1.Effects of neoeriocitrin on alveolar bone loss and gut microbiota in mice with periodontitis
WU Yu ; YUAN Zhiyao ; ZHANG Yangheng ; YAN Fuhua
Journal of Prevention and Treatment for Stomatological Diseases 2026;34(3):226-236
Objective:
To investigate the inhibitory effect of neoeriocitrin (Neo) on ligature-induced experimental periodontitis in mice and evaluate its biosafety, providing experimental evidence for novel candidate drugs in periodontitis treatment.
Methods:
This study has been approved by the Animal Welfare and Ethical Safety Committee. A periodontitis model was established in C57BL/6J mice using silk ligation. The mice were divided into control, periodontitis model, and three Neo treatment groups (5, 10, 20 mg/kg Neo). After 2 weeks of intervention, alveolar bone resorption was analyzed by micro-computed tomography (micro-CT); periodontal tissue pathological changes were observed via hematoxylin-eosin (HE) and Masson staining; osteoclasts were counted using tartrate-resistant acid phosphatase staining; serum inflammatory factor levels [tumor necrosis factor-α (TNF-α), interleukin-6 (IL-6), interleukin-1β (IL-1β), interleukin-10 (IL-10)] were detected by enzyme-linked immunosorbent assay; gut microbiota changes were analyzed by 16S rRNA sequencing; and biosafety was assessed through HE staining of the heart, liver, spleen, lung, kidney, and colon, as well as zonula occludens-1 (ZO-1) immunohistochemical staining of the colon.
Results:
Compared with the periodontitis model group, the 10 mg/kg Neo treatment group showed significantly alleviated alveolar bone resorption, manifested as reduced cementoenamel junction to alveolar bone crest distance, increased bone mineral density, bone volume fraction, and trabecular thickness. Additionally, reduced inflammatory cell infiltration, improved collagen fiber arrangement, and a significantly decreased number of osteoclasts were observed in periodontal tissues. Serum levels of pro-inflammatory factors TNF-α and IL-6 were also reduced. Furthermore, 10 mg/kg Neo intervention modulated the gut microbiota structure without causing significant multi-organ toxicity or impairing intestinal barrier function.
Conclusion
Neo can effectively mitigate the progression of experimental periodontitis by inhibiting alveolar bone resorption, reducing periodontal tissue inflammation, modulating systemic immunity, and improving gut microbiota. With good biosafety, Neo is a promising candidate drug for the treatment of periodontitis.
2.Progress and prospects in the research on the impact of periodontal disease on systemic diseases and its mechanisms
Journal of Prevention and Treatment for Stomatological Diseases 2025;33(6):433-444
Periodontal disease is highly prevalent, exerting detrimental effects on oral health and posing serious threats to systemic health. Over the past three decades, research exploring the impact of periodontal disease on systemic diseases has rapidly advanced. Nevertheless, numerous challenges and unanswered questions remain, necessitating further investigation. Therefore, this article first elucidates the association between periodontal disease and systemic diseases. Then, the key evidence supporting their relationship is graded according to the Oxford Centre for Evidence-Based Medicine levels of evidence criteria. Specifically, periodontal disease emerges as an independent risk factor for diabetes mellitus (level A evidence) and cardiovascular diseases (level B evidence). As such, it represents a potential risk factor for rheumatoid arthritis (level B evidence), chronic obstructive pulmonary disease (level B evidence), and inflammatory bowel disease (level B evidence). Furthermore, periodontal disease is closely linked to adverse pregnancy outcomes. Second, this article delineates the plausible mechanisms through which periodontal disease influences systemic diseases, explicitly showing that the foundational elements underlying their connection are bacteria and inflammation. The circulation pathway and saliva pathway specifically mediate this connection. Finally, in light of the current ambiguities surrounding the relationships between periodontal disease and certain systemic diseases, as well as the insufficient depth of mechanism research, this article outlines several considerations for future clinical research and animal experiment designs. Implementing large-sample, multi-center, high-quality clinical studies, utilizing multi-omics analyses for more in-depth exploration of mechanisms, and actively promoting clinical translational research are recommended. This article aims to advance the field of periodontal medicine, while simultaneously offering evidence-based insights to inform the implementation of public health policies.
