Jorge García-Márquez, Alba Galafat Díaz, Luis Molina-Roque, Marta Domínguez-Maqueda, Verónica de las Heras, Paula Simó-Mirabet, Antonio J. Vizcaíno, Juan Antonio Martos-Sitcha, Francisco Javier Alarcón-López, Miguel Ángel Moriñigo, María Carmen Balebona
{"title":"微藻和蓝藻生物质改变了枯草芽孢杆菌胞外产物的活性:体外和体内评估","authors":"Jorge García-Márquez, Alba Galafat Díaz, Luis Molina-Roque, Marta Domínguez-Maqueda, Verónica de las Heras, Paula Simó-Mirabet, Antonio J. Vizcaíno, Juan Antonio Martos-Sitcha, Francisco Javier Alarcón-López, Miguel Ángel Moriñigo, María Carmen Balebona","doi":"10.1007/s12602-024-10350-z","DOIUrl":null,"url":null,"abstract":"<p>This study investigates the postbiotic potential of extracellular products (ECPs) from <i>Bacillus pumilus</i> strains cultivated on microalgae-supplemented media. We assessed enzymatic and antimicrobial activities to select ECPs that enhance the digestive processes in gilthead seabream. Additionally, we explored the in vitro enzymatic capacity of the chosen postbiotics to hydrolyze macromolecules in microalgae. Finally, a feeding trial was conducted to determine the in vivo effects of the ECPs on <i>Sparus aurata</i>. In vitro enzymatic assays demonstrated diverse hydrolytic capacities among ECPs. All conditions exhibited antimicrobial activity against <i>Photobacterium damselae</i> subsp. <i>piscicida</i>, with variation in inhibitory effects against <i>Vibrio harveyi</i> and <i>Tenacibaculum maritimum</i>. Furthermore, in vitro assays revealed differences in protein hydrolysis and soluble protein concentration, influencing amino acid and reducing sugar release from microalgal biomass. These analyses facilitated a selection to test ECPs in vivo. Lastly, the in vivo experiment revealed no differences in the growth performance, nutrient utilization, and general metabolism of <i>S. aurata</i> fed the experimental diets. Dietary inclusion of postbiotics increased the activity of key digestive enzymes in fish compared to the control group, and particularly, values increased significantly when the fish were fed with the ECP-nanoparticulate-supplemented diet. In conclusion, the inclusion of microalgae in the culture media significantly influences the activity of extracellular products from <i>B. pumilus</i> strains, as evidenced in both in vitro and in vivo assays.</p>","PeriodicalId":20506,"journal":{"name":"Probiotics and Antimicrobial Proteins","volume":"36 1","pages":""},"PeriodicalIF":4.4000,"publicationDate":"2024-09-11","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Microalgal and Cyanobacterial Biomasses Modified the Activity of Extracellular Products from Bacillus pumilus: An In Vitro and In Vivo Assessment\",\"authors\":\"Jorge García-Márquez, Alba Galafat Díaz, Luis Molina-Roque, Marta Domínguez-Maqueda, Verónica de las Heras, Paula Simó-Mirabet, Antonio J. Vizcaíno, Juan Antonio Martos-Sitcha, Francisco Javier Alarcón-López, Miguel Ángel Moriñigo, María Carmen Balebona\",\"doi\":\"10.1007/s12602-024-10350-z\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>This study investigates the postbiotic potential of extracellular products (ECPs) from <i>Bacillus pumilus</i> strains cultivated on microalgae-supplemented media. We assessed enzymatic and antimicrobial activities to select ECPs that enhance the digestive processes in gilthead seabream. Additionally, we explored the in vitro enzymatic capacity of the chosen postbiotics to hydrolyze macromolecules in microalgae. Finally, a feeding trial was conducted to determine the in vivo effects of the ECPs on <i>Sparus aurata</i>. In vitro enzymatic assays demonstrated diverse hydrolytic capacities among ECPs. All conditions exhibited antimicrobial activity against <i>Photobacterium damselae</i> subsp. <i>piscicida</i>, with variation in inhibitory effects against <i>Vibrio harveyi</i> and <i>Tenacibaculum maritimum</i>. Furthermore, in vitro assays revealed differences in protein hydrolysis and soluble protein concentration, influencing amino acid and reducing sugar release from microalgal biomass. These analyses facilitated a selection to test ECPs in vivo. Lastly, the in vivo experiment revealed no differences in the growth performance, nutrient utilization, and general metabolism of <i>S. aurata</i> fed the experimental diets. Dietary inclusion of postbiotics increased the activity of key digestive enzymes in fish compared to the control group, and particularly, values increased significantly when the fish were fed with the ECP-nanoparticulate-supplemented diet. 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Microalgal and Cyanobacterial Biomasses Modified the Activity of Extracellular Products from Bacillus pumilus: An In Vitro and In Vivo Assessment
This study investigates the postbiotic potential of extracellular products (ECPs) from Bacillus pumilus strains cultivated on microalgae-supplemented media. We assessed enzymatic and antimicrobial activities to select ECPs that enhance the digestive processes in gilthead seabream. Additionally, we explored the in vitro enzymatic capacity of the chosen postbiotics to hydrolyze macromolecules in microalgae. Finally, a feeding trial was conducted to determine the in vivo effects of the ECPs on Sparus aurata. In vitro enzymatic assays demonstrated diverse hydrolytic capacities among ECPs. All conditions exhibited antimicrobial activity against Photobacterium damselae subsp. piscicida, with variation in inhibitory effects against Vibrio harveyi and Tenacibaculum maritimum. Furthermore, in vitro assays revealed differences in protein hydrolysis and soluble protein concentration, influencing amino acid and reducing sugar release from microalgal biomass. These analyses facilitated a selection to test ECPs in vivo. Lastly, the in vivo experiment revealed no differences in the growth performance, nutrient utilization, and general metabolism of S. aurata fed the experimental diets. Dietary inclusion of postbiotics increased the activity of key digestive enzymes in fish compared to the control group, and particularly, values increased significantly when the fish were fed with the ECP-nanoparticulate-supplemented diet. In conclusion, the inclusion of microalgae in the culture media significantly influences the activity of extracellular products from B. pumilus strains, as evidenced in both in vitro and in vivo assays.
期刊介绍:
Probiotics and Antimicrobial Proteins publishes reviews, original articles, letters and short notes and technical/methodological communications aimed at advancing fundamental knowledge and exploration of the applications of probiotics, natural antimicrobial proteins and their derivatives in biomedical, agricultural, veterinary, food, and cosmetic products. The Journal welcomes fundamental research articles and reports on applications of these microorganisms and substances, and encourages structural studies and studies that correlate the structure and functional properties of antimicrobial proteins.