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EXOSOMES

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EXOSOMES

LEARN ABOUT

BENEV Exosome treatments are based on the most cutting edge scientific biotech breakthrough for skin rejuvenation and regeneration. Exosomes are responsible for cell to cell communication and for facilitating the exchange of RNA and other important proteins between cells (e.g. fibroblasts, keratinocytes, immune cells, etc.), in addition to transferring numerous growth factors and cytokines and genetic materials that have shown signs of tissue repair and improving skin cells. These data coding avatars have been harnessed for our new line of exosome products to promote a more radiant youthful appearance.

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WHY BENEV EXOSOMES

Exosomes, an 30~200 nm endoplasmic reticulum that is secreted for cell-to-cell communication, plays an important role in influencing the microenvironment around cells, ExoSCRT™ is an innovative technology to separate and refine 0.1~0.5% pure exosomes from stem cells and helps the virtualization of natural skin energy by affecting skin cells effectively.

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EXOSOMES

USED TO TREAT

The following are some of the conditions that it can treat:

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SKIN

• Noticeably reduces the appearance of age related pigment

• Visibly makes skin appear firmer and more youthful

• Visibly reduces the appearance of fine lines and wrinkles

• Hydrates and nourishes skin

• Promotes a more radiant and even toned complexion

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SCALP

• Visibly makes hair look and feel softer, shinier, and fuller

• Hydrates and nourishes the scalp

• Promotes a healthy hair growth cycle
• Noticeably reduces hair shedding

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3 Reasons Why Patients Love Cherry

Cherry Qualifies Patients For Up To $10,000

There is no hard credit check

Cherry Offers 0% financing options*

*0% promo APR is subject to approval. Regular APR 9.99% – 35.99%. Down payment may be required.

  • What is MINT™ PDO & Is It Safe?
    MINT™ is an absorbable polydioxanone (PDO) barbed suture indicated for use in soft tissue approximation. With a decade worth of safety track record in surgery, PDO is a safe raw material that has been used for orthopedic and cardiovascular surgery for wound closure. As a safe raw material that is completely absorbed by the body through hydrolysis, PDO causes minimal tissue reaction and tissue trauma. Not only that, MINT™ is also backed by more than 6 years of clinical studies for its efficacy and safety and is the first and only PDO suture in the US market to have received two FDA clearances.
  • Is MINT™ FDA Cleared?
    In 2013, MINT™ received 510(k) clearance from the FDA as a Class II medical device, by demonstrating that the device to be marketed is safe and effective. MINT™ received global registrations for lifting indication from seven countries, such as the Korea MFDS, Europe CE, and China CFDA, to assure its excellent technological capabilities and reliable safety. In 2020, MINT™ became the only PDO suture in the US market to have received dual FDA clearances and is the only device of its kind to receive clearance for a lifting indication for nasolabial fold depth reduction.
  • How Does It Work?
    MINT™ PDO thread is a minimally invasive procedure that does not require general anesthesia nor big incisions for your patients. There are tiny barbs strategically placed and molded all around the thread. Once the threads are placed into the skin, the barbs anchor onto sagging skin, and the thread can be maneuvered to achieve a naturally youthful and defined look. Not only can it improve the appearance of sagging skin, PDO (polydioxanone) can also help promote the stimulation of collagen and neovascularization, which helps to improve skin elasticity, texture, fine lines, and volume for a timeless rejuvenation.
  • How is MINT™ Different From Cut Threads?
    Unlike conventional sutures that cut the barbs from the integral core of the thread, MINT™ is manufactured through an innovative patented technology where the barbs are press-molded on the surface of the thread to maintain its structural integrity. The 360 degrees of helically positioned barbs are designed to maximize tensile and anchoring strength in order to securely anchor onto the 3D structure of the soft tissue for effective and powerful approximation.
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