BACKGROUND The proteomic signature or profile best describes the functional component of a cell during its routine metabolic and survival activities.Additional complexity in differentiation and maturation is observed ...BACKGROUND The proteomic signature or profile best describes the functional component of a cell during its routine metabolic and survival activities.Additional complexity in differentiation and maturation is observed in stem/progenitor cells.The role of functional proteins at the cellular level has long been attributed to anatomical niches,and stem cells do not deflect from this attribution.Human dental stem cells(hDSCs),on the whole,are a combination of mesenchymal and epithelial coordinates observed throughout craniofacial bones to pulp.AIM To specify the proteomic profile and compare each type of hDSC with other mesenchymal stem cells(MSCs)of various niches.Furthermore,we analyzed the characteristics of the microenvironment and preconditioning changes associated with the proteomic profile of hDSCs and their influence on committed lineage differentiation.METHODS Literature searches were performed in PubMed,EMBASE,Scopus,and Web of Science databases,from January 1990 to December 2018.An extra inquiry of the grey literature was completed on Google Scholar,ProQuest,and OpenGrey.Relevant MeSH terms(PubMed)and keywords related to dental stem cells were used independently and in combination.RESULTS The initial search resulted in 134 articles.Of the 134 full-texts assessed,96 articles were excluded and 38 articles that met the eligibility criteria were reviewed.The overall assessment of hDSCs and other MSCs suggests that differences in the proteomic profile can be due to stem cellular complexity acquired from varied tissue sources during embryonic development.However,our comparison of the proteomic profile suffered inconsistencies due to the heterogeneity of various hDSCs.We believe that the existence of a heterogeneous population of stem cells at a given niche determines the modalities of regeneration or tissue repair.Added prominences to the differences present between various hDSCs have been reasoned out.CONCLUSION Systematic review on proteomic studies of various hDSCs are promising as an eye-opener for revisiting the proteomic profile and in-depth analysis to elucidate more refined mechanisms of hDSC functionalities.展开更多
Dental stem cells can differentiate into different types of cells.Dental pulp stem cells,stem cells from human exfoliated deciduous teeth,periodontal ligament stem cells,stem cells from apical papilla,and dental folli...Dental stem cells can differentiate into different types of cells.Dental pulp stem cells,stem cells from human exfoliated deciduous teeth,periodontal ligament stem cells,stem cells from apical papilla,and dental follicle progenitor cells are five different types of dental stem cells that have been identified during different stages of tooth development.The availability of dental stem cells from discarded or removed teeth makes them promising candidates for tissue engineering.In recent years,three-dimensional(3D)tissue scaffolds have been used to reconstruct and restore different anatomical defects.With rapid advances in 3D tissue engineering,dental stem cells have been used in the regeneration of 3D engineered tissue.This review presents an overview of different types of dental stem cells used in 3D tissue regeneration,which are currently the most common type of stem cells used to treat human tissue conditions.展开更多
NOTCH plays a role in regulating stem cell function and fate decision.It is involved in tooth development and injury repair.Information regarding NOTCH expression in human dental root apical papilla(AP)and its residin...NOTCH plays a role in regulating stem cell function and fate decision.It is involved in tooth development and injury repair.Information regarding NOTCH expression in human dental root apical papilla(AP)and its residing stem cells(SCAP)is limited.Here we investigated the expression of NOTCH3,its ligand JAG1,and mesenchymal stem cell markers CD146 and STRO-1 in the AP or in the primary cultures of SCAP isolated from AP.Our in situ immunostaining showed that in the AP NOTCH3 and CD146 were co-expressed and associated with blood vessels having NOTCH3 located more peripherally.In cultured SCAP,NOTCH3 and JAG1 were co-expressed.Flow cytometry analysis showed that 7%,16%and 98%of the isolated SCAP were positive for NOTCH3,STRO-1 and CD146,respectively with a rare 1.5%subpopulation of SCAP co-expressing all three markers.The expression level of NOTCH3 reduced when SCAP underwent osteogenic differentiation.Our findings are the first step towards defining the regulatory role of NOTCH3 in SCAP fate decision.展开更多