3.Study on the role of butyric acid-producing bacteria in periodontitis-induced interference with long bone homeostasis in mice fed a high-fat/high-sugar diet
XU Zhonghan ; YAO Yujie ; WANG Xinyue ; SONG Shiyuan ; BAO Jun ; YAN Fuhua ; TONG Xin ; LI Lili
Journal of Prevention and Treatment for Stomatological Diseases 2025;33(6):445-456
Objective:
To investigate the role of butyric acid-producing bacteria in long bone homeostasis in mice with periodontitis under a high-fat/high-sugar diet and to provide new insights for the prevention and treatment of periodontitis and related bone metabolic diseases.
Methods:
This study has been approved by the Animal Welfare and Ethics Committee of the Experimental Animal Center. Initially, 14 mice were randomly divided into the CON group (the control group) and the LIG group (the periodontitis group). Mice in the LIG group had experimental periodontitis induced by ligating the second maxillary molars bilaterally and were fed a high-fat and high-sugar diet. After 8 weeks, samples were collected. Micro-computed tomography (Micro-CT) was used to analyze alveolar bone resorption and various parameters of the proximal tibia trabecular bone, including bone mineral density (BMD), bone volume per tissue volume (BV/TV), trabecular number (Tb.N), trabecular thickness (Tb.Th), and trabecular separation (Tb.Sp). After decalcification, hematoxylin and eosin (HE) staining was performed on maxillary bone sections to assess periodontal tissue inflammation and connective tissue destruction. Quantitative real-time polymerase chain reaction (qRT-PCR) was used to detect related genes in the distal femur and proximal tibia bone tissues, including osteocalcin (OCN), osteogenic transcription factor (Osterix), osteoprotegerin (OPG), tartrate resistant acid phosphatase (TRAP), osteoclast-associated receptor (OSCAR), receptor activator of nuclear factor kappa-B (RANK), and receptor activator of nuclear factor kappa-B ligand (RANK-L). Subsequently, the other 28 mice were randomly divided into the CON group (the control group), LIG group (the periodontitis group), CON + butyric acid-producing bacteria (BP) group, and LIG + BP group. The breeding, sampling, and sample detection methods remained the same. Finally, the other 28 mice were randomly divided into the CON group (the control group), LIG group (the periodontitis group), CON + sodium butyrate (SB) group, and LIG + SB group. The breeding, sampling, and sample detection methods remained the same.
Results:
①Periodontitis modeling was successful. Compared with the CON group, the LIG group exhibited significant alveolar bone resorption of the maxillary second molar, aggravated periodontal tissue inflammation, and connective tissue destruction. ②Periodontitis exacerbated long bone resorption in mice fed a high-fat high-sugar diet. Compared with the CON group, the LIG group had significantly lower BMD, BV/TV, Tb.N, and Tb.Th (P<0.05), and significantly higher Tb.Sp (P<0.05). HE staining of the proximal tibia showed that the trabeculae in the LIG group were sparse and disordered, with some areas showing fractures or dissolution. The expression of osteoblast markers (OCN, Osterix, OPG) was significantly lower in the LIG group (P<0.05), while the expression of the osteoclast marker TRAP showed an increasing trend (P>0.05). The ratio of RANK-L/OPG was significantly higher in the LIG group compared with the CON group (P<0.05). ③ Supplementation with butyric acid-producing bacteria alleviates periodontitis-induced disruption of long bone homeostasis in mice fed a high-fat/high-sugar diet. Compared with the LIG group, BMD and Tb.Th were significantly higher in the LIG + BP group. HE staining of the proximal tibia showed that bone resorption was mitigated in the LIG + BP group compared with the LIG group. The expression of OCN and Osterix was significantly higher in the LIG + BP group, while the expression of osteoclast-specific genes (OSCAR, RANK, RANK-L) was significantly lower (P<0.05). ④ Supplementation with butyrate alleviates periodontitis-induced disruption of long bone homeostasis in mice fed a high-fat/high-sugar diet. Compared with the LIG group, BV/TV and Tb.N were significantly higher in the LIG + SB group, and Tb.Sp was significantly lower (P<0.05). HE staining of the proximal tibia showed that bone resorption was mitigated in the LIG + SB group compared with the LIG group. The expression of Osterix, OPG, OSCAR, TRAP, and RANK was significantly lower in the LIG + SB group compared with the LIG group (P<0.05).
