Bioregulator theory and mechanism Khavinson's bioregulator concept: Each organ produces specific regulatory peptides These peptides maintain tissue homeostasis With aging, peptide production declines Supplementing organ-specific peptides restores function Gene regulation is key mechanism How Cartalax works (theory): Enters cartilage cells (chondrocytes) Binds to specific DNA sequences Upregulates cartilage-protective genes Downregulates degradative genes Optimizes cartilage matrix production Gene expression changes: Upregulated (increased): Collagen Type II: Main cartilage structural protein Proteoglycans: Water-holding molecules Aggrecan: Cartilage compressive strength TGF-: Growth factors for cartilage Chondrocyte proliferation genes Downregulated (decreased): Matrix Metalloproteinases (MMPs): Cartilage-degrading enzymes Inflammatory cytokines: IL-1, TNF- Apoptosis genes: Prevents cartilage cell death Oxidative stress markers Mechanism comparison: Why bioregulation different: Works at DNA/gene level (root cause) Tissue-specific (only cartilage affected) Long-lasting effects (genes stay regulated) Cyclic dosing sufficient (vs continuous) Preventive and restorative Compare to other mechanisms and joint peptides

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As B12 is essential for the production of red blood cells and proper nervous system function, its deficiency can disrupt these processes and lead to symptoms like gastrointestinal discomfort and poor appetite, which may contribute to unintended weight loss
Which populations is it most common in
Endometriosis is a full-body inflammatory disease shaped by chronic inflammation, immune dysregulation, hormonal signaling, and metabolic cross-talk
Some people also have a condition that is known as pernicious anemia, which means their body is not able to properly absorb Vitamin B-12