根尖牙乳头干细胞(stem cells from apical papilla,SCAP)具有很强的多系分化潜能,其中成骨分化可以应用于骨组织再生,为口腔颌骨缺损治疗提供新思路。成骨分化是个复杂的网络调控过程,诸如各种细胞因子、表观遗传物质、各种信号分子和...根尖牙乳头干细胞(stem cells from apical papilla,SCAP)具有很强的多系分化潜能,其中成骨分化可以应用于骨组织再生,为口腔颌骨缺损治疗提供新思路。成骨分化是个复杂的网络调控过程,诸如各种细胞因子、表观遗传物质、各种信号分子和信号通路等内源性物质均可产生不同程度的影响。这些因素相互作用可以促进SCAP的增殖、迁移和成骨分化,但其在SCAP成骨分化的不同进程中的具体机制和内在联系各不相同。对近年来有关促进SCAP成骨分化的各种因素及其可能的调控机制研究文献进行综述,以期为其进一步的应用研究提供新信息。展开更多
Extracellular vesicles(EVs)derived from mesenchymal stem cells(MSCs)have emerged as a new mode of intercellular crosstalk and are responsible for many of the thera-peutic effects of MSCs.To promote the application of ...Extracellular vesicles(EVs)derived from mesenchymal stem cells(MSCs)have emerged as a new mode of intercellular crosstalk and are responsible for many of the thera-peutic effects of MSCs.To promote the application of MSC-EVs,recent studies have focused on the manipulation of MSCs to improve the production of EVs and EV-mediated activities.The current paper details an optimization method using non-invasive low-intensity pulsed ul-trasound(LIPUS)as the stimulation for improving oral MSC-EV production and effectiveness.Stem cells from apical papilla(SCAP),a type of oral mesenchymal stem cell,displayed inten-sity-dependent pro-osteogenic and anti-inflammatory responses to LIPUS without significant cytotoxicity or apoptosis.The stimuli increased the secretion of EVs by promoting the expres-sion of neutral sphingomyelinases in SCAP.In addition,EVs from LIPUS-induced SCAP exhibited stronger efficacy in promoting the osteogenic differentiation and anti-inflammation of peri-odontal ligament cells in vitro and alleviating oral inflammatory bone loss in vivo.In addition,LIPUS stimulation affected the physical characteristics and miRNA cargo of SCAP-EVs.Further investigations indicated that miR-935 is an important mediator of the pro-osteogenic and anti-inflammatory capabilities of LIPUS-induced SCAP-EVs.Taken together,these findings demonstrate that LIPUS is a simple and effective physical method to optimize SCAP-EV produc-tion and efficacy.展开更多
The teeth and their supporting tissues provide an easily accessible source of oral stem cells.These different stem cell populations have been extensively studied for their properties,such as high plasticity and clonog...The teeth and their supporting tissues provide an easily accessible source of oral stem cells.These different stem cell populations have been extensively studied for their properties,such as high plasticity and clonogenicity,expressing stem cell markers and potency for multilineage differentiation in vitro.Such cells with stem cell properties have been derived and characterised from the dental pulp tissue,the apical papilla region of roots in development,as well as the supporting tissue of periodontal ligament that anchors the tooth within the alveolar socket and the soft gingival tissue.Studying the dental pulp stem cell populations in a continuously growing mouse incisor model,as a traceable in vivo model,enables the researchers to study the properties,origin and behaviour of mesenchymal stem cells.On the other side,the oral mucosa with its remarkable scarless wound healing phenotype,offers a model to study a well-coordinated system of healing because of coordinated actions between epithelial,mesenchymal and immune cells populations.Although described as homogeneous cell populations following their in vitro expansion,the increasing application of approaches that allow tracing of individual cells over time,along with single-cell RNA-sequencing,reveal that different oral stem cells