• 제목/요약/키워드: Postbiotic

검색결과 5건 처리시간 0.017초

Use of Postbiotic as Growth Promoter in Poultry Industry: A Review of Current Knowledge and Future Prospects

  • Muhammad Saeed;Zoya Afzal;Fatima Afzal;Rifat Ullah Khan;Shaaban S. Elnesr;Mahmoud Alagawany;Huayou Chen
    • 한국축산식품학회지
    • /
    • 제43권6호
    • /
    • pp.1111-1127
    • /
    • 2023
  • Health-promoting preparations of inanimate microorganisms or their components are postbiotics. Since probiotics are sensitive to heat and oxygen, postbiotics are stable during industrial processing and storage. Postbiotics boost poultry growth, feed efficiency, intestinal pathogen reduction, and health, making them acceptable drivers of sustainable poultry production. It contains many important biological properties, such as immunomodulatory, antioxidant, and anti-inflammatory responses. Postbiotics revealed promising antioxidant effects due to higher concentrations of uronic acid and due to some enzyme's production of antioxidants, e.g., superoxide dismutase, glutathione peroxidase, and nicotinamide adenine dinucleotide oxidases and peroxidases. Postbiotics improve intestinal villi, increase lactic acid production, and reduce Enterobacteriaceae and fecal pH, all of which lead to a better immune reaction and health of the gut, as well as better growth performance. P13K/AKT as a potential target pathway for postbiotics-improved intestinal barrier functions. Similarly, postbiotics reduce yolk and plasma cholesterol levels in layers and improve egg quality. It was revealed that favorable outcomes were obtained with various inclusion levels at 1 kg and 0.5 kg. According to several studies, postbiotic compounds significantly increased poultry performance. This review article presents the most recent research investigating the beneficial results of postbiotics in poultry.

Next-generation probiotics, parabiotics 및 postbiotics (Next-generation Probiotics, Parabiotics, and Postbiotics)

  • 조광근;이승호;최인순;이상원
    • 생명과학회지
    • /
    • 제31권6호
    • /
    • pp.595-602
    • /
    • 2021
  • 사람의 장내 미생물은 숙주의 대사 조절에서 중요한 역할을 한다. 장내 미생물 균총의 불균형은 비만, 대사 증후군과 밀접하게 병리학적, 생리학적 상호작용을 한다. A. muciniphila는 최근 인간의 대변에서 분리되었으며, 장내 미생물의 약 1-4%를 차지하는 우점균이다. A. muciniphila 유래 외막(external membran) 단백질 Amuc_1100과 세포외 소포(EVs)의 이용은 비만치료를 위한 새로운 전략이 될 수 있다. A. muciniphila는 비만과 같은 대사 장애치료를 위한 차세대 probiotics로 고려되고 있다. F. prausnitzii는 next-generation probiotic로서 건강한 성인의 경우 장내미생물 균총의 약 5%를 차지하며 성인 장 건강의 지표이다. F. prausnitzii는 butyrate-producing bacterium로서 항염증 효과를 나타내며, 면역 질환과 당뇨병 치료를 위한 next-generation probiotics로 기대된다. Postbiotics는 probiotics에 의해 분비되는 세포 상층액에 포함된 대사산물의 복잡한 혼합물이다. 반면, parabiotics는 probiotics를 불활성화 시킨 미생물 세포이다. Paraprobiotics와 postbiotics는 probiotics에 비해 명확한 화학구조(clear chemical structures)와 안전한 투여 용량(safety dose parameters), 장기간의 유통 기간(longer shelf life) 등 많은 장점을 가지고 있어서 probiotics를 대체할 수 있는 잠재력을 가지고 있다. 장 생태계의 불균형을 정상적으로 복원하기 위해서 장내 공생 박테리아(commensal bacteria) 중 next-generation probiotics (NGPs)를 사용하는 것이 가장 자연스런 방법이다. 따라서 next-generation probiotics 를 대상으로 parabiotics와 postbiotics와 같은 새로운 식품이나 약품으로 개발하는 것이 필요하다.

