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The erapeutic effect of triamcinolone acetonide with pingyangmycin on lymphatic malformations in oral and maxillofacial regions
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作者 张炜 《外科研究与新技术》 2011年第4期266-267,共2页
Objective To investigate therapeutic effect of tri- amcinolone acetonide and pingyangmycin on lymphatic malformations in oral and maxillofacial regions. Methods 29 patients with lymphatic malformations in oral and max... Objective To investigate therapeutic effect of tri- amcinolone acetonide and pingyangmycin on lymphatic malformations in oral and maxillofacial regions. Methods 29 patients with lymphatic malformations in oral and maxillofacial regions were divided into two groups to re- 展开更多
关键词 oral The erapeutic effect of triamcinolone acetonide with pingyangmycin on lymphatic malformations in oral and maxillofacial regions
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Wet-adhesive materials of oral and maxillofacial region:From design to application
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作者 Yilin Mao Zhengyi Xu +2 位作者 Zihan He Jian Wang Zhou Zhu 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第1期5-18,共14页
Oral and maxillofacial diseases are a group of high-incidence disorders that affect people’s life quality to a great extent,while the wet and highly movable environment of the related regions brings challenges to tra... Oral and maxillofacial diseases are a group of high-incidence disorders that affect people’s life quality to a great extent,while the wet and highly movable environment of the related regions brings challenges to traditional therapies.Faced with the obstacles of insufficient adhesive strength and ensuing short drug retention time,conventional oral therapeutic agents often have difficulty in achieving their desired efficacy.Oral and maxillofacial wet-adhesive materials have the advantages of excellent wet environment retention,internal stability,plasticity,and clinical potential,thus have become a significant research direction in the field of oral related disorders healing.In the past decade,the development of oral adhesive materials with good wet adhesion has accelerated based on the chemical molecular interaction,physical interlocking,and biological adhesion mechanisms,including biomimetic-inspired materials,naturally derived polymer–based materials and adhesive electrospun fiber films.These fancy wet-adhesive materials can be used for oral mucosal drug delivery,oral vaccination,wound healing,and bone defects treatments.Despite their numerous novel applications,wet-adhesive materials in stomatology still face unresolved challenges from material and biological aspects.Here,advances in designs of oral and maxillofacial wetadhesive materials are reviewed in terms of design backgrounds,attachment mechanisms,and common classifications.Recent demonstrations of wet-adhesive materials for oral and maxillofacial region medical applications from drug delivery to multifunctional tissue treatments are presented.To conclude,current challenges and prospects on potential applications of oral and maxillofacial wet-adhesive materials are also briefly discussed. 展开更多
关键词 oral cavity oral and maxillofacial region Wet adhesion STOMATOLOGY Adhesive materials MUCOADHESION Tissue engineering
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Bone regeneration by stem cell and tissue engineering in oral and maxillofacial region 被引量:2
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作者 Zhiyuan Zhang 《Frontiers of Medicine》 SCIE CSCD 2011年第4期401-413,共13页
Clinical imperatives for the reconstruction of jaw bone defects or resorbed alveolar ridge require new therapies or procedures instead of autologous/allogeneic bone grafts.Regenerative medicine,based on stem cell scie... Clinical imperatives for the reconstruction of jaw bone defects or resorbed alveolar ridge require new therapies or procedures instead of autologous/allogeneic bone grafts.Regenerative medicine,based on stem cell science and tissue engineering technology,is considered as an ideal alternative strategy for bone regeneration.In this paper,we review the current choices of cell source and strategies on directing the osteogenic differentiation of stem cells.The preclinical animal models for bone regeneration and the key translational points to clinical success in oral and maxillofacial region are also discussed.We propose comprehensive strategies based on stem cell and tissue engineering researches,allowing for clinical application in oral and maxillofacial region. 展开更多
关键词 bone regeneration animal models translational strategies oral and maxillofacial region
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Research status of biodegradable metals designed for oral and maxillofacial applications:A review 被引量:9
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作者 Dandan Xia Fan Yang +2 位作者 Yufeng Zheng Yunsong Liu Yongsheng Zhou 《Bioactive Materials》 SCIE 2021年第11期4186-4208,共23页
The oral and maxillofacial regions have complex anatomical structures and different tissue types,which have vital health and aesthetic functions.Biodegradable metals(BMs)is a promising bioactive materials to treat ora... The oral and maxillofacial regions have complex anatomical structures and different tissue types,which have vital health and aesthetic functions.Biodegradable metals(BMs)is a promising bioactive materials to treat oral and maxillofacial diseases.This review summarizes the research status and future research directions of BMs for oral and maxillofacial applications.Mg-based BMs and Zn-based BMs for bone fracture fixation systems,and guided bone regeneration(GBR)membranes,are discussed in detail.Zn-based BMs with a moderate degradation rate and superior mechanical properties for GBR membranes show great potential for clinical translation.Fe-based BMs have a relatively low degradation rate and insoluble degradation products,which greatly limit their application and clinical translation.Furthermore,we proposed potential future research directions for BMs in the oral and maxillofacial regions,including 3D printed BM bone scaffolds,surface modification for BMs GBR membranes,and BMs containing hydrogels for cartilage regeneration,soft tissue regeneration,and nerve regeneration.Taken together,the progress made in the development of BMs in oral and maxillofacial regions has laid a foundation for further clinical translation. 展开更多
关键词 Biodegradable metals oral and maxillofacial region Bone fracture Bone fixation Bone defect Guided bone regeneration
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