179
Views
0
CrossRef citations to date
0
Altmetric
Ruminants Nutrition and Feeding

Microencapsulation efficiency of fruit peel phytonutrient-based antimicrobial to mitigate rumen emission using in vitro fermentation technique

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon show all
Pages 664-677 | Received 27 Nov 2023, Accepted 27 Mar 2024, Published online: 14 May 2024

References

  • Ahmed E, Fukuma N, Hanada M, Nishida T. 2021. The efficacy of plant-based bioactives supplementation to different proportion of concentrate diets on methane production and rumen fermentation characteristics in vitro. Animals (Basel). 11(4):1029. doi:10.3390/ani11041029.
  • Al-Duais M, Müller L, Böhm V, Jetschke G. 2009. Antioxidant capacity and total phenolics of Cyphostemma digitatum before and after processing: use of different assays. Eur Food Res Technol 228: 813–821. doi: 10.1007/s00217-008-0994-8
  • Amin N, Tagliapietra F, Arango S, Guzzo N, Bailoni L. 2021. Free and microencapsulated essential oils incubated in vitro: ruminal stability and fermentation parameters. Animals (Basel). 11(1):180. doi:10.3390/ani11010180.
  • Ampapon T, Phesatcha K, Wanapat M. 2019. Effect of phytonutrients on ruminal fermentation, digestibility, and microorganisms in swamp buffaloes. Animals. 9(9):671. doi:10.3390/ani9090671.
  • Aschenbach JR, Bilk S, Tadesse G. 2009. Bicarbonate- dependent and bicarbonate-independent mechanisms contribute to non-diffusive apical uptake of acetate in the ruminal epithelium of sheep. Am J Physiol Gastrointest Liver Physiol. 296:1098–1107. doi:10.1152/ajpgi.90442.2008.
  • Bah MG, Bilal HM, Wang J. 2020. Fabrication and application of complex microcapsules: a review. Soft Matter. 16(3):570–590. doi:10.1039/C9SM01634A.
  • Becker PM, van Wikselaar PG, Franssen MC, de Vos RC, Hall RD, Beekwilder J. 2014. Evidence for a hydrogen-sink mechanism of (+) catechin-mediated emission reduction of the ruminant greenhouse gas methane. Metabolomics. 10(2):179–189. doi:10.1007/s11306-013-0554-5.
  • Benzie IF, Strain JJ. 1996. The ferric reducing ability of plasma (FRAP) as a measure of “antioxidant power”: the FRAP assay. Anal Biochem. 239: 70–6. doi:10.1006/abio.1996.0292.
  • Bhatta R, Uyeno Y, Tajima K, Takenaka A, Yabumoto Y, Nonaka I, Enishi O, Kurihara M. 2009. Difference in the nature of tannins on in vitro ruminal methane and volatile fatty acid production and on methanogenic archaea and protozoal populations. J Dairy Sci. 92(11):5512–5522. doi:10.3168/jds.2008-1441.
  • Carulla JE, Kreuzer M, Machmüller A, Hess HD. 2005. Supplementation of Acacia mearnsii tannins decreases methanogenesis and urinary nitrogen in forage-fed sheep. Aust J Agric Res. 56(9):961–970. doi:10.1071/AR05022.
  • Cherdthong A, Prachumchai R, Wanapat M. 2019. In vitro evaluations of pellets containing Delonix regia seed meal for ruminants. Trop Anim Health Prod. 51(7):2003–2010. doi:10.1007/s11250-019-01903-4.
  • Díaz Carrasco JM, Cabral C, Redondo LM, Pin Viso ND, Colombatto D, Farber MD, Fernandez Miyakawa ME. 2017. Impact of chestnut and quebracho tannins on rumen microbiota of bovines. BioMed Res Int. 2017:11. doi:10.1155/2017/9610810.