모유 올리고당과 분유첨가 Prebiotic 올리고당의 관한 고찰 (Human Milk Oligosaccharides and Prebiotic Oligosaccharides in Infant Formula)

  • 정장호
    • 한국미생물·생명공학회지
    • /
    • 제38권1호
    • /
    • pp.1-6
    • /
    • 2010
  • Human milk is frequently the only food source for a newborn during the initial stage of life after birth. Milk provides not only the nutrients necessary for the infant's growth, but also ingredients that may enable the infant to thrive. Human milk oligosaccharides (HMO) are considered to be these beneficial ingredients for the health of infant. It has been reported that around 5 to 10 g unbound oligosaccharides and around 20 to over 130 different HMO are present in 1L of human milk. The suggested health mechanisms of HMO's roles in host defense are 1) blocking bacterial adhesions, 2) binding to a toxin receptor on the extracellular domain, and 3) postbiotic effect resulting from the increase of probiotics such as Bifidobacteria and Lactobacilli. Among the prebiotic oligosaccharides, mixtures of long chain fuetooligosaccharides (10%) and galactooligosaccharides (90%) in infant formula are demonstrated to increase the number of Bifidobacteria and Lactobacilli to the levels seen in human milk fed infants.

Effects of Saccharomyces cerevisiae and phytase co-fermentation of wheat bran on growth, antioxidation, immunity and intestinal morphology in broilers

  • Chuang, Wen-Yang;Lin, Li-Jen;Hsieh, Yun-Chen;Chang, Shen-Chang;Lee, Tzu-Tai
    • Animal Bioscience
    • /
    • 제34권7호
    • /
    • pp.1157-1168
    • /
    • 2021
  • Objective: The aim of this study was to investigate the effects of different amounts of wheat bran (WB) inclusion and postbiotics form by Saccharomyces cerevisiae and phytase co-fermented wheat bran (FWB) on the growth performance and health status of broilers. Methods: Study randomly allocated a total of 300 male broilers to a control and 4 treatment groups (5% WB, 5% FWB, 10% WB, and 10% FWB inclusion, respectively) with each pen having 20 broilers and 3 pens per treatment. Results: The WB does not contain enzymes, but there are 152.8, 549.2, 289.5, and 147.1 U/g dry matter xylanase, protease, cellulase and β-glucanase in FWB, respectively. Furthermore, FWB can decrease nitric oxide release of lipopolysaccharide stimulated chicken peripheral blood mononuclear cells by about two times. Results show that 10% FWB inclusion had significantly the highest weight gain (WG) at 1 to 21 d; 5% FWB had the lowest feed conversion rate at 22 to 35 d; 10% WB and 10% FWB inclusion have the highest villus height and Lactobacillus spp. number in caecum; and both 5% and 10% FWB can increase ash content in femurs. Compared to control group, all treatments increase mucin 2, and tight junction (TJ), such as occludin, claudin-1, zonula occludens-1, and mRNA expression in ileum by at least 5 folds. In chicken peripheral blood mononuclear cells, nicotinamide adenine dinucleotide phosphate-oxidase-1 mRNA expression decreases from 2 to 5 times, and glutamate-cysteine ligase catalytic subunit mRNA expression also increases in all treatment groups compared to control group. The mRNA expression of pro-inflammatory cytokines, including interleukin-6 (IL-6), nuclear factor-κB, and IL-1β, decreases in 5% and 10% FWB groups compared to control group. Conclusion: To summarize, both WB and FWB inclusion in broilers diets increase TJ mRNA expression and anti-oxidation and anti-inflammation, but up to 10% FWB groups have better WG in different stages of broiler development.

상황버섯(Phellinus linteus) 균사체 액체발효물의 항염증 활성 (Anti-Inflammatory Activity of Liquid Fermentation by Phellinus linteus Mycelium)

  • 신현영;김훈;정은진;김현경;손승우;서민근;김나리;서형주;유광원
    • 한국식품영양학회지
    • /
    • 제34권5호
    • /
    • pp.487-497
    • /
    • 2021
  • To investigate the industrial availability of liquid fermentation (PL-ferment) by Phellinus linteus mycelium as a postbiotics for the inhibition of inflammation, PL-ferment was fractionated into culture supernatant (CS), hot-water extract (HW) from PL-ferment, EtOH-precipitate (CP) fractionated from HW, and the dialysate (DCP) of CP. Compared to the other fractions, DCP which is expected to contain exopolysaccharide (EPS) as the major component, significantly decreased the production of NO, IL-6, and MCP-1 in LPS-induced RAW 264.7 cells, and IL-6 and IL-8 in TNF-α and IFN-γ-induced HaCaT cells. The general component analysis results showed that no significant difference in components was observed between the fractions, whereas sugar composition analysis revealed that DCP had decreased glucose and increased mannose contents compared to the other fractions. This suggests that mannose played an important role in the anti-inflammatory activity of the active fraction, DCP. Molecular weight distribution analysis revealed that DCP was mainly composed of low-molecular-weight material-removed high-molecular-weight polysaccharides of 18-638 kDa, suggesting that EPS originated from P. linteus EPS. In conclusion, our results suggest that the DCP of P. linteus mycelium fermentation using the anti-inflammatory activity could be used industrially as postbiotic material.