Yeast & Toxin Binder

Mol-Bond

Mol-Bond is an advanced, synergistic toxin binder designed for comprehensive mycotoxin risk management. It combines Mannanoligosaccharides (MOS), Modified Bentonite, and Glucose Oxidase to deliver a unique triple-mode of action: biological adsorption, physical adsorption, and enzymatic biotransformation.


How It Works:

(1) Dual Adsorption: Purified Mannanoligosaccharides (MOS) (biological) and Modified Bentonite (physical) work together to effectively bind a broad spectrum of mycotoxins, including aflatoxins, zearalenone, and DON.

(2) Enzymatic Action: Incorporated Glucose Oxidase (GOD) catalyzes reactions that consume oxygen and produce gluconic acid, creating an unfavorable environment for mold growth and aiding in the biotransformation of certain mycotoxins.

(3) Synergistic Defense: This integrated approach offers more complete protection by not only binding toxins but also actively helping to mitigate their production and effects.


Product Characteristics:

(1) Broad-Spectrum & Multi-Mode: Targets mycotoxins through multiple, complementary mechanisms for enhanced efficacy.

(2) Enhanced Liver Support: The combined action reduces the overall toxic burden on the liver, providing superior hepatoprotective benefits.

(3) Process-Stable Formula: Components are selected and processed to maintain stability during feed pelleting and storage.

(4) Safe & Easy to Use: A free-flowing powder for precise, uniform inclusion in all feed types.


Key Benefits for Feed & Animals:

(1) Superior Mycotoxin Control: Reduces bioavailability and negative impact of mycotoxins on health and performance more effectively than conventional binders.

(2) Promotes Liver Health & Function: Directly supports hepatic protection by mitigating toxins and reducing oxidative stress.

(3) Supports Gut Integrity: Helps preserve intestinal barrier function and a healthy microbiome.

(4) Safeguards Productivity: Protects investment by helping to maintain optimal growth, feed efficiency, and overall animal vitality.