Conclusion
Periodontitis disrupts the long bone homeostasis of mice fed a high-fat high-sugar diet, aggravating long bone resorption. Supplementation with butyric acid-producing bacteria or butyrate can effectively alleviate the disruption of long bone homeostasis caused by periodontitis.
4.The bridging role of programmed cell death in association between periodontitis and rheumatoid arthritis
GE Ruiyang ; ZHOU Yingying ; MAO Haowei ; HAN Lei ; CUI Di ; YAN Fuhua
Journal of Prevention and Treatment for Stomatological Diseases 2025;33(6):457-465
Periodontitis and rheumatoid arthritis (RA) are chronic inflammatory diseases that share similar inflammatory mechanisms and characteristics. Programmed cell death (PCD) has recently garnered attention for its crucial role in regulating inflammation and maintaining tissue homeostasis, as well as for its potential to link these two diseases. The various forms of PCD--including apoptosis, pyroptosis, and necroptosis--are closely controlled by signaling pathways such as Toll-like receptor 4 (TLR4) /NF-κB and MAPK. These pathways determine cell fate and influence inflammatory responses, tissue destruction, and repair, and they both play important roles in the pathogenesis of RA and periodontitis. In periodontitis, periodontal pathogens such as Porphyromonas gingivalis (P. gingivalis) and its virulence factors, including lipopolysaccharide (LPS), induce pyroptosis and necroptosis in immune cells such as macrophages via the TLR4/NF-κB pathway, which leads to an excessive release of pro-inflammatory cytokines such as interleukin (IL)-1β and tumor necrosis factor (TNF)-α. Concurrently, these pathogens inhibit the normal apoptotic process of immune cells, such as neutrophils, prolonging their survival, exacerbating immune imbalance, and aggravating periodontal tissue destruction. Similarly, in RA synovial tissue, fibroblast-like synoviocytes (FLS) acquire apoptosis resistance through signaling pathways such as the Bcl-2 family, JAK/STAT, and NF-κB, allowing for the consistent proliferation and secretion of matrix metalloproteinases and pro-inflammatory cytokines. Meanwhile, the continuous activation of pyroptotic pathways in neutrophils and macrophages results in the sustained release of IL-1β, further exacerbating synovial inflammation and bone destruction. Notably, dysregulated PCD fosters inter-organ crosstalk through shared inflammatory mediators and metabolic networks. Damage-associated molecular patterns (DAMPs) and cytokines that originate from periodontal lesions can spread systemically, influencing cell death processes in synovial and immune cells, thereby aggravating joint inflammation and bone erosion. By contrast, systemic inflammation in RA can upregulate osteoclastic activity or interfere with the normal apoptosis of periodontal cells via TNF-α and IL-6, ultimately intensifying periodontal immune imbalance. This review highlights the pivotal bridging role of PCD in the pathogenesis of both periodontitis and RA, providing a reference for therapeutic strategies that target cell death pathways to manage and potentially mitigate these diseases.
