The Original Multi-Carbohydrase

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The Original Multi-Carbohydrase

What are Enzymes?» Enzymes are biologically active proteins and when faced with the proper target substrate, significantly speed up their breakdown.» Their end goal is to break-down molecules into smaller pieces that are more easily absorbed within the gastrointestinal tract.» Enzyme supplements in commercial livestock feed are typically one single bacterial or fungal strain fermented to create a single enzyme fermentation product. What is Multi-Carbohydrase Technology? Multi-Carbohydrase technology is more effective in the breakdown of complex target substrates. Superior efficacy is derived from multiple activities from multiple strains expressing a broad range of activities. Competitors» Multiple bacterial or fungal strains expressing multi-profiled fermentation products.» These fermentation products will have a primary activity in addition to multiple side activities.» Multi-Carbohydrase technology essentially broadens the available tools when looking to destroy target substrates.

Enzyme Development Platform EDP5 Process Enzyme Development Platform is CBS proprietary evaluation process to identify the most effective activity combination to break down both common feedstuffs and complex by-products. 5 Enzyme Development Platform FIVE 2 1 Ingredient Evaluation» Common feedstuffs & by-products are collected from the field» CBS performs ongoing ingredient surveys which keep our database up-to-date Identify Target Substrates 5» Full chemical composition analysis of sample ingredients» Full nutritive profile reports generated and analyzed 1 2 3 4 3 4 5 In Vitro Evaluation» Lab scale hydrolysis of ingredient samples» ph and temperature carefully controlled to mimic the environment of the digestive system» Hydrolysis done using library of Multi-Carbohydrase and other available activities In Vivo Evaluation» Research farms and small scale animal production facilities are used to evaluate the enzyme activities identified in our In Vitro work» What works In Vitro doesn t necessarily work In Vivo making this step crucial Final Product Development Final product formulation is complete and the product is market ready.

Swine Trial Data Improving Starter Pig Performance

Newly weaned pigs have limited digestive capacity which impedes early growth performance and overall health. Applying Multi-Carbohydrase technology to young pig diets has been shown to improve digestive function leading to increased body weight gain and feed efficiency and superior intestinal health. Nursery Pigs fed CBS Enzymes Growth Performance of nursery pigs supplemented with Superzyme 432.2 Item Control Superzyme % Improvement ADFI, g/d 432.20 413.60-4.5% 413.6 ADG, g/d 223.6 a 249.1 b + 11% FCR 1.93 a 1.64 b + 15% 249.1 233.6 Nutrient Digestibilities of nursery pigs supplemented with Superzyme 1.93 1.64 grams / day grams / day FCR Item Control Superzyme % Improvement Dry Matter 60.1 a 66.7 b + 11.0% Average Daily Feed Intake Average Daily Gain Feed Conversion Ratio Starch 86.7 a 95.7 b + 10.3% Gross Energy 62.8 a 71.4 b + 13.6% Crude Protein 62.1 a 73.2 b + 17.8% Control Superzyme Source: Omogbenigun et al.; JAS Phytate 59.2 a 69.7 b + 17.7% NSP 10.1 a 21.4 b + 112%

Poultry Trial Data Broiler Chickens fed Corn-Soy Diets

Corn-Soy diets are the most popular feed ration globally. Due to the highly digestible nature of Corn-Soy diets, the successful application of exogenous enzymes has been challenging and published results have been inconsistent. This study shows how growth performance and nutrient digestibility can be improved through the use of Multi-Carbohydrase technology present in Superzyme when broiler chickens are fed Corn-Soy diets. Growth Performance Day 1-21 Nutrient Digestibility Day 1-21 830 Item Control Superzyme SEM P-Value Ileal Starch, % 92.4 95.2 0.33 0.028 Total Tract NSP, % 10.1 29.3 1.41 <0.001 808 AMEn, kcal/kg 2,972 3,070 12.72 <0.001 Source: Kaczmarek et al.; PS 1.27 1.23 grams / bird FCR Scan here for our latest technical summary Body Weight Gain Feed Conversion Ratio Control Superzyme

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