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  • Molecular weight analyses and enzymatic degradation profiles of the soft-tissue fillers Belotero Balance, Restylane, and Juvéderm Ultra.

Molecular weight analyses and enzymatic degradation profiles of the soft-tissue fillers Belotero Balance, Restylane, and Juvéderm Ultra.

Plastic and reconstructive surgery (2013-10-01)
Timothy Corcoran Flynn, David H Thompson, Seok-Hee Hyun
ABSTRACT

In this study, the authors sought to determine the molecular weight distribution of three hyaluronic acids-Belotero Balance, Restylane, and Juvéderm Ultra-and their rates of degradation following exposure to hyaluronidase. Lot consistency of Belotero Balance also was analyzed. Three lots of Belotero Balance were analyzed using liquid chromatography techniques. The product was found to have high-molecular-weight and low-molecular-weight species. One lot of Belotero Balance was compared to one lot each of Juvéderm Ultra and Restylane. Molecular weights of the species were analyzed. The hyaluronic acids were exposed to ovine testicular hyaluronidase at six time points-baseline and 0.5, 1, 2, 6, and 24 hours-to determine degradation rates. Belotero Balance lots were remarkably consistent. Belotero Balance had the largest high-molecular-weight species, followed by Juvéderm Ultra and Restylane (p < 0.001). Low-molecular-weight differences among all three hyaluronic acids were not statistically significant. Percentages of high-molecular-weight polymer differ among the three materials, with Belotero Balance having the highest fraction of high-molecular-weight polymer. Degradation of the high-molecular-weight species over time showed different molecular weights of the high-molecular-weight fraction. Rates of degradation of the hyaluronic acids following exposure to ovine testicular hyaluronidase were similar. All hyaluronic acids were fully degraded at 24 hours. Fractions of high-molecular-weight polymer differ across the hyaluronic acids tested. The low-molecular-weight differences are not statistically significant. The high-molecular-weight products have different molecular weights at the 0.5- and 2-hour time points when exposed to ovine testicular hyaluronidase and are not statistically different at 24 hours.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Hyaluronidase from bovine testes, Type IV-S, powder, suitable for mouse embryo cell culture, 750-3000 units/mg solid
Sigma-Aldrich
Hyaluronidase from bovine testes, Type I-S, lyophilized powder, 400-1000 units/mg solid
Sigma-Aldrich
Hyaluronidase from bovine testes, Type VI-S, lyophilized powder, 3,000-15,000 units/mg solid
Sigma-Aldrich
Hyaluronidase from bovine testes, Type IV-S, lyophilized powder (essentially salt-free), 750-3000 units/mg solid
Sigma-Aldrich
Hyaluronidase from bovine testes, Type VIII, lyophilized powder, 300-1,000 U/mg
Sigma-Aldrich
Hyaluronidase from sheep testes, Type II, lyophilized powder, ≥300 units/mg solid
Sigma-Aldrich
Hyaluronidase from sheep testes, Type V, lyophilized powder, ≥1,500 units/mg solid
Sigma-Aldrich
Hyaluronidase from bovine testes, Vetec, reagent grade