Boletus edulis Extract—A New Modulator of Dysbiotic Microbiota
Abstract
:1. Introduction
2. Materials and Methods
2.1. Substrate and Extraction Process
2.2. Cytotoxicity of B. edulis Extract
2.3. Immune Response Generated by B. edulis Extract
2.4. Analysis of Polyphenolic Compounds in Samples by Zonal Capillary Electrophoresis with Diode Array Detector (CE-DAD)
2.5. In Vitro Simulation of the B. edulis Extract Effects on Dysbiotic Microbiota after Antibiotic Consumption
2.6. Analysis of the Microbiome by qPCR following The In Vitro Microbial Modulation Process
2.7. Analysis of Organic Acids Produced following the In Vitro Microbial Modulation Process
2.8. Statistical Analysis
3. Results
3.1. The Influence of Different Fractions of B. edulis Extract on Cytotoxicity
3.2. The Influence of B. edulis Extract Different Fractions on Interleukin Production
3.3. Polyphenolic Pattern of B. edulis Extracts
3.4. Modulation through the B. edulis Extract Effects on Dysbiotic Microbiota after Antibiotic Consumption
4. Discussion
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Kaur, S.; Thukral, S.K.; Kaur, P.; Samota, M.K. Perturbations associated with hungry gut microbiome and postbiotic perspectives to strengthen the microbiome health. Future Foods 2021, 4, 100043. [Google Scholar] [CrossRef]
- Serwecińska, L. Antimicrobials and Antibiotic-Resistant Bacteria: A Risk to the Environment and to Public Health. Water 2020, 12, 3313. [Google Scholar] [CrossRef]
- Patangia, D.V.; Anthony Ryan, C.; Dempsey, E.; Paul Ross, R.; Stanton, C. Impact of antibiotics on the human microbiome and consequences for host health. Microbiol. Open 2022, 11, e1260. [Google Scholar] [CrossRef] [PubMed]
- Li, H.; He, J.; Jia, W. The influence of gut microbiota on drug metabolism and toxicity. Expert Opin. Drug Metab. Toxicol. 2016, 12, 31–40. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Liuzzi, G.M.; Petraglia, T.; Latronico, T.; Crescenzi, A.; Rossano, R. Antioxidant Compounds from Edible Mushrooms as Potential Candidates for Treating Age-Related Neurodegenerative Diseases. Nutrients 2023, 15, 1913. [Google Scholar] [CrossRef] [PubMed]
- Anusiya, G.; Gowthama Prabu, U.; Yamini, N.V.; Sivarajasekar, N.; Rambabu, K.; Bharath, G.; Banat, F. A review of the therapeutic and biological effects of edible and wild mushrooms. Bioengineered 2021, 12, 11239–11268. [Google Scholar] [CrossRef]
- Rodríguez-Daza, M.C.; Pulido-Mateos, E.C.; Lupien-Meilleur, J.; Guyonnet, D.; Desjardins, Y.; Roy, D. Polyphenol-Mediated Gut Microbiota Modulation: Toward Prebiotics and Further. Front. Nutr. 2021, 8, 689456. [Google Scholar] [CrossRef]
- Kaur, A.P.; Bhardwaj, S.; Dhanjal, D.S.; Nepovimova, E.; Cruz-Martins, N.; Kuča, K.; Chopra, C.; Singh, R.; Kumar, H.; Șen, F.; et al. Plant Prebiotics and Their Role in the Amelioration of Diseases. Biomolecules 2021, 11, 440. [Google Scholar] [CrossRef]
- Choma, A.; Nowak, K.; Komaniecka, I.; Waśko, A.; Pleszczyńska, M.; Siwulski, M.; Wiater, A. Chemical characterization of alkali-soluble polysaccharides isolated from a Boletus edulis (Bull.) fruiting body and their potential for heavy metal biosorption. Food Chem. 2018, 266, 329–334. [Google Scholar] [CrossRef]
