1.Effect and mechanism of collagen combined with microneedles in treatment of skin photoaging
Fengyi TAN ; Jiamin XIE ; Zhenfeng PAN ; Xinxu ZHANG ; Zetai ZHENG ; Zhiying ZENG ; Yanfang ZHOU
Chinese Journal of Tissue Engineering Research 2026;30(2):451-458
BACKGROUND:Collagen combined with microneedling therapy has gradually become an important means of improving skin photoaging.OBJECTIVE:To summarize and explore the main mechanism and clinical application status of collagen combined with microneedle therapy.METHODS:PubMed,China National Knowledge Infrastructure,and ScienceDirect databases were searched for Chinese and English literature published before August 2024.Chinese and English search terms were"ultraviolet radiation,photoaging,collagen,microneedling,clinical applications."Finally,74 articles were included for summary.RESULTS AND CONCLUSION:Collagen treats skin photoaging through mechanisms such as inhibiting matrix metalloproteinase expression,retaining skin moisture,and reducing melanin formation.Microneedles can better promote the penetration of collagen into deep layers of the skin,breaking down the skin's barrier and increasing the absorption rate.Collagen combined with microneedles has various beneficial effects for treating skin photoaging,such as whitening,anti-wrinkle,improving skin elasticity,shrinking pores,and repairing skin barriers.It also has the advantages of easy operation,significant effects,and high safety.Currently,the research on collagen combined with microneedling therapy is still in its early stages,and achieving clinical application may become a key research direction in the future.The clinical application of collagen combined with microneedles for the treatment of photoaging still faces many challenges,such as exploring the optimal mechanical structure and materials of microneedles,selecting appropriate microneedle types,and insufficient clinical evidence that collagen combined with microneedles can further delay the treatment of skin photoaging.
2.Living microecological hydrogels promote skin wound healing
Xinxu HUANG ; Xin ZHANG ; Jian WANG
Chinese Journal of Tissue Engineering Research 2026;30(2):489-498
BACKGROUND:Living microecological hydrogels are a hot topic in the field of wound dressing and have received widespread attention.OBJECTIVE:To summarize the basic features and advantages of living microecological hydrogels,review the progress in the application of hydrogels loaded with different living organisms in skin wound repair in recent years.METHODS:The articles published from database inception to 2024 were retrieved from Web of Science,PubMed,CNKI,and WanFang databases with"cell,probiotics,phage,chlorella,algae,living microecological,hydrogel,skin,wound healing,wound repair"as search terms in English and Chinese.The articles for inclusion were screened according to the inclusion and exclusion criteria.Finally,108 articles were included for review.RESULTS AND CONCLUSION:The living microecological hydrogels have good biocompatibility,and the hydrogel can provide a suitable living environment for the loaded organisms,and play a barrier role between the living organisms and the wound to avoid potential threats.Compared with traditional wound dressings,the effect of living microecological hydrogels is sustainable and renewable.Biological regulation can keep the microenvironment at the wound site relatively stable,which can provide suitable conditions for wound healing for a long time and reduce the additional trauma caused by frequent dressing changes.Compared with the direct use of living organisms to promote wound healing,living microecological hydrogels can improve the survival rate of organisms and ensure their biological regulation.Living microecological hydrogels promote wound healing mainly by regulating the"inflammation"and"proliferation"stages in the wound healing process.The existing living microecological hydrogels mainly load organisms such as cells,probiotics,algae,and phages,which give hydrogels with different biological properties,so that they can promote wound healing by releasing substances required for wound healing or improving the wound environment,and have great application potential.To further expand the actual clinical application of living microecological hydrogels,it is necessary to further control the biosafety risks of active organisms in hydrogels in the future,avoid potential biological threats,and research the hydrogel matrix that can better adapt to the complex changes of human skin wounds and can support living organisms.
