Nutritional Composition with Organic Mineral Chelates for Mitochondrial Support
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Solution Overview
Problem
Nutrient deficiencies, particularly in essential minerals and antioxidants, are prevalent due to depleted soils, unbalanced diets, and exposure to toxins, leading to oxidative stress, mitochondrial dysfunction, and various chronic diseases, with current nutritional supplements often being poorly balanced and ineffective in addressing these issues.
Innovation Solution
A novel multi-nutrient preparation combining organic mineral chelates like glycinates, malates, and taurinates with broad-spectrum hemp oil and niacinamide for enhanced absorption and bioavailability, suitable for oral, vaporization, and topical delivery, to support neurological, cardiovascular, and immune system functions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If conventional nutritional supplements are used, then they provide basic nutrient intake, but they are poorly balanced and ineffective in addressing oxidative stress and mitochondrial dysfunction
Solution Approach 1:
The patent applies local quality by providing different forms of nutrients tailored to specific physiological needs. Organic mineral chelates (glycinates, malates, taurinates) are used instead of conventional inorganic salts to enhance absorption and reduce oxidative stress. Specific antioxidants like vitamins C and E, plus alpha-lipoic acid, are included at optimized doses to target mitochondrial dysfunction and oxidative stress pathways specifically, rather than using generic balanced formulations.
Solution Approach 2:
The patent employs composite materials by combining multiple nutrient forms into a synergistic formulation. The composition integrates organic mineral chelates, broad-spectrum hemp oil extract, niacinamide, and specific antioxidants in defined proportions. This composite approach creates enhanced bioavailability and synergistic effects that address both oxidative stress and mitochondrial dysfunction more effectively than individual supplements or conventional balanced formulations.
2Quantity of substance
If mineral supplements are taken to address deficiencies, then nutrient intake increases, but absorption and bioavailability are poor due to mineral interactions and soil depletion
Solution Approach 1:
The patent applies parameter changes by transforming inorganic mineral salts into organic chelate forms (glycinates, malates, taurinates). This chemical parameter change fundamentally alters the absorption characteristics, allowing for better intestinal uptake and reduced interactions between minerals. The organic chelate structure maintains mineral stability while enhancing bioavailability, directly addressing the absorption problems associated with conventional mineral supplements.
Solution Approach 2:
The patent uses organic chelating agents (glycine, malate, taurine) as intermediaries between inorganic minerals and biological systems. These chelating molecules serve as mediators that facilitate mineral absorption by forming stable, soluble complexes that are more readily transported across intestinal membranes and utilized by cells, overcoming the poor bioavailability of direct inorganic mineral supplementation.
3Object-affected harmful factors
If antioxidants are supplemented to reduce oxidative stress, then protective effects are provided, but current formulations do not effectively address mitochondrial dysfunction
Solution Approach 1:
The patent applies segmentation by dividing the antioxidant defense system into multiple targeted components: vitamin C for water-soluble antioxidant protection, vitamin E for lipid-soluble membrane protection, alpha-lipoic acid for mitochondrial-specific antioxidant activity and regenerative capacity, and organic mineral chelates for enzymatic antioxidant support. Each component addresses specific aspects of oxidative stress and mitochondrial dysfunction, creating a segmented but coordinated defense system rather than relying on a single antioxidant supplement.
Data Source
AI summary
The compositions of this disclosure provide broad-spectrum nutrient supplementation to support the health of multiple organ and tissue systems in which mitochondrial function plays a fundamental role. In particular, the formulations promote neuroprotective, cardioprotective, immunosupportive, and anti-aging benefits. Also provided herein are novel, neuroprotective preparations containing a combination of broad- or full-spectrum hemp oil extract combined with niacinamide, a non-flushing form of vitamin B3, and methods of use are described allowing for safe, effective, and convenient use of a neuroprotective, antioxidant preparation for general and clinical use.