  • Fernando SC, Purvis HT, Najar FZ, Sukharnikov LO, Krehbiel CR, Nagaraja TG, Roe BA, Desilva U. 2010. Rumen microbial population dynamics during adaptation to a high-grain diet. Appl Environ Microbiol. 76(22):7482–7490. doi:10.1128/AEM.00388-10.
  • Foiklang S, Wanapat M, Norrapoke T. 2016. In vitro rumen fermentation and digestibility of buffaloes as influenced by grape pomace powder and urea treated rice straw supplementation. Anim Sci J. 87(3):370–377. doi:10.1111/asj.12428.
  • Gali L, Bedjou F. 2019. Antioxidant and anticholinesterase effects of the ethanol extract, ethanol extract fractions and total alkaloids from the cultivated Ruta chalepensis. S Afr J Bot. 120: 163–169. doi: 10.1016/j.sajb.2018.04.011
  • Gunun P, Gunun N, Cherdthong A, Wanapat M, Polyorach S, Sirilaophaisan S, Wachirapakorn C, Kang S. 2018. In vitro rumen fermentation and methane production as affected by rambutan peel powder. J Appl Anim Res. 46(1):626–631. doi:10.1080/09712119.2017.1371608.
  • Gunun P, Wanapat M, Gunun N, Cherdthong A, Sirilaophaisan S, Kaewwongsa W. 2016. Effects of condensed tannins in mao (Antidesma thwaitesianum Muell. Arg.) seed meal on rumen fermentation characteristics and nitrogen utilization in goats. Asian-Australas J Anim Sci. 29(8):1111–1119. doi:10.5713/ajas.15.0552.
  • Honan M, Feng X, Tricarico JM, Kebreab E. 2021. Feed additives as a strategic approach to reduce enteric methane production in cattle: modes of action, effectiveness and safety. Anim Prod Sci. 62(14):1303–1317. doi:10.1071/AN20295.
  • Ibrahim SL, Hassen A. 2021. Characterization, density and in vitro controlled release properties of mimosa (Acacia mearnsii) tannin encapsulated in palm and sunflower oils. Animals (Basel). 11(10):2919. doi:10.3390/ani11102919.
  • Júnior RC, Capucho E, Garcia TM, Del Valle TA, Campana M, Zilio EM, Azevedo B, Morais JP. 2020. Lemongrass essential oil in sugarcane silage: fermentative profile, losses, chemical composition, and aerobic stability. Anim Feed Sci Technol. 260:114371. doi:10.1016/j.anifeedsci.2019.114371.
  • Kang S, Wanapat M, Viennasay B. 2016. Supplementation of banana flower powder pellet and plant oil sources on in vitro ruminal fermentation, digestibility, and methane production. Trop Anim Health Prod. 48(8):1673–1678. doi:10.1007/s11250-016-1142-2.
  • Kim TB, Lee JS, Cho SY, Lee HG. 2020. In vitro and in vivo studies of rumen-protected microencapsulated supplement comprising linseed oil, vitamin E, Rosemary extract, and hydrogenated palm oil on rumen fermentation, physiological profile, milk yield, and milk composition in dairy cows. Animals (Basel). 10(9):1631. doi:10.3390/ani10091631.
  • Koike S, Kobayashi Y. 2001. Development and use of competitive PCR assays for the rumen cellulolytic bacteria: fibrobacter succinogenes, Ruminococcus albus and Ruminococcus flavefaciens. FEMS Microbiol Lett. 204(2):361–366. doi:10.1111/J.1574-6968.2001.TB10911.X.
  • Ku-Vera JC, Jiménez-Ocampo R, Valencia-Salazar SS, Montoya-Flores MD, Molina-Botero IC, Arango J, Gómez-Bravo CA, Aguilar-Pérez1 CF, Solorio-Sánchez FJ. 2020. Role of secondary plant metabolites on enteric methane mitigation in ruminants. Front Vet Sci. 7:584. doi:10.3389/fvets.2020.00584.
