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Article Sharing | Interactions Between the Porcine Host and Gut Microbiota — The impact of gut microbiota on the host immune system Ⅱ
HUADE
Here is a **concise, journal-style introduction (a few sentences)**:

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Commensal gut microbiota play a fundamental role in the development and regulation of host immunity in mammals. Disruption of the microbiota–immune balance leads to dysbiosis, which is closely associated with increased disease susceptibility. In contrast, the establishment of a stable and defined microbial community supports the maturation of immune functions. Among these, lactic acid bacteria have attracted significant attention due to their strain-specific ability to modulate immune responses and enhance host defense mechanisms.
Article Shareing | Interactions Between the Porcine Host and Gut Microbiota — The impact of gut microbiota on the host immune system
HUADE
Pigs are the only animal susceptible to human rotavirus (HRV)-induced diarrhea, making them an important model for studying host-microbe interactions. Studies in gnotobiotic pigs show that probiotic colonization with Lactobacillus rhamnosus GG and Bifidobacterium animalis Bb12 enhances HRV-specific IgA responses and reduces diarrhea severity. Similarly, colonization with the simplified Bristol microbiota upregulates serum IgA and IgM levels, supporting intestinal and systemic immune development in newborn pigs. These findings highlight the potential of gut microbiota interventions to modulate immunity and improve pig health.
Article Sharing | Interactions Between the Porcine Host and Gut Microbiota — The Role of Antibiotics
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Antibiotics are widely used in pig production to prevent disease and promote growth. However, their use can disrupt the gut microbiota, reduce beneficial bacteria, and increase opportunistic pathogens. These changes may affect intestinal health, immune function, and the spread of antibiotic resistance genes.
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The Lunar New Year may be nearing its end, but the festive spirit is still in the air.
Article Sharing | Host-Microbiota Interactions in Domestic Pigs: The Roles of Prebiotics and Probiotics Ⅱ
HUADE
Many earlier studies have found that Lactobacillus is one of the main types of bacteria in pig guts. No matter the pig's age, these bacteria make up about 15% of the gut samples when looking at their 16S rRNA gene sequences. Lactobacillus lives in both the upper and lower parts of the pig's digestive tract and starts to settle there soon after birth.
HUADE VOICE| Galloping Through Millennia: The Cultural Essence of the Zodiac Horse
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Article Sharing | Host-Microbiota Interactions in Domestic Pigs: The Roles of Prebiotics and Probiotics
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Probiotics, as beneficial microorganisms, can enhance the health and production performance of weaned piglets through competitive exclusion of pathogens, reinforcement of intestinal barrier function, and modulation of immune responses. Their effects are strain-specific, with certain strains of Lactobacillus, Enterococcus, and other genera significantly improving feed conversion efficiency and inhibiting pathogenic bacteria such as E. coli. Meanwhile, prebiotics selectively promote the proliferation of beneficial bacteria and act synergistically with probiotics to further optimize gut microbial balance. This review systematically examines the mechanisms and applications of probiotics and prebiotics in regulating the intestinal microbiota of domestic pigs, providing a theoretical foundation for the development of functional feed additives in animal husbandry.
HUADE VIOCE | Anchoring a New Starting Point ; Exploring Infinite Possibilities
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Effects of Epidermal Growth Factor and Insulin-like Growth Factor-Ⅰ on Immune Function in Weaned Piglets
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Breast milk provides essential nutrients for the development of newborn mammals, and peptide growth factors such as epidermal growth factor (EGF) and insulin-like growth factor-Ⅰ (IGF-Ⅰ) play a critical role in the intestinal growth and development, cell proliferation, growth, differentiation, and immune function of newborn animals. Therefore, breast milk is vital for the survival and development of newborn mammals.
HUADE VOICE | Huade Biotech Looks Forward to Ushering in the Future and the New Year with You
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A New Chapter Begins with Genes, Bringing Everything Within Reach. Huade Biotech Looks Forward to Ushering in the Future and the New Year with You.
Home > News
Will Beneficial Bacteria be Killed by AMPs (Defensin)?

Will Beneficial Bacteria be Killed by AMPs (Defensin)?

Aug 01, 2023

08-012023

Defensins, as a natural broad-spectrum antimicrobial substance, have obvious bactericidal effects on most microorganisms in vitro and vivo experiments. However, in the vivo environment, the role of defensin can be selective.
AMPs Mechanism of Killing Microbes

AMPs Mechanism of Killing Microbes

Jul 31, 2023

07-312023

Antimicrobial peptides mainly by destory the cell membrane of the bacterial to lead the bacterial's death or survival ability is inhibited.
Animal Health Care-Discuss mucous membranes from the perspective of anti-epidermal growth factor

Animal Health Care-Discuss mucous membranes from the perspective of anti-epidermal growth factor

Mar 22, 2023

03-222023

With the deepening of mucosal research, researchers have found that antibacterial peptides such as animal defensins have the function of inhibiting viruses and interfering with virus replication
Learn about EGF

Learn about EGF

Mar 21, 2023

03-212023

A large number of experimental studies show that EGF can stimulate the proliferation of a variety of cells, mainly epidermal cells, endothelial cells  Since the discovery of egf, because of the high cost of production, it has been used only for the repair and healing of corneal injuries, burns, scalds and surgical wounds, and is often used as a growth promoting factor in cell culture
Mechanism of EGF

Mechanism of EGF

Mar 07, 2023

03-072023

Through the combine of EGF to the transmembrane receptor EGFR to form a dimer complex of 2 molecule EGF and 2 molecular egfr on the membrane of intestinal epithelial cells, and cause the self-phosphorylated of intracellular structure of EGFR, activates the intracellular signal pathway and leading the signal of EGF is transmitted to the cytoplasm.
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