Development of in vitro rumen model to measure ...€¦ · Development of in vitro rumen model to...
Transcript of Development of in vitro rumen model to measure ...€¦ · Development of in vitro rumen model to...
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Development of in vitro rumen model to measure digestibility of rumen by-pass fat
STSM Croatia – Belgium
Mislav Didara
Third DairyCare Conference Zadar - October 5th and 6th 2015.
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Nutrition Sciences N.V. Ghent (Drongen), Belgium
• Belonging to the NuScience group - that is known in Europe for the production of high quality feed concepts for feed composers.
• Well known for its R&D activities in animal production
• Has its own laboratory, in order to perform bioactivity and (gastrointestinal) simulation assays.
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STSM-Belgium
Brussels
Gent
Nutrition Sciences
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Aim: to build a model for in vitro assessment of rumen by-pass fat coated/encapsulated products digestibility
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Three in vitro steps for fat digestion
Step 1
Rumen fluid
Step 2
Simulated gastric fluid
Step 3
Simulated intestinal fluid
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Nylon bags Pore size 25 µm
Bypass fat products
Shaker 39˚C 95 rpm
Materials and Methods
Soxhlet
Freeze dryer
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Sample Sample weight, g
Pepsin + HCl Freezdry recovery
Coconut oil 0,5 1 h 98,18%
Fractioned palm fatty acids RB
0,5 1 h 99,92%
Rumen bypass fat 0,5 1 h 99,74%
Ca soap 0,5 1 h 96,12%
Step 2: Pepsine 1g/L in 0.0125 M HCl pH 1.9
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Sample recovery step 2 + step 3 with different pancreatin concentrations at pH 7.8 after 24h incubation
0,00%
20,00%
40,00%
60,00%
80,00%
100,00%
120,00%
Coconut oil Fractioned palm fattyacids RB
Rumen bypass fat Ca soap
Recovery with different pancreatin concentrations
Pancreatin Pancreatin Pancreatin
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Sample recovery after step 2 + step 3 with different bile concentrations
• Minimal 1,7 g/L of bile salts
• Amount of bile?
0,00%
20,00%
40,00%
60,00%
80,00%
100,00%
120,00%
Coconut oil Fractioned palm fattyacids RB
Rumen bypass fat Ca soap
Bile concentration Bile concentration Bile concentration
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Sample recovery after step 2 + step 3 with or without Bovine bile
0,00%
20,00%
40,00%
60,00%
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100,00%
120,00%
Coconut oil Fractioned palm fatty acidsRB
Ca soap
Pancreatin 3g/L Bile 10g/L + Pancreatin 3g/L
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Recovery of samples at different time points, Bile supstitute vs. Bovine bile
Phospholipid (lecithin)
Bile salt (taurocholate)
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100,00%
120,00%
Bile supstitute Bile Bile supstitute Bile Bile supstitute Bile
8 h 16 h 24 h
Coconut oil Fractioned palm fatty acids RB Rumen bypass fat Ca soap
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Three in vitro steps for digestion of fat
Step 1 Rumen fluid
Rumen fluid+
Artificial saliva+
Anaerobic conditions
39°C
8h
Step 2 Simulated gastric
fluid
0.0125 M HCl
pH 1.9+
1 g/L Pepsin
39°C
1h
Step 3 Simulated
intestinal fluid
0.5 M phosphate buffer
pH 7.8+
3 g/L Pancreatin+
10 g/L Bovine bile
39°C
24 h
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Step 1 Rumen fluid incubation
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Recovery of various fat products after in vitro digestion with simulated rumen, gastric and intestinal fluid
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20,00%
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100,00%
120,00%
Coconut oil Fractionedpalm fatty acids
RB
Rumen bypassfat
Ca soaps Bypass Se Chol. Cl 10% Chol. Cl 25% Chol. Cl 40%
Step 1 Step 1 + Step 2 + Step 3 8h Step 1 + Step 2 + Step 3 24h
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Product
Rumen phase Gastric + Intestinal phase
in vivo 8h
in vitro 8h
in vivo 8-12h
in vitro Step3 8h
in vitro Step 3 24h
Chol. Cl 10% 89.9 % 92.97% 95.12% 96.05% 85.08%
Chol. Cl 25% 83.1 % 74.23% 53.79% 78.61% 65.63%
Chol. Cl 40% 61.0 % 69.27% 71.2% 68.87% 50.72%
Bypass Se 100.0 % 99.84% 95.07% 96.34% 91.74%
Comparison of various fat products recovery after in vivo and in vitro digestion
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Conclusions
• we have successfully upgraded in vitro model of protein digestion and made it more appropriate for determination of fat digestion.
• this model works well with rumen bypass fat products
• it should be improved if natural feeds rich in fat are to be used
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STSM timespan 6 weeks.
February 27th 2015 January 16th 2015
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Nutrition Sciences N.V. - lab
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• STSM was funded by DairyCare COST Action grant
• Research was funded by Nutrition Sciences N.V.
Thank you for your attention.