5.Research progress on the association between periodontitis and inflammatory bowel disease
SHEN Yue ; QIAN Jun ; YAN Fuhua
Journal of Prevention and Treatment for Stomatological Diseases 2025;33(6):466-473
Periodontitis is a chronic inflammatory disease of the periodontal supporting tissues caused by plaque microorganisms, whereas inflammatory bowel disease (IBD) is a chronic inflammatory disease characterized by gastrointestinal tract damage. Studies have revealed a close association between periodontitis and IBD, and gut microbiota has been shown to play an important role in the development of IBD. When the gut microbiota is disturbed, it leads to intestinal barrier disruption, triggers immune-inflammatory responses, and influences IBD progression. There are significant differences between the salivary microbiota of periodontitis patients and healthy individuals, and periodontal pathogens can enter the intestinal tract with saliva and participate in the development of IBD by influencing the interactions between gut microbiota composition, immune responses, metabolite production, and intestinal barrier function. Current gut microbiota-targeted intervention strategies, such as fecal microbiota transplantation (FMT) and probiotic supplementation, have shown potential therapeutic value in the treatment of periodontitis. These approaches may exert synergistic effects on both periodontitis and IBD through microbiota modulation. This review summarizes research progress on the relationship between periodontitis and IBD to provide a foundation for the prevention and treatment of these two diseases.
6.Effects of obesity on alveolar bone resorption and gut microbiota in periodontitis mice
Lichun ZHENG ; Rixin CHEN ; Nannan WANG ; Min WANG ; Jun QIAN ; Lili LI ; Fuhua YAN
Chinese Journal of Stomatology 2025;60(5):482-491
Objective:To study the effects of obesity on alveolar bone loss and gut microbiota in mice with periodontitis.Methods:Twenty-four seven-week-old female C57BL/6J mice were randomly divided into four groups based on table of random numbers ( n=6 in each group): normal-fat diet group (NFD group), high-fat diet group (HFD group), normal-fat diet and periodontitis group (NFD_PD group) and high-fat diet and periodontitis group (HFD_PD group). NFD and HFD groups were fed with normal or high-fat diet for twelve weeks respectively; NFD_PD and HFD_PD groups were induced to periodontitis by ligating the bilateral maxillary second molars with 5-0 silk thread at the fourth week after feeding with normal or high-fat diet respectively. The body weight was measured weekly. The mice were euthanized for collecting the samples at the end of the 12th week. Liver, kidneys, perirenal and retroperitoneal fat were weighed. Serum was collected to detect the level of serum lipids and inflammatory factors. The right maxilla bones were scanned by micro-CT. HE staining was performed to observe the periodontal tissue. The cecum contents were collected for gut microbiota 16S rRNA gene sequencing. Spearman correlation analysis was performed to analyze the correlation between the abundance of gut microbiota and serum inflammatory level and CT value. Results:After 12 weeks of high-fat diet fed, the body weight of HFD group [(26.52±1.96) g] was significantly higher than that of NFD group [(20.95±0.63) g] ( t=6.63, P<0.001). The body weight of HFD_PD group [(23.82±1.12) g] was significantly higher than that of NFD_PD group [(20.73±0.47) g] ( t=6.23, P=0.001). The serum levels of total cholesterol, triglyceride and low density lipoprotein in HFD group and HFD_PD group were significantly higher than those in NFD group and NFD_PD group ( P<0.01). The distance from the cemento-enamel junction to the alveolar bone crest (CEJ-ABC) on the mesial site of maxillary second molar in HFD_PD group [(647.46±47.46) μm] was significantly higher than that in NFD_PD group [(440.48±68.08) μm] ( t=5.58, P<0.001). HE staining showed that the maxillary second molar attachment loss, collagen fiber destruction and inflammatory cell infiltration were more significant serious in HFD_PD group compared with NFD_PD group. The levels of interleukin (IL)-1β, IL-6 and monocyte chemotactic protein-1 (MCP-1) of serum in HFD_PD group [(17.11±1.92), (31.61±3.20) and (204.42±35.96) ng/L, respectively] were significantly higher than those in NFD_PD group [(10.44±1.65), (19.96±2.09) and (147.36±10.76) ng/L, respectively] ( P<0.001, P<0.001, P=0.004). The 16S rRNA gene analysis revealed that the Bacteroides/Firmicutes ratio in HFD_PD group (4.00±3.30) was significantly higher than that in NFD_PD group (0.62±0.19) ( t=2.50, P=0.030). The abundance of Oscillospira in HFD_PD group [(12.25±0.05) %] was significantly higher than that in NFD_PD group [(2.80±0.01) %] ( t=4.64, P<0.001). The abundance of Parabacteroides in HFD_PD group [(0.25±0.27)% ] was significantly lower than that in NFD_PD group [(2.04±0.02)%] ( t=2.32, P=0.043). The β-diversity analysis of gut microbiota based on Bray-Curtis distance showed that samples of HFD_PD group and NFD_PD group were obviously grouped. Correlation analysis showed that the abundance of Oscillospira was positively correlated with IL-1β, IL-6, MCP-1 concentration and CEJ-ABC value in serum significantly ( r values were 0.80, 0.79, 0.80, 0.89, P<0.05). The abundance of Parabacteroides was negatively correlated with IL-1β, IL-6 concentration and CEJ-ABC value in serum significantly ( r values were -0.71, -0.71, -0.86, -0.95, P<0.05). Conclusions:Obesity promotes alveolar bone resorption in periodontitis mice and changes the gut microbiota. Oscillospira and Parabacteroides may play a key role.
