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Occlusive membranes for guided regeneration of inflamed tissue defectsopen access

Authors
최우진Mangal, UtkarshPark, Jin-YoungKim, Ji-YeongJun, TaesukJung, Ju WonChoi, MoonhyunJung, SungwonLee, MilaeNa, Ji-YeongRyu, Du YeolKim, Jin ManKwon, Jae-SungKoh, Won-GunLee, SangminHwang, Patrick T. J.Lee, Kee-JoonJung, Ui-WonCha, Jae-KookChoi, Sung-HwanHong, Jinkee
Issue Date
Nov-2023
Publisher
NATURE PORTFOLIO
Citation
NATURE COMMUNICATIONS, v.14, no.1
Journal Title
NATURE COMMUNICATIONS
Volume
14
Number
1
URI
https://yscholarhub.yonsei.ac.kr/handle/2021.sw.yonsei/22958
DOI
10.1038/s41467-023-43428-3
ISSN
2041-1723
Abstract
Guided bone regeneration aided by the application of occlusive membranes is a promising therapy for diverse inflammatory periodontal diseases. Symbiosis, homeostasis between the host microbiome and cells, occurs in the oral environment under normal, but not pathologic, conditions. Here, we develop a symbiotically integrating occlusive membrane by mimicking the tooth enamel growth or multiple nucleation biomineralization processes. We perform human saliva and in vivo canine experiments to confirm that the symbiotically integrating occlusive membrane induces a symbiotic healing environment. Moreover, we show that the membrane exhibits tractability and enzymatic stability, maintaining the healing space during the entire guided bone regeneration therapy period. We apply the symbiotically integrating occlusive membrane to treat inflammatory-challenged cases in vivo, namely, the open and closed healing of canine premolars with severe periodontitis. We find that the membrane promotes symbiosis, prevents negative inflammatory responses, and improves cellular integration. Finally, we show that guided bone regeneration therapy with the symbiotically integrating occlusive membrane achieves fast healing of gingival soft tissue and alveolar bone.,Symbiosis should be maintained during the oral regeneration period. Herein, authors develop an occlusive membrane that induces symbiosis, thereby improving the performance of guided bone generation therapy.,
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