SEVEN KENTE BOND Conditioner for Split Ends & Damaged Hair | Sulfate Free, Cruelty Free, Made in USA, 32 oz
Discover SEVEN KENTE BOND Conditioner
SEVEN KENTE BOND Conditioner is the second step in a three-part system designed to seal split ends and reconstruct damaged hair structure. It works with a high-cysteine amino acid complex to support disulfide bonds—one of hair's strongest natural linkages—helping hair feel resilient and smooth after wash.
Powered by a near-clinical level of ProVitamin B5, this formula penetrates deeply to deliver moisture where it's most needed, leaving hair feeling softer, more supple, and easier to manage.
Formulated without sulfates (SLS/SLES), parabens, or dyes, it is gluten-free, cruelty-free, and alcohol-free. The hypoallergenic, pH-balanced, and color-safe blend is proudly certified Made in the USA by American Made Beauty.
Who it's for
- All hair types, especially dry, damaged, or very curly hair
- Color-treated hair or sensitive scalps benefit from a gentle, dye-free formula
- Cruelty-free and gluten-free formulation suitable for everyday use
Key benefits
- Decreases breakage by up to 60% as part of the 3-step system
- Infuses deep moisture with ProVitamin B5 for smoother lengths
- Supports disulfide bond resilience via a high-cysteine amino acid complex
- Frizz control and improved manageability with repeated use
- Color-safe, hypoallergenic, and pH balanced, with no sulfates, parabens, or dyes
How to use
- After shampoo, apply to mid-lengths and ends
- Leave on briefly, then rinse thoroughly
- Proceed with styling as desired
Made in the USA and designed for everyday wearability, SEVEN KENTE BOND Conditioner aims to support your hair's natural beauty without promising overnight results.
FAQ
Q: Is SEVEN KENTE BOND Conditioner sulfate-free and cruelty-free?
A: Yes. It’s sulfate-free, paraben-free, dye-free, and cruelty-free, with a color-safe formula.
Q: What are the main benefits of this conditioner?
A: Deep moisture, improved manageability, and support for bond resilience, with potential reduction in breakage when used as directed.