7.Effects of obesity on alveolar bone resorption and gut microbiota in periodontitis mice
Lichun ZHENG ; Rixin CHEN ; Nannan WANG ; Min WANG ; Jun QIAN ; Lili LI ; Fuhua YAN
Chinese Journal of Stomatology 2025;60(5):482-491
Objective:To study the effects of obesity on alveolar bone loss and gut microbiota in mice with periodontitis.Methods:Twenty-four seven-week-old female C57BL/6J mice were randomly divided into four groups based on table of random numbers ( n=6 in each group): normal-fat diet group (NFD group), high-fat diet group (HFD group), normal-fat diet and periodontitis group (NFD_PD group) and high-fat diet and periodontitis group (HFD_PD group). NFD and HFD groups were fed with normal or high-fat diet for twelve weeks respectively; NFD_PD and HFD_PD groups were induced to periodontitis by ligating the bilateral maxillary second molars with 5-0 silk thread at the fourth week after feeding with normal or high-fat diet respectively. The body weight was measured weekly. The mice were euthanized for collecting the samples at the end of the 12th week. Liver, kidneys, perirenal and retroperitoneal fat were weighed. Serum was collected to detect the level of serum lipids and inflammatory factors. The right maxilla bones were scanned by micro-CT. HE staining was performed to observe the periodontal tissue. The cecum contents were collected for gut microbiota 16S rRNA gene sequencing. Spearman correlation analysis was performed to analyze the correlation between the abundance of gut microbiota and serum inflammatory level and CT value. Results:After 12 weeks of high-fat diet fed, the body weight of HFD group [(26.52±1.96) g] was significantly higher than that of NFD group [(20.95±0.63) g] ( t=6.63, P<0.001). The body weight of HFD_PD group [(23.82±1.12) g] was significantly higher than that of NFD_PD group [(20.73±0.47) g] ( t=6.23, P=0.001). The serum levels of total cholesterol, triglyceride and low density lipoprotein in HFD group and HFD_PD group were significantly higher than those in NFD group and NFD_PD group ( P<0.01). The distance from the cemento-enamel junction to the alveolar bone crest (CEJ-ABC) on the mesial site of maxillary second molar in HFD_PD group [(647.46±47.46) μm] was significantly higher than that in NFD_PD group [(440.48±68.08) μm] ( t=5.58, P<0.001). HE staining showed that the maxillary second molar attachment loss, collagen fiber destruction and inflammatory cell infiltration were more significant serious in HFD_PD group compared with NFD_PD group. The levels of interleukin (IL)-1β, IL-6 and monocyte chemotactic protein-1 (MCP-1) of serum in HFD_PD group [(17.11±1.92), (31.61±3.20) and (204.42±35.96) ng/L, respectively] were significantly higher than those in NFD_PD group [(10.44±1.65), (19.96±2.09) and (147.36±10.76) ng/L, respectively] ( P<0.001, P<0.001, P=0.004). The 16S rRNA gene analysis revealed that the Bacteroides/Firmicutes ratio in HFD_PD group (4.00±3.30) was significantly higher than that in NFD_PD group (0.62±0.19) ( t=2.50, P=0.030). The abundance of Oscillospira in HFD_PD group [(12.25±0.05) %] was significantly higher than that in