Latest industry research report on Uterine fibroid embolization (UFE) is an effective, non-surgical method used to treat uterine fibroids in the fertile women population. It is performed with the help of uterine fibroid embolization agents, delivered to the tumor by micro-catheters. Uterine fibroids are benign growths in the uterus that can be asymptomatic and seen during the fertile period. Depending on the size and location of the fibroid in uterus, it can cause pain and heavy bleeding during menstrual cycle and affect the ability of a woman to conceive.
The embolization agents block the arteries supplying blood to the tumor and force them to shrink. It is the most common form of tumor found in female reproductive system and therefore it is now one of the rising concerns amongst women.
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The increased awareness about the uterine fibroids amongst women and popularity of minimally invasive procedure will drive the global market for uterine fibroid embolization agents. In addition, the fact that UFE allows woman to preserve their uterus, otherwise not possible with full or even partial hysterectomy will further drive the market. Even though UFE is emerging as one of the most effective treatment available for UFE, side-effects such as infections, premature menopause, inflammation, and loss of menstrual periods can act as a barrier in the growth of the uterine fibroid embolization agents market.
Top uterine fibroid embolization agents considered in this report are gelatin sponge, polyvinyl alcohol (PVA) particles, trisacryl gelatin microspheres (TAGM), and polymethyl methacrylate (PMMA) microspheres.
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PMMA microspheres received its FDA approval in 2014 for the use in the treatment of uterine fibroids and as they are more spherical and biocompatible in nature, they are expected to acquire the major share of the uterine fibroid embolization agents market in the future.
UTERINE FIBROID EMBOLIZATION AGENTS MARKET SEGMENT:
- Gelatin Sponge
- Polyvinyl Alcohol (PVA) Particles
- Trisacryl Gelatin Microspheres (TAGM)
- Polymethyl Methacrylate (PMMA) Microspheres