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Dark Labs Crack Daily

$ 40.50

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Description Dark Labs Crack Daily is a high-stimulant daily pre-workout supplement designed for experienced athletes who want maximum performance without compromise. Key highlights: Daily-use version of the legendary Crack formula Extreme energy, focus, and pump support Multiple fast- and slow-acting caffeine sources Clinically dosed performance ingredients 30 servings per container Crack Daily is engineered to fuel intense workouts, improve training drive, and support peak performance when you need it most. If you’re looking for a no-nonsense pre-workout that delivers powerful energy, sharp mental focus, muscle pumps, and endurance, Crack Daily stands out from the crowd. This formula is ideal for: High-intensity training sessions Long workouts that demand sustained energy Users who prefer strong stimulant-based pre-workouts Athletes seeking improved focus, strength output, and workout intensity Crack Daily is not a beginner formula—it’s built for those who want their pre-workout to hit hard and perform consistently. ngredients Key ingredients per serving include: L-Citrulline (5,000 mg) – Supports nitric oxide production for improved blood flow, muscle pumps, and endurance Beta-Alanine (4,000 mg) – Helps buffer lactic acid to support muscular endurance and delay fatigue HydroPrime® Glycerol Powder (2,500 mg) – Promotes muscle hydration, fuller pumps, and improved performance L-Tyrosine (1,500 mg) – Supports focus, alertness, and cognitive performance under stress Beta-PEA (500 mg) – May support mood elevation and training motivation Caffeine Complex (Approx. 450 mg total) Caffeine Anhydrous Di-Caffeine Malate Caffeine Citrate Provides both rapid and sustained energy release Theobromine (75 mg) – Smooth, longer-lasting stimulant support without excessive jitters Niacin (Vitamin B3) & Vitamin B6 – Support energy metabolism and nutrient utilization Sodium (from Pink Himalayan Sea Salt) – Helps maintain hydration and muscle function Astragin® (50 mg) – Supports nutrient absorption and bioavailability