3.Effect and mechanism of collagen combined with microneedles in treatment of skin photoaging
Fengyi TAN ; Jiamin XIE ; Zhenfeng PAN ; Xinxu ZHANG ; Zetai ZHENG ; Zhiying ZENG ; Yanfang ZHOU
Chinese Journal of Tissue Engineering Research 2026;30(2):451-458
BACKGROUND:Collagen combined with microneedling therapy has gradually become an important means of improving skin photoaging.OBJECTIVE:To summarize and explore the main mechanism and clinical application status of collagen combined with microneedle therapy.METHODS:PubMed,China National Knowledge Infrastructure,and ScienceDirect databases were searched for Chinese and English literature published before August 2024.Chinese and English search terms were"ultraviolet radiation,photoaging,collagen,microneedling,clinical applications."Finally,74 articles were included for summary.RESULTS AND CONCLUSION:Collagen treats skin photoaging through mechanisms such as inhibiting matrix metalloproteinase expression,retaining skin moisture,and reducing melanin formation.Microneedles can better promote the penetration of collagen into deep layers of the skin,breaking down the skin's barrier and increasing the absorption rate.Collagen combined with microneedles has various beneficial effects for treating skin photoaging,such as whitening,anti-wrinkle,improving skin elasticity,shrinking pores,and repairing skin barriers.It also has the advantages of easy operation,significant effects,and high safety.Currently,the research on collagen combined with microneedling therapy is still in its early stages,and achieving clinical application may become a key research direction in the future.The clinical application of collagen combined with microneedles for the treatment of photoaging still faces many challenges,such as exploring the optimal mechanical structure and materials of microneedles,selecting appropriate microneedle types,and insufficient clinical evidence that collagen combined with microneedles can further delay the treatment of skin photoaging.
4.Living microecological hydrogels promote skin wound healing
Xinxu HUANG ; Xin ZHANG ; Jian WANG
Chinese Journal of Tissue Engineering Research 2026;30(2):489-498
BACKGROUND:Living microecological hydrogels are a hot topic in the field of wound dressing and have received widespread attention.OBJECTIVE:To summarize the basic features and advantages of living microecological hydrogels,review the progress in the application of hydrogels loaded with different living organisms in skin wound repair in recent years.METHODS:The articles published from database inception to 2024 were retrieved from Web of Science,PubMed,CNKI,and WanFang databases with"cell,probiotics,phage,chlorella,algae,living microecological,hydrogel,skin,wound healing,wound repair"as search terms in English and Chinese.The articles for inclusion were screened according to the inclusion and exclusion criteria.Finally,108 articles were included for review.RESULTS AND CONCLUSION:The living microecological hydrogels have good biocompatibility,and the hydrogel can provide a suitable living environment for the loaded organisms,and play a barrier role between the living organisms and the wound to avoid potential threats.Compared with traditional wound dressings,the effect of living microecological hydrogels is sustainable and renewable.Biological regulation can keep the microenvironment at the wound site relatively stable,which can provide suitable conditions for wound healing for a long time and reduce the additional trauma caused by frequent dressing changes.Compared with the direct use of living organisms to promote wound healing,living microecological hydrogels can improve the survival rate of organisms and ensure their biological regulation.Living microecological hydrogels promote wound healing mainly by regulating the"inflammation"and"proliferation"stages in the wound healing process.The existing living microecological hydrogels mainly load organisms such as cells,probiotics,algae,and phages,which give hydrogels with different biological properties,so that they can promote wound healing by releasing substances required for wound healing or improving the wound environment,and have great application potential.To further expand the actual clinical application of living microecological hydrogels,it is necessary to further control the biosafety risks of active organisms in hydrogels in the future,avoid potential biological threats,and research the hydrogel matrix that can better adapt to the complex changes of human skin wounds and can support living organisms.
5.Study of the inflammatory activating process in the early stage of Fusobacterium nucleatum infected PDLSCs.
Yushang WANG ; Lihua WANG ; Tianyong SUN ; Song SHEN ; Zixuan LI ; Xiaomei MA ; Xiufeng GU ; Xiumei ZHANG ; Ai PENG ; Xin XU ; Qiang FENG
International Journal of Oral Science 2023;15(1):8-8
Fusobacterium nucleatum (F. nucleatum) is an early pathogenic colonizer in periodontitis, but the host response to infection with this pathogen remains unclear. In this study, we built an F. nucleatum infectious model with human periodontal ligament stem cells (PDLSCs) and showed that F. nucleatum could inhibit proliferation, and facilitate apoptosis, ferroptosis, and inflammatory cytokine production in a dose-dependent manner. The F. nucleatum adhesin FadA acted as a proinflammatory virulence factor and increased the expression of interleukin(IL)-1β, IL-6 and IL-8. Further study showed that FadA could bind with PEBP1 to activate the Raf1-MAPK and IKK-NF-κB signaling pathways. Time-course RNA-sequencing analyses showed the cascade of gene activation process in PDLSCs with increasing durations of F. nucleatum infection. NFκB1 and NFκB2 upregulated after 3 h of F. nucleatum-infection, and the inflammatory-related genes in the NF-κB signaling pathway were serially elevated with time. Using computational drug repositioning analysis, we predicted and validated that two potential drugs (piperlongumine and fisetin) could attenuate the negative effects of F. nucleatum-infection. Collectively, this study unveils the potential pathogenic mechanisms of F. nucleatum and the host inflammatory response at the early stage of F. nucleatum infection.
