Victoria V Grechkina, Sergey А Medvedev, Svyatoslav V Lebedev, Elena V Sheyda, Irina V Markova
DOI: 10.33284/2658-3135-104-3-104
UDC 636.085.57:636.085.25
Acknowledgements:
The research was carried out with the financial support of the Russian Scientific Foundation "Development of systemic diagnostics and correction of elementoses depending on the genetic resources of agricultural animals" (No. 21-16-00009)
The effect of chemical treatment on increasing the nutritional value of cocoa husks
in "in vitro" model
Victoria V Grechkina1,2, Sergey А Medvedev1, Svyatoslav V Lebedev1, Elena V Sheyda1,3, Irina V Markova1
1Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences (Orenburg, Russia)
2Orenburg State Agrarian University (Orenburg, Russia)
3Orenburg State University (Orenburg, Russia)
Abstract. Cocoa husk is a rich source of dietary fiber and protein, as well as valuable biologically active compounds (theobromine, caffeine, flavonoids, etc.), and due to its composition can be used as an energy source in feeding farm animals and poultry. In order to increase the nutritional value of cocoa husk, various methods of chemical processing were tested in the experiment. Treatment with alkali (sodium hydroxide, NaOH) and extrusion of cocoa husks contributed to an increase in the digestibility of raw fat from 13.98% in the husk to 43.55% (P≤0,05), the degree of availability of minerals contained in the product increased, which was expressed in an increase in the digestibility of the ash residue from 14.42 to 21.87% (P≤0,05). Treatment with alkali of various concentrations of cocoa shell led to partial destruction of the hard surfaces of the husk, increased protein availability and its digestibility from 16.62% in the initial sample to 57.92% in the subjects, while the effect of the introduced alkali in the amount of 45 g/kg and 60 g/kg was almost identical. Due to its nutritional value and biologically active compounds, cocoa shell can become a source of cheap energy for raising farm animals and poultry.
Keywords: feed, metabolizable energy, proteins, digestibility, waste.
References
- Antipova LV, Morkovkina IA, Popov VI. Use of dairy and vegetative raw materials as bases for functional drinks. News of Higher Educational Institutions. Food Technology. 2012;2-3(326-327):81-84.
- GOST 13496.4-93 Feed, compound feed, compound feed raw materials. Methods for the determination of nitrogen and crude protein content. Intro. 01.01.1995. Moscow: Standardinform; 1993:17 р.
- GOST 24230-80. Vegetable feeds. Method for determination of digestibility in vitro. Intro. 01.07.1981. Moscow: Standardinform; 2003:4 р.
- GOST 26226-95. Feed, compound feed, compound feed raw materials. Methods for the determination of raw ash. Intro. 01.01.1977. Moscow: PPC Publishing house of standards; 1996:8 p.
- GOST 31675-2012. Feeds. Methods for determination of crude fibre content with intermediate filtration. Intro. 01.07.2013. Moscow: Standardinform; 2014:18 р.
- GOST 13496.15-97. Feed, compound feed, compound feed raw materials. Methods for determination of crude fat content (with Amendment No. 1). Intro. 01.01.1999. Moscow: Standardinform; 1997:19 р.
- Esaulenko IE, Popov VI, Petrovа TN. Hygienic assessment of various forms of organizing school meals. (Conference proceedings) Food security: scientific, personnel and information support: materials of the International conference. scientific and technical conf. (Voronezh, November 13-14, 2014). Voronezh: VGUIT; 2014;2:77-84.
- Miroshnikov SA, Notova SV, Miroshnikov SV, Bolodurina IP, Skalniy AV. Regional features of elemental homeostasis and problem of ecolo physiological adaptation: methodological aspect. Bulletin of Rehabilitation Medicine. 2013;6(58):52-55.
- Skokleenko MV, Kulichenko AI, Mamchenko TV. The use of secondary products of processing of cocoa beans to improve the competitiveness of confectionery products. Young Scientist. 2014;6(65):366-368.
- Fitsev AI, Grigoriev NG, Gaganov AP. Modern assessment of the energy and protein nutritional value of plant feed. Feed Production. 2003;12:29-32.