- Coelho, M.C.; Ribeiro, T.B.; Oliveira, C.; Batista, P.; Castro, P.; Monforte, A.R.; Rodrigues, A.S.; Teixeira, J.; Pintado, M. In Vitro Gastrointestinal Digestion Impact on the Bioaccessibility and Antioxidant Capacity of Bioactive Compounds from Tomato Flours Obtained after Conventional and Ohmic Heating Extraction. Foods 2021, 10, 554. [Google Scholar] [CrossRef]
- Vamanu, E.; Gatea, F.; Sârbu, I. In Vitro Ecological Response of the Human Gut Microbiome to Bioactive Extracts from Edible Wild Mushrooms. Molecules 2018, 23, 2128. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Nkadimeng, S.M.; Nabatanzi, A.; Steinmann, C.M.L.; Eloff, J.N. Phytochemical, Cytotoxicity, Antioxidant and Anti-Inflammatory Effects of Psilocybe Natalensis Magic Mushroom. Plants 2020, 9, 1127. [Google Scholar] [CrossRef] [PubMed]
- Kim, J.G.; Kim, M.J.; Lee, J.S.; Sydara, K.; Lee, S.; Byun, S.; Jung, S.K. Smilax guianensis Vitman Extract Prevents LPS-Induced Inflammation by Inhibiting the NF-κB Pathway in RAW 264.7 Cells. J. Microbiol. Biotechnol. 2020, 30, 822–829. [Google Scholar] [CrossRef]
- Ditu, L.M.; Chifiriuc, M.C.; Bezirtzoglou, E.; Marutescu, L.; Bleotu, C.; Pelinescu, D.; Mihaescu, G.; Lazar, V. Immunomodulatory effect of non-viable components of probiotic culture stimulated with heat-inactivated Escherichia coli and Bacillus cereus on holoxenic mice. Microb. Ecol. Health Dis. 2014, 25. [Google Scholar] [CrossRef] [Green Version]
- Gatea, F.; Teodor, E.D.; Matei, A.O.; Badea, G.I.; Radu, G.L. Capillary Electrophoresis Method for 20 Polyphenols Separation in Propolis and Plant Extracts. Food Anal. Methods 2015, 8, 1197–1206. [Google Scholar] [CrossRef]
- Gatea, F.; Sârbu, I.; Vamanu, E. In Vitro Modulatory Effect of Stevioside, as a Partial Sugar Replacer in Sweeteners, on Human Child Microbiota. Microorganisms 2021, 9, 590. [Google Scholar] [CrossRef] [PubMed]
- Vamanu, E.; Pelinescu, D.; Gatea, F.; Sârbu, I. Altered In Vitro Metabolomic Response of the Human Microbiota to Sweeteners. Genes 2019, 10, 535. [Google Scholar] [CrossRef] [Green Version]
- Teodor, E.D.; Gatea, F.; Badea, G.I.; Matei, A.O.; Radu, G.L. Application of capillary zone electrophoresis methods for polyphenols and organic acids separation in different extracts. In Capillary Electrophoresis (CE): Principles, Challenges and Applications; Nova Science Publishers: Hauppauge, NY, USA, 2015; pp. 283–308. [Google Scholar]
- Available online: https://www.peprotech.com/gb/recombinant-human-tnf-2 (accessed on 9 July 2022).
- Çayan, F.; Tel-Çayan, G.; Deveci, E.; Duru, M.E. HPLC-DAD characterization of phenolic profile and in vitro antioxidant, anticholinesterase, and antidiabetic activities of five mushroom species from Turkey. 3 Biotech 2021, 11, 273. [Google Scholar] [CrossRef]
- Tan, Y.; Zeng, N.-K.; Xu, B. Chemical profiles and health-promoting effects of porcini mushroom (Boletus edulis): A narrative review. Food Chem. 2022, 390, 133199. [Google Scholar] [CrossRef]
- Vamanu, E.; Pelinescu, D.; Sarbu, I. Comparative Fingerprinting of the Human Microbiota in Diabetes and Cardiovascular Disease. J. Med. Food. 2016, 19, 1188–1195. [Google Scholar] [CrossRef]
- Pandey, K.B.; Rizvi, S.I. Plant polyphenols as dietary antioxidants in human health and disease. Oxid. Med. Cell. Longev. 2009, 2, 270–278. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Jakobek, L. Interactions of polyphenols with carbohydrates, lipids and proteins. Food Chem. 2015, 175, 556–567. [Google Scholar] [CrossRef] [PubMed]