Humans
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Fusobacterium nucleatum/metabolism*
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NF-kappa B/metabolism*
;
Periodontal Ligament/metabolism*
;
Signal Transduction
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Fusobacterium Infections/pathology*
;
Stem Cells/metabolism*
6.Application of 3D-printing templates for titanium plate contouring in pelvic ring surgery
Fan ZHANG ; Zhiming HE ; Tianxiu WU ; Ziqing LIU ; Zhizhong WANG ; Xinxu LI ; Lei PAN
Chinese Journal of Orthopaedic Trauma 2019;21(2):153-159
Objective To explore the application of 3D printing templates for titanium plate contouring (TrPC) in pelvic ring surgery.Methods From May 2016 to June 2018,12 patients with pelvic ring injury were treated by internal fixation with 24 titanium plates at Department of Orthopedics and Trauma,Sanshui People's Hospital.After solid digital models of the damaged pelves of the patients were reconstructed from their CT images via software,the hollowed ones were created with the wall thickness of 1.2 mm.After the models of damaged pelves were restored to be intact,the templates for titanium plate contouring were designed based on the area of fixation and manufactured via a stereo lithography apparatus.The total manufacturing time and material consumption of 3D printing TTPC were recorded and compared with those of 3D printing solid and hollow models.Before operation,the titanium plates were contoured according to the templates.The time for preoperative shaping the plate and the time for intraoperative preparing the plate before installation were recorded.After operation,all patients underwent CT scan again for reconstruction of 3D models of the postoperative pelves which were compared with their corresponding preoperative ones in the software.Matta criteria were used to evaluate the pelvic reduction and Majeed criteria to evaluate the functional recovery 6 months after operation.Results All patients were followed up for 6 to 28 months (average,16.3 months).The total manufacturing time and material consumption of 3D printing a TTPC were significantly less than those of 3D printing a solid or hollow model (P < 0.05).The time for preoperative shaping the plate was 12.8 ± 4.1 minutes and the time for intraoperative preparing the plate was 1.4 ± 1.1 minutes.The average deviation between the preoperative 3D models and the postoperative ones was 1.4 ± 1.1 mm.According to the Matta criteria for pelvic reduction,6 cases were excellent,4 good and 2 satisfactory.According to the Majeed criteria,the pelvic functions were excellent in 7 cases,good in 4,and fair in one.Conclusion Application of 3D printing TTPC in the surgery for pelvic ring injury is advantageous in lowering the costs of 3D printing and reducing the intraoperative time for contouring the titanium plate,leading to satisfactory outcomes.
7.Risk factors for early death in patients with cervical spinal cord injury
Xinxu JIAO ; Shiqing FENG ; Tieqiang DING ; Jingwei LI ; Xueli ZHANG ; Shucai DENG ; Wenxue JIANG ; Jinggui WANG
Chinese Journal of Trauma 2011;27(5):423-427
Objective To explore the causes and risk factors affecting early death in patients with traumatic cervical spinal cord injury (SCI). Methods Clinical data of 553 patients with traumatic cervical SCI were analyzed retrospectively to discuss the related factors affecting early death of patients with traumatic cervical SCI by using univariate analysis and multivariate logistic regression analysis. Results The early mortality of the patients with traumatic cervical SCI was 4.0% ( 22/553 ). The main causes of the early death were respiratory failure in nine patients (40.9%) and electrolyte disorders in five (22.7%). Univariate analysis showed that age, cervical spinal cord injury severity, complications in respiratory, cardiovascular, digestive systems and electrolyte disturbance as well as tracheotomy were considered statistically significant for early death in patients with traumatic cervical SCI ( P < 0, 05 ). Multivariate logistic regression analysis showed that age, cervical SCI severity, complications in respiratory,cardiovascular system and electrolyte disturbance as well as tracheotomy. Conclusion Severe cervical SCI, combined respiratory, cardiovascular system and electrolyte disorder complications as well as tracheotomy are high risk factors for the early death in patients with traumatic cervical SCI.

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