TY - JOUR
T1 - Probiotic-loaded calcium alginate/fucoidan hydrogels for promoting oral ulcer healing
AU - Dou, Xue
AU - Li, Guotai
AU - Wang, Shuang
AU - Shao, Dan
AU - Wang, Danyang
AU - Deng, Xuyang
AU - Zhu, Yanli
AU - Gao, Pengyu
AU - Liu, Jia
AU - Deng, Na
AU - Yuan, Changqing
AU - Zhou, Qihui
N1 - Publisher Copyright:
© 2023
PY - 2023/7/31
Y1 - 2023/7/31
N2 - Probiotics are beneficial bacteria located in the oral cavity which exhibit antimicrobial properties and contribute to the regulation of immune function and the modulation of tissue repair. Fucoidan (FD), a marine prebiotic, may further enhance the ability of probiotics to promote ulcer healing. However, neither FD nor probiotics are attached to the oral cavity and neither are well-suited for oral ulcer healing owing to the wet and highly dynamic environment. In this study, probiotic-loaded calcium alginate/fucoidan composite hydrogels were developed for use as bioactive oral ulcer patches. The well-shaped hydrogels exhibited remarkable wet-tissue adhesion, suitable swelling and mechanical properties, sustained probiotic release, and excellent storage durability. Moreover, in vitro biological assays demonstrated that the composite hydrogel exhibited excellent cyto/hemocompatibility and antimicrobial effects. Importantly, compared to commercial oral ulcer patches, bioactive hydrogels show superior therapeutic capability for promoting ulcer healing in vivo by enhancing cell migration, inducing epithelial formation and orderly collagen fiber deposition, as well as facilitating neovascularization. These results demonstrate that this novel composite hydrogel patch demonstrates great potential for the treatment of oral ulcerations.
AB - Probiotics are beneficial bacteria located in the oral cavity which exhibit antimicrobial properties and contribute to the regulation of immune function and the modulation of tissue repair. Fucoidan (FD), a marine prebiotic, may further enhance the ability of probiotics to promote ulcer healing. However, neither FD nor probiotics are attached to the oral cavity and neither are well-suited for oral ulcer healing owing to the wet and highly dynamic environment. In this study, probiotic-loaded calcium alginate/fucoidan composite hydrogels were developed for use as bioactive oral ulcer patches. The well-shaped hydrogels exhibited remarkable wet-tissue adhesion, suitable swelling and mechanical properties, sustained probiotic release, and excellent storage durability. Moreover, in vitro biological assays demonstrated that the composite hydrogel exhibited excellent cyto/hemocompatibility and antimicrobial effects. Importantly, compared to commercial oral ulcer patches, bioactive hydrogels show superior therapeutic capability for promoting ulcer healing in vivo by enhancing cell migration, inducing epithelial formation and orderly collagen fiber deposition, as well as facilitating neovascularization. These results demonstrate that this novel composite hydrogel patch demonstrates great potential for the treatment of oral ulcerations.
KW - Fucoidan
KW - Marine polysaccharide
KW - Oral mucosa patch
KW - Oral ulceration
KW - Probiotic
UR - https://www.scopus.com/pages/publications/85163703010
U2 - 10.1016/j.ijbiomac.2023.125273
DO - 10.1016/j.ijbiomac.2023.125273
M3 - 文章
C2 - 37301354
AN - SCOPUS:85163703010
SN - 0141-8130
VL - 244
JO - International Journal of Biological Macromolecules
JF - International Journal of Biological Macromolecules
M1 - 125273
ER -