- Chugunova OV, Kokoreva LA, Zavorokhina NV. Prospects of using cocoa-shell in the production of chocolate syrup. Beer and Drinks. 2014; 6:62-64.
- Okolelova TM, Laptev GYu, Bolshakov VN, Selivanov DG, Mansurov RSh. The effectiveness of provitol in mixed feed for chickens. Poultry. 2014;1:12-14.
- Awad WA, Ghareeb K, Abdel-Raheem S, Böhm J. Effect of dietary inclusion of probiotic and synbiotic on growth performance, organ weights, and intestinal histomorphology of broiler chickens. Poultry Science. 2009;88(1):49-56. doi: https://doi.org/10.3382/ps.2008-00244
- Bakkali F, Averbeck S, Averbeck D, Idaomar M. Biological effects of essential oils – A review. Food Chem. Toxicol. 2008;46(2):446-475. doi: 10.1016/j.fct.2007.09.106
- Caes BR, Teixeira RE, Knapp KG, Raines RT. Biomass to Furanics: Renewable Routes to Chemicals and Fuels. ACS Sustain Chem Eng. 2015;3(11):2591-2605. doi: https://doi.org/10.1021/acssuschemeng.5b00473
- Cheng G, Hao H, Xie S, Wang X, Dai M, Huang L, Yuan Z. Antibiotic alternatives: the substitution of antibiotics in animal husbandry? Frontiers in Microbiology. 2014;5:217. doi: 10.3389/fmicb.2014.00217
- Cowan MM. Plant products as antimicrobial agents. Clinical Microbiology Reviews. 1999;12(4):564-582. doi: https://doi.org/10.1128/cmr.12.4.564
- Delaquis PJ, Stanich K, Girard B, Mazza G. Antimicrobial activity of individual and mixed fractions of dill, cilantro, coriander and eucalyptus essential oils. International Journal of Food Microbiology. 2002;74(1-2):101-109. doi: 10.1016/S0168-1605(01)00734-6
- Gheisar MM, Kim IH. Phytobiotics in poultry and swine nutrition – a review. Ital J Anim. Sci. 2018;17(1):92-99. doi: https://doi.org/10.1080/1828051X.2017.1350120
- Grechkina VV, Lebedev SV, Miroshnikov IS, Ryazanov VA, Sheida EV, Korolev V L. Justification of rational and safe biotechnological methods of using fat additives from vegetable raw materials. IOP: Earth and Environmental Science: International Conference on World Technological Trends in Agribusiness; 2020 4-5 July, Omsk City, Western Siberia, Russian Federation. Bristol, England: IOP Publishing; 2021;624:012160. doi: 10.1088/1755-1315/624/1/012160
- Huang MJ, Huang HQ, Salam N, Xiao M, Duan YQ, Kim CJ, Li QQ, Chen W, Li WJ. Nocardioides intraradicalis sp. nov., isolated from the roots of psammosilene tunicoides W. C. Wu et C. Y. Wu. International Journal of Systematic and Evolutionary Microbiology. 2016;66(10):3841-3847. doi: 10.1099/ijsem.0.001274
- Kang JX, Wan JB, He C. Concise review: regulation of stem cell proliferation and differentiation by essential fatty acids and their metabolites. Stem Cells. 2014;32(5):1092-1098. doi: https://doi.org/10.1002/stem.1620
- Kimball SR, Jefferson LS. Signaling pathways and molecular mechanisms through which branched-chain amino acids mediate translational control of protein synthesis. J. Nutr. 2006;136(1):227S-231S. doi: https://doi.org/10.1093/jn/136.1.227S
- Liu Z, Long W, Frybarg DA, Barret EJ. The regulation of body and skeletal muscle protein metabolism by hormones and amino acids. J. Nutr. 2006;136(1):212S-217S. doi: https://doi.org/10.1093/jn/136.1.212S
- Malesci A, Gaia E, Fioretta A et al. No effect of long-term treatment with pancreatic extract on recurrent abdominal pain in patients with chronic pancreatitis. Scand. J. Gastroenterol. 1995;30(4):392-398. doi: https://doi.org/10.3109/00365529509093296
