Now Reading: THEORETICAL FRAMEWORK

ADVANCING BIOACTIVE PROTECTION, AUTONOMOUS RELEASE, AND GASTROINTESTINAL OPTIMIZATION THROUGH THE THREE-DIMENSIONAL FIBER MATRIX MODEL (3D-MATRIX) AT POWDER HOUSE

ADVANCING BIOACTIVE PROTECTION, AUTONOMOUS RELEASE, AND GASTROINTESTINAL OPTIMIZATION THROUGH THE THREE-DIMENSIONAL FIBER MATRIX MODEL (3D-MATRIX) AT POWDER HOUSE

POWDER HOUSE’s Three-Dimensional Fiber Matrix Model (3D-MATRIX) offers a transformative framework for understanding ultrafine particle behavior within the gastrointestinal environment. By integrating insoluble, soluble, and antioxidant fibers into a structural matrix embedded with polyphenols, biogrape™ enables self-microencapsulation, enhanced bioactive stability, and spatially optimized release—setting new standards for autonomous nutrient delivery, bioavailability, and functional ingredient performance

The 3D-MATRIX model reveals how pre-gastric treatment enables dynamic physicochemical adaptation to digestive phases. Protective layers self-assemble upon gastric contact, ensuring bioactive preservation and orchestrating localized, gradual polyphenol release. Through this autonomous gastrointestinal interaction, POWDER HOUSE establishes a new paradigm in bioactive stabilization science—where precision engineering, natural adaptation, and systemic bioefficacy converge seamlessly

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REDEFINING BIOACTIVE ENCAPSULATION THROUGH NATURAL SELF-MICROENCAPSULATION, ELIMINATING SYNTHETIC CARRIERS, CHEMICAL ADDITIVES, AND BIOSAFETY VULNERABILITIES WITH BIOGRAPE™

REDEFINING BIOACTIVE ENCAPSULATION THROUGH NATURAL SELF-MICROENCAPSULATION, ELIMINATING SYNTHETIC CARRIERS, CHEMICAL ADDITIVES, AND BIOSAFETY VULNERABILITIES WITH BIOGRAPE™

Traditional solvent-extracted bioactives require artificial encapsulation to survive gastric degradation—relying on lipid, polysaccharide, or protein matrices that increase production costs, complexity, and biosafety risks. In contrast, biogrape™ leverages intrinsic fiber structures to enable spontaneous self-microencapsulation upon gastric contact, forming autonomous protective layers that preserve polyphenol integrity, optimize bioactive release, and enhance systemic bioavailability—without chemicals, artificial additives, or direct biomaterial manipulation

Through physical-mechanical engineering, biogrape™ transforms fruit pomace particles into intelligent delivery systems that dynamically adapt across gastrointestinal conditions. Soluble and insoluble fibers self-organize into responsive protective matrices, shielding bioactives during gastric transit and enabling targeted release in the small intestine. This self-regulating preservation system sets a new benchmark in clean-label functional ingredient innovation, combining scientific precision, sustainable design, and superior bioefficacy

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