NFD_PD group [(2.80±0.01) %] ( t=4.64, P<0.001). The abundance of Parabacteroides in HFD_PD group [(0.25±0.27)% ] was significantly lower than that in NFD_PD group [(2.04±0.02)%] ( t=2.32, P=0.043). The β-diversity analysis of gut microbiota based on Bray-Curtis distance showed that samples of HFD_PD group and NFD_PD group were obviously grouped. Correlation analysis showed that the abundance of Oscillospira was positively correlated with IL-1β, IL-6, MCP-1 concentration and CEJ-ABC value in serum significantly ( r values were 0.80, 0.79, 0.80, 0.89, P<0.05). The abundance of Parabacteroides was negatively correlated with IL-1β, IL-6 concentration and CEJ-ABC value in serum significantly ( r values were -0.71, -0.71, -0.86, -0.95, P<0.05). Conclusions:Obesity promotes alveolar bone resorption in periodontitis mice and changes the gut microbiota. Oscillospira and Parabacteroides may play a key role.
8.Efficacy of bilateral facial muscle training combined with visual electromyography biofeedback in the treatment of idiopathic facial nerve palsy
Xinyue CAI ; Ling DING ; Yilan MA ; Shihong HU ; Huajun GU ; Longdian GU ; Yijie ZHU ; Jiakun YAN ; Yaoyao ZHENG ; Qingsong MA
Chinese Journal of Clinical Medicine 2025;32(6):1017-1023
Objective To explore the efficacy of bilateral facial muscle training combined with visual electromyography biofeedback on facial nerve function recovery in patients with idiopathic facial nerve palsy. Methods Patients with idiopathic facial nerve palsy admitted to Shanghai Fifth People’s Hospital, Fudan University from July 2022 to July 2024 were selected and randomly divided into a control group and an intervention group. The control group received conventional physical factor therapy, while the intervention group received bilateral facial muscle training combined with visual electromyography biofeedback therapy based on the control group’s regimen. After 20 treatment sessions, the total effective rate, the House-Brackmann (H-B) facial nerve grading system, the Sunnybrook Facial Grading System (SFGS) score, and the average value ratio of maximal amplitudes of bilateral frontalis and zygomaticus muscles were compared between the two groups. Results A total of 90 patients were included, 45 in each group. After 20 treatment sessions, the total effective rate was significantly higher in the intervention group than in the control group (84.4% vs 75.6%, P=0.003). Compared with the control group, the intervention group demonstrated a significantly lower H-B grade (P=0.003) and a higher SFGS score (P=0.001). The average value ratios of maximal amplitudes of the affected versus healthy side frontalis (P=0.013) and zygomatic (P=0.022) muscles were higher in the intervention group than in the control group. Conclusions Bilateral facial muscle training combined with visual electromyography biofeedback is an effective approach for treating idiopathic facial nerve palsy, effectively promoting the recovery of facial nerve function, and improving facial symmetry and facial muscle function.
9.Expert consensus on orthodontic treatment of patients with periodontal disease.