are indeed diverse populations and there is a highly organised map of cell populations according to their location in resident tissues,elucidating diverse stem cell niches within the oral tissues.This review covers the current knowledge of diverse oral stem cells,focusing on the new approaches in studying these cells.These approaches“decode”and“map”the resident cells populations of diverse oral tissues and contribute to a better understanding of the“stem cells niche architecture and interactions.Considering the high accessibility and simplicity in obtaining these diverse stem cells,the new findings offer potential in development of translational tissue engineering approaches and innovative therapeutic solutions.展开更多
目的:构建根尖牙乳头干细胞(stem cells from apical papilla,SCAP)细胞膜片,并对其组织学形态和成骨/成牙本质分化性能进行研究,为SCAP细胞膜片应用于年轻恒牙牙髓再生提供实验基础。方法:分离年轻恒牙第三磨牙牙乳头,进行SCAP原代培...目的:构建根尖牙乳头干细胞(stem cells from apical papilla,SCAP)细胞膜片,并对其组织学形态和成骨/成牙本质分化性能进行研究,为SCAP细胞膜片应用于年轻恒牙牙髓再生提供实验基础。方法:分离年轻恒牙第三磨牙牙乳头,进行SCAP原代培养。采用流式细胞术检测SCAP表面标志物,茜素红S染色检测其成骨/成牙本质分化。取第3代SCAP,膜片诱导液连续培养14d,形成细胞膜片。对SCAP细胞膜片进行H-E染色,组织学观察;流式细胞术检测SCAP细胞膜片的细胞周期变化;实时定量PCR(qRT-PCR)检测细胞膜片中Runx2、ALP、Col-I基因表达;Western印迹法检测细胞膜片Runx2、ALP蛋白表达水平。采用SPSS17.0软件包对实验结果进行统计学分析,两样本细胞周期检测和q RT-PCR基因检测均数的比较采用t检验。结果:组织学H-E染色显示,SCAP细胞膜片由5~6层细胞组成,细胞量大,细胞之间排列紧密,且富含细胞外基质。SCAP细胞膜片细胞周期G2+S期所占比例较低,而G1期比例较高,提示SCAP细胞膜片增殖性能受到显著抑制(P<0.05)。同时,qRT-PCR和Western印迹法结果显示,与SCAP相比,SCAP细胞膜片成骨/成牙本质分化能力显著升高(P<0.05)。结论:SCAP细胞膜片富含细胞外基质,且成骨/成牙本质分化能力高于单纯SCAP,SCAP细胞膜片应用于牙髓再生更具有优势。展开更多
根尖周牙乳头干细胞(Stem Cells from the Apical Papilla,SCAP)存在于未完全发育成形的恒牙根尖周组织中,是具有高度增生、自我更新能力和多向分化潜能的成体干细胞。SCAP是牙根发育时成牙本质细胞的重要来源,在牙根的形成和发育中起...根尖周牙乳头干细胞(Stem Cells from the Apical Papilla,SCAP)存在于未完全发育成形的恒牙根尖周组织中,是具有高度增生、自我更新能力和多向分化潜能的成体干细胞。SCAP是牙根发育时成牙本质细胞的重要来源,在牙根的形成和发育中起着重要的作用,SCAP的研究将对牙髓修复,牙本质再生以及生物学牙根组织工程产生重要作用。该文就其研究现状作一综述。展开更多
基金Deanship of Scientific Research,King Khalid University through Large Research Group Project,No.G.R.P 2/27/40.
文摘BACKGROUND The proteomic signature or profile best describes the functional component of a cell during its routine metabolic and survival activities.Additional complexity in differentiation and maturation is observed in stem/progenitor cells.The role of functional proteins at the cellular level has long been attributed to anatomical niches,and stem cells do not deflect from this attribution.Human dental stem cells(hDSCs),on the whole,are a combination of mesenchymal and epithelial coordinates observed throughout craniofacial bones to pulp.AIM To specify the proteomic profile and compare each type of hDSC with other mesenchymal stem cells(MSCs)of various niches.Furthermore,we analyzed the characteristics of the microenvironment and preconditioning changes associated with the proteomic profile of hDSCs and their influence on committed lineage differentiation.METHODS Literature searches were performed in PubMed,EMBASE,Scopus,and Web of Science databases,from January 1990 to December 2018.An extra inquiry of the grey literature was completed on Google Scholar,ProQuest,and OpenGrey.Relevant MeSH terms(PubMed)and keywords related to dental stem cells were used independently and in combination.RESULTS The initial search resulted in 134 articles.Of the 134 full-texts assessed,96 articles were excluded and 38 articles that met the eligibility criteria were reviewed.The overall assessment of hDSCs and other MSCs suggests that differences in the proteomic profile can be due to stem cellular complexity acquired from varied tissue sources during embryonic development.However,our comparison of the proteomic profile suffered inconsistencies due to the heterogeneity of various hDSCs.We believe that the existence of a heterogeneous population of stem cells at a given niche determines the modalities of regeneration or tissue repair.Added prominences to the differences present between various hDSCs have been reasoned out.CONCLUSION Systematic review on proteomic studies of various hDSCs are promising as an eye-opener for revisiting the proteomic profile and in-depth analysis to elucidate more refined mechanisms of hDSC functionalities.
基金Supported by Chang Gung Memorial Hospital,Linkou,Taiwan,No.CORPG3K0021 and No.CORPG3K0191.
