Q-Vitalis PQNS Magnesium | Cellular Balance & Energy | Crassula
QuanticSphere™ Phytosome Quantum Nano Sphere

Q-Vitalis
PQNS Magnesium
Cellular Energy

Advanced PQNS nanotechnology delivering magnesium directly to cells — enhancing energy, nerve function, and muscle performance with 3.7× higher cellular retention.

“Cellular balance. Neurological vitality. Sustained energy.”

Q-Vitalis PQNS Magnesium — cellular energy and vitality
Higher Cellular
Retention vs Standard
300+
Biochemical Reactions
Requiring Magnesium
0
GI Side Effects —
Excellent Tolerance
1
Daily Dose
Sustained Release

Low Magnesium Silently Affects
5 Body Systems

Despite its crucial role in over 300 biochemical reactions, magnesium intake from food remains insufficient for most people. Deficiency impacts energy metabolism, nerve transmission, muscle contraction, and bone strength.

Neurological
Headaches, poor focus, anxiety, insomnia
Muscular
Cramps, spasms, weakness, reduced endurance
Cardiovascular
Arrhythmia, hypertension, low energy output
Skeletal
Bone loss, fragility, impaired calcium metabolism
Metabolic
Insulin resistance, chronic fatigue, poor stress recovery
By restoring intracellular magnesium, Q-Vitalis PQNS helps rebalance nerve, muscle, and energy function — supporting total metabolic harmony and vitality.
Low retention at cellular level — most of the dose never reaches intracellular targets
Unstable plasma concentrations — rapid irregular absorption leads to inconsistent results
Poor bioavailability & GI issues — high doses cause diarrhea and stomach irritation
PQNS magnesium nanotechnology — human body cellular delivery

Mg²⁺ Encapsulated in Cationic Phospholipid Vesicles

Q-Vitalis applies Phytosome Quantum Nano Sphere (PQNS) nanotechnology to transform magnesium delivery. By encapsulating Mg²⁺ in cationic phospholipid vesicles, absorption increases 3.7× over magnesium ascorbate, with dramatically fewer side effects.

Enhanced Solubility & Membrane Transport
Nanospheric size and phospholipid composition allow Mg²⁺ to cross biological barriers without irritation or degradation.
Better Tolerance, Sustained Release
Controlled intracellular release stores magnesium within epithelial and bone cells for sustained metabolic support.
Minimal GI Irritation
PQNS vesicles mimic biological membranes — protecting magnesium from gastric acidity while minimizing bowel side effects.
PQNS Magnesium demonstrates 3.7× higher cellular retention, confirming its superior efficiency and stability compared to conventional magnesium salts.

Hep2 Cell Study —
3.7× Higher Absorption

In vitro study using human epithelial Hep2 cells confirms PQNS Magnesium’s superior bioavailability and intracellular retention compared to conventional magnesium forms.

Cell Model
Human epithelial Hep2 cells
Doses
200 ppm and 500 ppm
Duration
6 hours at 37°C, 5% CO₂
Quantification
Intracellular Mg²⁺ via ICP-MS
3.7×
Higher absorption vs standard magnesium ascorbate
Stable intracellular retention · Reduced extracellular residue
Magnesium-rich foods — almonds spinach avocado banana

Cellular Absorption Results —
Hep2 Human Epithelial Cells

All formulations tested in quadruplicate (n=4) at 37°C. Data normalized per milligram of cellular protein. Intracellular iron content quantified using ICP-MS.

FormulationMean Absorption (µg/mg protein)SDReplicates
Mg Ascorbate (500 PPM)1.10.754
Mg Sulphate (500 PPM)1.20.574
Mg Ascorbate (200 PPM)0.50.654
Mg Sulphate (200 PPM)0.60.714
Mg Ascorbate PQNS (500 PPM)3.91.174
PQNS nanotechnology enhances the solubility, membrane permeability, and controlled release of magnesium, resulting in superior cellular uptake and reduced gastrointestinal irritation. The study validates the efficacy and safety of PQNS Magnesium as a next-generation mineral delivery system.
PQNS mechanism — laboratory nanoparticle cellular delivery

3-Stage Cellular
Delivery Mechanism

PQNS technology encapsulates Mg²⁺ within cationic nanovesicles, enabling efficient absorption through both intestinal and cellular pathways — ensuring complete delivery, controlled release, and long-term retention.

01
Intestinal Uptake
PQNS magnesium absorbs via both transcellular (through epithelial cells) and paracellular (between tight junctions) routes — without irritation or degradation.
02
Molecular Transport
PQNS vesicles composed of polar and nonpolar phospholipid regions encapsulate Mg²⁺, protecting from oxidation and gastric acidity — mimicking biological membranes.
03
Cellular Entry & Retention
Magnesium enters cells via TRPM6 and TRPM7 ion channels. PQNS vesicles ensure controlled intracellular release for sustained metabolic support.
PQNS nanominerals maintain steady magnesium levels in tissues while minimizing urinary and fecal excretion — significantly reducing the required Mg amount compared to conventional forms.
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What Q-Vitalis
Supports

By restoring intracellular magnesium to optimal levels, Q-Vitalis provides comprehensive support across four critical physiological systems.

Energy Production & Mitochondrial Metabolism
Magnesium is essential for ATP synthesis — the universal energy currency of every cell in the body.
Muscle Function & Relaxation
Regulates muscle contraction and relaxation cycles — preventing cramps, spasms, and reducing fatigue.
Nerve Impulse Transmission
Supports proper neurotransmission, reducing anxiety, headaches, poor focus, and insomnia related to deficiency.
Bone Mineralization & Strength
Vital cofactor for calcium metabolism — maintaining bone density, reducing fragility and preventing osteoporotic changes.
“Rebalance your energy — from every cell outward.”

Q-Vitalis PQNS vs
Conventional Magnesium

AttributePQNS MagnesiumConventional
Absorption3.7× HigherLimited
GI ToleranceExcellentVariable
Dose RequiredLowerHigh
Release ProfileControlledRapid / irregular
Intracellular Absorption — Mean (µg/mg protein)

Cellular Harmony
Through Advanced Science

Magnesium is life’s quiet catalyst — and PQNS technology ensures it reaches where it matters most. With ~4× absorption, superior tolerance, and nanostructured precision, Q-Vitalis represents the future of mineral supplementation.

Contact the Medical Team