Wenjie ZHONG ; Chenchen ZHOU ; Yuanyuan YIN ; Ge FENG ; Zhihe ZHAO ; Yaping PAN ; Yuxing BAI ; Zuolin JIN ; Yan XU ; Bing FANG ; Yi LIU ; Hong HE ; Faming CHEN ; Weiran LI ; Shaohua GE ; Ang LI ; Yi DING ; Lili CHEN ; Fuhua YAN ; Jinlin SONG
International Journal of Oral Science 2025;17(1):27-27
Patients with periodontal disease often require combined periodontal-orthodontic interventions to restore periodontal health, function, and aesthetics, ensuring both patient satisfaction and long-term stability. Managing these patients involving orthodontic tooth movement can be particularly challenging due to compromised periodontal soft and hard tissues, especially in severe cases. Therefore, close collaboration between orthodontists and periodontists for comprehensive diagnosis and sequential treatment, along with diligent patient compliance throughout the entire process, is crucial for achieving favorable treatment outcomes. Moreover, long-term orthodontic retention and periodontal follow-up are essential to sustain treatment success. This expert consensus, informed by the latest clinical research and practical experience, addresses clinical considerations for orthodontic treatment of periodontal patients, delineating indications, objectives, procedures, and principles with the aim of providing clear and practical guidance for clinical practitioners.
Humans
;
Consensus
;
Orthodontics, Corrective/standards*
;
Periodontal Diseases/complications*
;
Tooth Movement Techniques/methods*
;
Practice Guidelines as Topic
10.Expert consensus on the diagnosis and treatment of cemental tear.
Ye LIANG ; Hongrui LIU ; Chengjia XIE ; Yang YU ; Jinlong SHAO ; Chunxu LV ; Wenyan KANG ; Fuhua YAN ; Yaping PAN ; Faming CHEN ; Yan XU ; Zuomin WANG ; Yao SUN ; Ang LI ; Lili CHEN ; Qingxian LUAN ; Chuanjiang ZHAO ; Zhengguo CAO ; Yi LIU ; Jiang SUN ; Zhongchen SONG ; Lei ZHAO ; Li LIN ; Peihui DING ; Weilian SUN ; Jun WANG ; Jiang LIN ; Guangxun ZHU ; Qi ZHANG ; Lijun LUO ; Jiayin DENG ; Yihuai PAN ; Jin ZHAO ; Aimei SONG ; Hongmei GUO ; Jin ZHANG ; Pingping CUI ; Song GE ; Rui ZHANG ; Xiuyun REN ; Shengbin HUANG ; Xi WEI ; Lihong QIU ; Jing DENG ; Keqing PAN ; Dandan MA ; Hongyu ZHAO ; Dong CHEN ; Liangjun ZHONG ; Gang DING ; Wu CHEN ; Quanchen XU ; Xiaoyu SUN ; Lingqian DU ; Ling LI ; Yijia WANG ; Xiaoyuan LI ; Qiang CHEN ; Hui WANG ; Zheng ZHANG ; Mengmeng LIU ; Chengfei ZHANG ; Xuedong ZHOU ; Shaohua GE
International Journal of Oral Science 2025;17(1):61-61
Cemental tear is a rare and indetectable condition unless obvious clinical signs present with the involvement of surrounding periodontal and periapical tissues. Due to its clinical manifestations similar to common dental issues, such as vertical root fracture, primary endodontic diseases, and periodontal diseases, as well as the low awareness of cemental tear for clinicians, misdiagnosis often occurs. The critical principle for cemental tear treatment is to remove torn fragments, and overlooking fragments leads to futile therapy, which could deteriorate the conditions of the affected teeth. Therefore, accurate diagnosis and subsequent appropriate interventions are vital for managing cemental tear. Novel diagnostic tools, including cone-beam computed tomography (CBCT), microscopes, and enamel matrix derivatives, have improved early detection and management, enhancing tooth retention. The implementation of standardized diagnostic criteria and treatment protocols, combined with improved clinical awareness among dental professionals, serves to mitigate risks of diagnostic errors and suboptimal therapeutic interventions. This expert consensus reviewed the epidemiology, pathogenesis, potential predisposing factors, clinical manifestations, diagnosis, differential diagnosis, treatment, and prognosis of cemental tear, aiming to provide a clinical guideline and facilitate clinicians to have a better understanding of cemental tear.
Humans
;
Dental Cementum/injuries*
;
Consensus
;
Diagnosis, Differential
;
Cone-Beam Computed Tomography
;
Tooth Fractures/therapy*


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