  • Lee C, Kim J, Shin SG, Hwang S. 2006. Absolute and relative QPCR quantification of plasmid copy number in Escherichia coli. J Biotechnol. 123(3):273–280. doi:10.1016/J.JBIOTEC.2005.11.014.
  • Matra M, Phupaboon S, Totakul P, Prommachart R, Shah AA, Shah AM, Wanapat M. 2024. Microencapsulation of Mitragyna leaf extracts to be used as a bioactive compound source to enhance in vitro fermentation characteristics and microbial dynamics. Anim Biosci. 37(1):74–83. doi:10.5713/ab.23.0200.
  • Matra M, Totakul P, Wanapat M. 2021. Utilization of dragon fruit waste by-products and non-protein nitrogen source: effects on in vitro rumen fermentation, nutrients degradability and methane production. Livest Sci. 243:104386. doi:10.1016/j.livsci.2020.104386.
  • Menke KH, Steingass H. 1988. Estimation of the energetic feed value obtained from chemical analysis and gas production using rumen fluid. Anim Res Dev. 28:7–55.
  • Ørskov ER, McDonald I. 1979. The estimation of protein degradability in the rumen from incubation measurements weighted according to rate of passage. J Agric Sci. 92(2):499–503. doi:10.1017/S0021859600063048.
  • Ouwerkerk D, Klieve AV, Forster RJ. 2002. Enumeration of Megasphaera elsdenii in rumen contents by real-time Taq nuclease assay. J Appl Microbiol. 92(4):753–758. doi:10.1046/j.1365-2672.2002.01580.x.
  • Pal K, Patra AK, Sahoo A. 2015. Evaluation of feeds from tropical origin for in vitro methane production potential and rumen fermentation in vitro. Span J Agric Res. 13(3):e0608. doi:10.5424/sjar/2015133-7467.
  • Paul K, Nonoh JO, Mikulski L, Brune A. 2012. Methanoplasmatales, Thermoplasmatales-related archaea in termite guts and other environments: are the seventh order of methanogens. Appl Environ Microbiol. 78(23):8245–8253. doi:10.1128/AEM.02193-12.
  • Phesatcha K, Phesatcha B, Wanapat M, Cherdthong A. 2020. Roughage to concentrate ratio and Saccharomyces cerevisiae inclusion could modulate feed digestion and in vitro ruminal fermentation. Vet Sci. 7(4):151. doi:10.3390/vetsci7040151.
  • Phupaboon S, Hashim FJ, Phumkhachorn P, Rattanachaikunsopon P. 2023. Molecular and biotechnological characteristics of proteolytic activity from Streptococcus thermophilus as a proteolytic lactic acid bacterium to enhance protein-derived bioactive peptides. AIMS Microbiol. 9(4):591–611. doi:10.3934/microbiol.2023031.
  • Phupaboon S, Matra M, Prommachart R, Totakul P, Supapong C, Wanapat M. 2022a. Extraction, characterization, and chitosan microencapsulation of bioactive compounds from Cannabis sativa L., Cannabis indica L., and Mitragyna speiosa K. Antioxidants (Basel). 11(11):2103. doi:10.3390/antiox11112103.
  • Phupaboon S, Punyauppa-Path S, Kontongdee P, Piyatheerawong W, Yunchalard S. 2022b. Development and enhancement of antioxidant peptides from spontaneous plaa-som fermentation co-stimulated with Chiangrai Phulae pineapple enzymatic reaction. Int Food Res J. 29(2):406–415. doi:10.47836/ifrj.29.2.18.
  • Polyorach S, Wanapat M, Cherdthong A, Kang S. 2016. Rumen microorganisms, methane production, and microbial protein synthesis affected by mangosteen peel powder supplement in lactating dairy cows. Trop Anim Health Prod. 48(3):593–601. doi:10.1007/s11250-016-1004-y.
  • Poungchompu O, Wanapat M, Wachirapakorn C, Wanapat S, Cherdthong A. 2009. Manipulation of ruminal fermentation and methane production by dietary saponins and tannins from mangosteen peel and soapberry fruit. Arch Anim Nutr. 63(5):389–400. doi:10.1080/17450390903020406.
