Mahtab Mehboodi
article en

Abstract

Colorectal cancer (CRC) is one of the most common reasons for cancer-related death, and both angiogenesis and metastasis have established roles in CRC progression. Recent findings suggest that probiotics, like Bifidobacterium longum, are capable of suppressing anti-cancer activity through modulation of tumor-associated molecular pathways. The present study was undertaken to examine the impact of B. longum on tumor growth and gene expression of angiogenesis and metastasis-associated genes in an inbred model of CRC. In the current study, CRC was established in inbred mice and then treated with B. longum. Tumor size was measured, and gene expression levels for HIF-1α, VEGFA, ANGPT1, ANGPT2, SNAIL, TWIST, MMP9, and E-cadherin were measured by quantitative PCR. Results showed that there was a considerable reduction in tumor size following B. longum administration. HIF-1α, VEGFA, ANGPT1, ANGPT2, SNAIL, TWIST, and MMP9 were reduced significantly, and E-cadherin was increased. These findings indicate that B. longum inhibits hypoxia-induced angiogenesis by suppressing HIF-1α and VEGFA, inhibits vascular instability through the suppression of ANGPT2, and inhibits metastasis through the regulation of EMT-related genes (SNAIL, TWIST, and E-cadherin) and extracellular matrix degradation (MMPs). In brief, B. longum suppresses CRC development by targeting multiple pathways that are involved in the development of CRC. These results suggest its potential for use as an adjunct therapy against CRC and deserve further investigation in the clinic.

BMC Microbiology
Ahvaz Jundishapur University of Medical Sciences (IR), Pasteur Institute of Iran (IR), Iran University of Medical Sciences (IR), Islamic Azad University North Tehran Branch (IR), Shiraz University of Medical Sciences (IR), Kerman University of Medical Sciences (IR), University of Tehran (IR), Islamic Azad University Medical Branch of Tehran (IR), Islamic Azad University of Parand (IR), Urmia University (IR), Rasool Akram Hospital (IR), Urmia University of Medical Sciences (IR), Tehran University of Medical Sciences (IR), Ferdowsi University of Mashhad (IR)
Good health and well-being
Openalex Percentile: Top 14%
Probiotics and Fermented Foods
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