SOME BY MI AHA BHA PHA 14 DAYS SUPER MIRACLE SPOT ALL KILL CREAM
Targeted Treatment for Clearer, Blemish-Free Skin
Combat stubborn acne and blemishes with the SOME BY MI AHA BHA PHA 14 Days Super Miracle Spot All Kill Cream, a powerful treatment cream designed to reduce the appearance of pimples, blackheads, and other skin imperfections. Infused with AHA, BHA, and PHA, this spot treatment gently exfoliates, clears clogged pores, and accelerates skin renewal. The lightweight, fast-absorbing formula helps reduce inflammation, soothe irritation, and promote a smoother, clearer complexion in just 14 days.
Key Benefits:
- Targets acne, pimples, and blemishes with visible results in 14 days.
- Gently exfoliates and removes dead skin cells to prevent clogged pores.
- Soothes inflammation and reduces redness for a calmer complexion.
- Helps improve skin texture and clarity for a smoother, blemish-free appearance.
How to Use:
- After cleansing and toning, apply a small amount directly onto problem areas.
- Gently massage until absorbed.
- Use as a spot treatment at night or during the day as needed.
- Follow with a moisturizer to lock in hydration.
Key Ingredients:
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AHA (Alpha Hydroxy Acid): Exfoliates and removes dead skin cells to reveal smoother, clearer skin.
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BHA (Beta Hydroxy Acid): Penetrates deep into pores to clear impurities and prevent future breakouts.
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PHA (Polyhydroxy Acid): Gently exfoliates while being ideal for sensitive skin, promoting healthy skin renewal.
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Tea Tree Oil: Known for its soothing and antibacterial properties, helping to calm acne-prone skin.
Suitable For:
- Acne-prone and blemish-prone skin.
- Those looking for an effective, fast-acting spot treatment.
- Anyone seeking to improve skin texture and target imperfections.
Caution:
- For external use only.
- Perform a patch test before use to ensure no irritation occurs.
- Avoid direct contact with eyes. If contact occurs, rinse thoroughly with water.
- Always apply sunscreen during the day, as exfoliating products can make the skin more sensitive to UV rays.