- Van Hul, M.; Cani, P.D. Targeting Carbohydrates and Polyphenols for a Healthy Microbiome and Healthy Weight. Curr. Nutr. Rep. 2019, 8, 307–316. [Google Scholar] [CrossRef] [Green Version]
- Zhang, L.; McClements, D.J.; Wei, Z.; Wang, G.; Liu, X.; Liu, F. Delivery of synergistic polyphenol combinations using biopolymer-based systems: Advances in physicochemical properties, stability and bioavailability. Crit. Rev. Food Sci. Nutr. 2020, 60, 2083–2097. [Google Scholar] [CrossRef] [PubMed]
- Islam, H.; Chamberlain, T.C.; Mui, A.L.; Little, J.P. Elevated Interleukin-10 Levels in COVID-19: Potentiation of Pro-Inflammatory Responses or Impaired Anti-Inflammatory Action? Front. Immunol. 2021, 12, 677008. [Google Scholar] [CrossRef]
- Schirmer, M.; Smeekens, S.P.; Vlamakis, H.; Jaeger, M.; Oosting, M.; Franzosa, E.A.; Ter Horst, R.; Jansen, T.; Jacobs, L.; Bonder, M.J.; et al. Linking the Human Gut Microbiome to Inflammatory Cytokine Production Capacity. Cell 2016, 167, 1125–1136.e8. [Google Scholar] [CrossRef] [Green Version]
- Ter Horst, R.; Jaeger, M.; Smeekens, S.P.; Oosting, M.; Swertz, M.A.; Li, Y.; Kumar, V.; Diavatopoulos, D.A.; Jansen, A.; Lemmers, H.; et al. Host and Environmental Factors Influencing Individual Human Cytokine Responses. Cell 2016, 167, 1111–1124.e13. [Google Scholar] [CrossRef] [Green Version]
- Lee, S.Y.; Lee, D.A.; Kang, J.H.; Kim, J.H.; Kim, H.W.; Oh, D.H.; Jeong, J.W.; Kim, B.K.; Hur, S.J. Effect of age-related in vitro human digestion with gut microbiota on antioxidative activity and stability of vitamins. Lebensm. Wiss. Und Technol. 2022, 159, 113243. [Google Scholar] [CrossRef]
- Qin, W.; Song, P.; Lin, G.; Huang, Y.; Wang, L.; Zhou, X.; Li, S.; Zhang, T. Gut Microbiota Plasticity Influences the Adaptability of Wild and Domestic Animals in Co-inhabited Areas. Front. Microbiol. 2020, 11, 125. [Google Scholar] [CrossRef]
- Malczewski, A.B.; Navarro, S.; Coward, J.I.G.; Ketheesan, N. Microbiome-derived metabolome as a potential predictor of response to cancer immunotherapy. J. Immuno Ther. Cancer 2020, 8, e001383. [Google Scholar] [CrossRef]
- Lu, S.S.M.; Mohammed, Z.; Häggström, C.; Myte, R.; Lindquist, E.; Gylfe, A.; Van Guelpen, B.; Harlid, S. Antibiotics Use and Subsequent Risk of Colorectal Cancer: A Swedish Nationwide Population-Based Study. JNCI J. Nat. Cancer Inst. 2022, 114, 38–46. [Google Scholar] [CrossRef] [PubMed]
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Avram, I.; Pelinescu, D.; Gatea, F.; Ionescu, R.; Barcan, A.; Rosca, R.; Zanfirescu, A.; Vamanu, E. Boletus edulis Extract—A New Modulator of Dysbiotic Microbiota. Life 2023, 13, 1481. https://doi.org/10.3390/life13071481
Avram I, Pelinescu D, Gatea F, Ionescu R, Barcan A, Rosca R, Zanfirescu A, Vamanu E. Boletus edulis Extract—A New Modulator of Dysbiotic Microbiota. Life. 2023; 13(7):1481. https://doi.org/10.3390/life13071481
Chicago/Turabian StyleAvram, Ionela, Diana Pelinescu, Florentina Gatea, Robertina Ionescu, Alexandru Barcan, Razvan Rosca, Anca Zanfirescu, and Emanuel Vamanu. 2023. "Boletus edulis Extract—A New Modulator of Dysbiotic Microbiota" Life 13, no. 7: 1481. https://doi.org/10.3390/life13071481
APA StyleAvram, I., Pelinescu, D., Gatea, F., Ionescu, R., Barcan, A., Rosca, R., Zanfirescu, A., & Vamanu, E. (2023). Boletus edulis Extract—A New Modulator of Dysbiotic Microbiota. Life, 13(7), 1481. https://doi.org/10.3390/life13071481