  • Re R, Pellegrini N, Proteggente A, Pannala A, Yang M, Rice-Evans C. 1999. Antioxidant activity applying an improved ABT S radical cation decolorization assay. Free Radic Biol Med. 26: 1231–1237. doi: 10.1016/S0891-5849(98)00315-3
  • SAS. 2013. User's guide: statistic, Version 9. 4th Edition. Cary (NC): SAS Inst. Inc.
  • Thiex N, Novotny L, Crawford A. 2012. Determination of ash in animal feed: AOAC official method 942.05 revisited. J AOAC Int. 95(5):1392–1397. doi:10.5740/JAOACINT.12-129.
  • Van Soest PJ. 1994. Nutritional ecology of the ruminant. Ithaca (NY): Cornell University Press.
  • Vázquez-Carrillo MF, Montelongo-Pérez HD, González-Ronquillo M, Castillo-Gallegos E, Castelán-Ortega OA. 2020. Effects of three herbs on methane emissions from beef cattle. Animals (Basel). 10(9):1671. doi:10.3390/ani10091671.
  • Wanapat M, Chanthakhoun V, Phesatcha K, Kang S. 2014. Influence of mangosteen peel powder as a source of plant secondary compounds on rumen microorganisms, volatile fatty acids, methane and microbial protein synthesis in swamp buffaloes. Livest Sci. 162:126–133. doi:10.1016/j.livsci.2014.01.025.
  • Wanapat M, Cherdthong A, Pakdee P, Wanapat S. 2008. Manipulation of rumen ecology by dietary lemongrass (Cymbopogon citratus Stapf.) powder supplementation. J Anim Sci. 86(12):3497–3503. doi:10.2527/jas.2008-0885.
  • Wanapat M, Kang S, Polyorach S. 2013. Development of feeding systems and strategies of supplementation to enhance rumen fermentation and ruminant production in the tropics. J Animal Sci Biotechnol. 4(1):1–11. doi:10.1186/2049-1891-4-32.
  • Wanapat M, Pimpa O. 1999. Effect of ruminal NH3-N levels on ruminal fermentation, purine derivatives, digestibility and rice straw intake in swamp buffaloes. Asian Australas J Anim Sci. 12(6):904–907. doi:10.5713/ajas.1999.904.
  • Wanapat M. 2000. Rumen manipulation to increase the efficient use of local feed resources and productivity of ruminants in the tropics. Asian-Australas J Anim Sci. 13:59–67.
  • Wei W, Zhen Y, Wang Y, Shahzad K, Wang M. 2022. Advances of rumen functional bacteria and the application of micro-encapsulation fermentation technology in ruminants: a review. Fermentation. 8(10):564. doi:10.3390/fermentation8100564.
  • Whelan JA, Russell NB, Whelan MA. 2003. A method for the absolute quantification of cDNA using real-time PCR. J Immunol Methods. 278(1–2):261–269. doi:10.1016/S0022-1759(03)00223-0.
  • Yoshimaru T, Shibata M, Fukugomori T, Matsumoto K. 1999. Preparation and characteristics of rumen-bypass microcapsules for improvement of productivity in ruminants. J Agric Food Chem. 47(2):554–557. doi:10.1021/jf980708l.
  • Yu Y, Lee C, Kim J, Hwang S. 2005. Group-specific primer and probe sets to detect methanogenic communities using quantitative real-time polymerase chain reaction. Biotechnol Bioeng. 89(6):670–679. doi:10.1002/bit.20347.
  • Yücel Ç, Karatoprak GŞ. 2022. Chapter 3: Nanotechnology and phytonutrients. In: Haroon K, Esra A, Maria D, ediotors. The role of phytonutrients in metabolic disorders. 1st ed. Headquarters: Academic Press; p. 67–102. doi:10.1016/B978-0-12-824356-5.00008-4.