Hyaluronic acid hydrolysis using vacuum ultraviolet TiO2 photocatalysis combined with an oxygen nanobubble system

  • Cho, Sung Yeon
  • Lee, Seokjae
  • Yang, Kyungjik
  • Kim, Young Min
  • Choe, Deokyeong
  • ... Lee, Dong-Un
  • 외 3명
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초록

Advanced technologies for producing high-quality low molecular weight hyaluronic acid (LMW-HA) are required from the perspective of cost-efficiency and biosafety. Here, we report a new LMW-HA production system from high molecular weight HA (HMW-HA) using vacuum ultraviolet TiO2 photocatalysis with an oxygen nanobubble system (VUV-TP-NB). The VUV-TP-NB treatment for 3 h resulted in a satisfactory LMW-HA (approximately 50 kDa measured by GPC) yield with a low endotoxin level. Further, there were no inherent structural changes in the LMW-HA during the oxidative degradation process. Compared with conventional acid and enzyme hydrolysis methods, VUV-TP-NB showed similar degradation degree with viscosity though reduced process time by at least 8-fold. In terms of endotoxin and antioxidant effects, degradation using VUV-TP-NB demonstrated the lowest endotoxin level (0.21 EU/mL) and highest radical scavenging activity. This nanobubble-based photocatalysis system can thus be used to produce biosafe LMW-HA cost-effectively for food, medical, and cosmetics applications. © 2022 Elsevier Ltd

키워드

Antioxidant activityEndotoxinHyaluronic acid hydrolysisNanobubbleUV-TiO2 photocatalysisMOLAR-MASS HYALURONANLONG-TERM DEGRADATIONUV-TIO2 PHOTOCATALYSISBIOLOGICAL-PROPERTIESINACTIVATIONIRRADIATIONTECHNOLOGYMICROWAVEENDOTOXINKINETICS
제목
Hyaluronic acid hydrolysis using vacuum ultraviolet TiO2 photocatalysis combined with an oxygen nanobubble system
저자
Cho, Sung YeonLee, SeokjaeYang, KyungjikKim, Young MinChoe, DeokyeongKim, Jeong UnLee, Dong-UnPark, JiyongRoh, Young Hoon
DOI
10.1016/j.carbpol.2022.120178
발행일
2023-01
유형
Article
저널명
Carbohydrate Polymers
299