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Investigating the Cellular Responses to Combined Nisin and Urolithin B Treatment (7:3) in HKB-11 Lymphoma Cells
Ahmad K Al-Khazaleh1, Muhammad A Alsherbiny2,3, Dennis Chang1
1NICM Health Research Institute, Western Sydney University, Penrith, NSW 2751, Australia.
Abstract:
Lymphoma continues to pose a serious challenge to global health, underscoring the urgent need for new therapeutic strategies. Recently, the gut microbiome has been shown to play a potential role in regulating immune responses and influencing cancer progression. However, its molecular mechanisms of action in lymphoma remain poorly understood. This study investigates the antiproliferative and apoptotic activities of gut microbiota-derived metabolites, specifically nisin (N) and urolithin B (UB), individually and in combination 7:3 (5750 μM), against the human lymphoma cell line HKB-11. Comprehensive evaluations were performed using Alamar Blue viability assays, combination index (CI) analyses, reactive oxygen species (ROS) quantification, flow cytometry for apoptosis detection, and advanced bottom-up proteomics analyses. N and UB exhibited potent antiproliferative activity, with the 7:3 combination demonstrating strong synergistic effects (CI < 1), significantly enhancing apoptosis (p < 0.01) and ROS production (p < 0.0001) compared to the untreated control. Proteomics analyses revealed substantial alterations in proteins crucial to ribosomal biogenesis, mitochondrial function, cell cycle control, and apoptosis regulation, including a marked downregulation of ribosomal proteins (RPS27; Log2FC = -3.47) and UBE2N (Log2FC = -0.60). These findings highlight the potential of N and UB combinations as a novel and practical therapeutic approach for lymphoma treatment, warranting further in vivo exploration and clinical validation.
Insights
Gut bacteria metabolites, nisin and urolithin B, show strong synergistic effects in killing lymphoma cells. This combination enhances apoptosis and alters key cellular processes, offering a promising new therapeutic strategy for lymphoma treatment.
Area of Science:
- Oncology
- Microbiology
- Metabolomics
Background:
- Lymphoma presents a significant global health burden, necessitating novel therapeutic strategies.
- The gut microbiome's role in cancer, including lymphoma, is increasingly recognized but its molecular mechanisms are unclear.
Purpose of the Study:
- To investigate the antiproliferative and apoptotic effects of gut microbiota-derived metabolites, nisin (N) and urolithin B (UB), on human lymphoma cells.
- To explore the synergistic potential of N and UB in combination against lymphoma.
Main Methods:
- Utilized Alamar Blue viability assays, combination index (CI) analysis, reactive oxygen species (ROS) quantification, and flow cytometry.
- Conducted advanced bottom-up proteomics to analyze molecular changes in lymphoma cells treated with N and UB.
Main Results:
- Nisin and urolithin B demonstrated potent antiproliferative activity against HKB-11 lymphoma cells.
- The 7:3 combination of N and UB exhibited significant synergistic effects (CI < 1), enhancing apoptosis and ROS production.
- Proteomics revealed significant alterations in ribosomal biogenesis, mitochondrial function, cell cycle, and apoptosis-related proteins, including downregulation of RPS27 and UBE2N.
Conclusions:
- The combination of nisin and urolithin B shows considerable potential as a novel therapeutic approach for lymphoma.
- Further in vivo and clinical validation is warranted to explore the therapeutic application of this N and UB combination.
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