- Rocha MVP, Rodrigues THS, de Albuquerque TL, Gonçalves LRB, de Macedo GR. Evaluation of dilute acid pretreatment on cashew apple bagasse for ethanol and xylitol production. Chem Eng J. 2014;243:234-243. doi: 10.1016/j.cej.2013.12.099
- Rolfe RD. The role of probiotic cultures in the control of gastrointestinal health. The Journal of Nutrition. 2000;130(2):396S-402S. doi: https://doi.org/10.1093/jn/130.2.396s
- Tang Q. Lipid metabolism and diseases. Sci. Bull. 2016;61(19):1471-1472. doi 10.1007/s11434-016-1174-z
- Upadhaya SD, Kim SJ, Kim IH. Effects of gel-based phytogenic feed supplement on growth performance, nutrient digestibility, blood characteristics and intestinal morphology in weanling pigs. J Appl Anim Res. 2016;44(1):384-389. doi: https://doi.org/10.1080/09712119.2015.1091334
- Wang Y, Gu Q. Effect of probiotic on growth performance and digestive enzyme activity of Arbor Acres broilers. Research in Veterinary Science. 2010;89(2):163-167. doi: 10.1016/j.rvsc.2010.03.009
- Wegener HC. Antibiotics in animal feed and their role in resistance development. Curr Opin Microbiol. 2003;6(5):439-445 doi: https://doi.org/10.1016/j.mib.2003.09.009
- Yadav AS et al. Exploring alternatives to antibiotics as health promoting agents in poultry - a review. Journal of Experimental Biology and Agricultural Sciences. 2016;4(3S):368-383. doi:http://dx.doi.org/10.18006/2016.4(3S).368.383
- Zdunczyk Z, Jankowski J, Kaczmareks S, Juskiewicz J. Determinants and effects of postileal fermentation in broilers and turkeys. Part 1: gut microbiota composition and its modulation by feed additives. World’s Poult. Sci. J. 2015;71(1):37-48. doi: 10.1017/S0043933915000045
- Zhou J, Liu H, Zhou S et al. Adaptor protein APPL1 interacts with EGFR to orchestrate EGF-stimulated signaling. Sci. Bull. 2016;61(19):1504-1512. doi: https://doi.org/10.1007/s11434-016-1157-0
Grechkina Victoria Vladimirovna, Cand. Sci (Biol.), Acting Head of Laboratory for Biological Testing and Expertise, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 460000, Orenburg, Russia, 29, 9 Yanvarya St., Associate Professor, Department of Noncommunicable Animal Diseases, Orenburg State Agrarian University, 460014, Orenburg, Russia, 18 Chelyuskintsev, St., tel.: 8-922-877-14-97, e-mail: Viktoria1985too@mail.ru
Medvedev Sergey Anatolevich, Research Laboratory Assistant, Laboratory for Biological Testing and Expertises, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 460000, Orenburg, Russia, 29, 9 Yanvarya St. tel.: 8-922-551-78-27, e-mail: dis14@yandex.ru
Lebedev Svyatoslav Valerevich, Dr. Sci. (Biol.), Leading Researcher, Laboratory for Biological Testing and Expertises, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 460000, Orenburg, Russia, 29, 9 Yanvarya St., tel.: 8-912-345-87-38, e-mail: lsv74@list.ru
Sheyda Elena Vladimirovna, Cand. Sci (Biol.), Researcher, Laboratory for Biological Testing and Expertises, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 460000, Orenburg, Russia, 29, 9 Yanvarya St.; Senior Researcher, Experimental Biological Clinic, 460018, Orenburg, Russia, Orenburg State University, 13 Pobedy Ave, 8-922-862-64-02, e-mail: elena-shejjda@mail.ru
Markova Irina Viktorovna, Cand. Sci. (Biol.), Researcher Department of Technology of Beef Cattle Breeding and Beef Production, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 460000, Orenburg, Russia, 29, 9 Yanvarya St., 29, tel.: 8-961-047-40-26, e-mail: irinazzz88@yandex.ru
Received: 12 July 2021; Accepted: 13 September 2021; Published: 30 September 2021
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