文摘Dental stem cells can differentiate into different types of cells.Dental pulp stem cells,stem cells from human exfoliated deciduous teeth,periodontal ligament stem cells,stem cells from apical papilla,and dental follicle progenitor cells are five different types of dental stem cells that have been identified during different stages of tooth development.The availability of dental stem cells from discarded or removed teeth makes them promising candidates for tissue engineering.In recent years,three-dimensional(3D)tissue scaffolds have been used to reconstruct and restore different anatomical defects.With rapid advances in 3D tissue engineering,dental stem cells have been used in the regeneration of 3D engineered tissue.This review presents an overview of different types of dental stem cells used in 3D tissue regeneration,which are currently the most common type of stem cells used to treat human tissue conditions.
基金This work was supported in part by a grant from the Emirates Foundation e United Arab Emirates UAE University/NRF Grant and a grant from the National Institutes of Health RO1 DE019156(G.T.-J.H.).The authors deny any conflicts of interest.
文摘NOTCH plays a role in regulating stem cell function and fate decision.It is involved in tooth development and injury repair.Information regarding NOTCH expression in human dental root apical papilla(AP)and its residing stem cells(SCAP)is limited.Here we investigated the expression of NOTCH3,its ligand JAG1,and mesenchymal stem cell markers CD146 and STRO-1 in the AP or in the primary cultures of SCAP isolated from AP.Our in situ immunostaining showed that in the AP NOTCH3 and CD146 were co-expressed and associated with blood vessels having NOTCH3 located more peripherally.In cultured SCAP,NOTCH3 and JAG1 were co-expressed.Flow cytometry analysis showed that 7%,16%and 98%of the isolated SCAP were positive for NOTCH3,STRO-1 and CD146,respectively with a rare 1.5%subpopulation of SCAP co-expressing all three markers.The expression level of NOTCH3 reduced when SCAP underwent osteogenic differentiation.Our findings are the first step towards defining the regulatory role of NOTCH3 in SCAP fate decision.
文摘根尖牙乳头干细胞(stem cells from apical papilla,SCAP)具有很强的多系分化潜能,其中成骨分化可以应用于骨组织再生,为口腔颌骨缺损治疗提供新思路。成骨分化是个复杂的网络调控过程,诸如各种细胞因子、表观遗传物质、各种信号分子和信号通路等内源性物质均可产生不同程度的影响。这些因素相互作用可以促进SCAP的增殖、迁移和成骨分化,但其在SCAP成骨分化的不同进程中的具体机制和内在联系各不相同。对近年来有关促进SCAP成骨分化的各种因素及其可能的调控机制研究文献进行综述,以期为其进一步的应用研究提供新信息。
基金supported by the National Natural Science Foundation of China(No.81771082,81800985,82170968,31971282)the 2019 Chongqing Graduate Tutor Team Construction Project(No.dstd201903),Chinathe Natural Science Foundation of Chongqing(No.cstc2019jcyj-msxmX0851),China.
文摘Extracellular vesicles(EVs)derived from mesenchymal stem cells(MSCs)have emerged as a new mode of intercellular crosstalk and are responsible for many of the thera-peutic effects of MSCs.To promote the application of MSC-EVs,recent studies have focused on the manipulation of MSCs to improve the production of EVs and EV-mediated activities.The current paper details an optimization method using non-invasive low-intensity pulsed ul-trasound(LIPUS)as the stimulation for improving oral MSC-EV production and effectiveness.Stem cells from apical papilla(SCAP),a type of oral mesenchymal stem cell,displayed inten-sity-dependent pro-osteogenic and anti-inflammatory responses to LIPUS without significant cytotoxicity or apoptosis.The stimuli increased the secretion of EVs by promoting the expres-sion of neutral sphingomyelinases in SCAP.In addition,EVs from LIPUS-induced SCAP exhibited stronger efficacy in promoting the osteogenic differentiation and anti-inflammation of peri-odontal ligament cells in vitro and alleviating oral inflammatory bone loss in vivo.In addition,LIPUS stimulation affected the physical characteristics and miRNA cargo of SCAP-EVs.Further investigations indicated that miR-935 is an important mediator of the pro-osteogenic and anti-inflammatory capabilities of LIPUS-induced SCAP-EVs.Taken together,these findings demonstrate that LIPUS is a simple and effective physical method to optimize SCAP-EV produc-tion and efficacy.
基金The study was supported by the Czech Science Foundation,project 21-21409S(to PS)and XZ is supported by a China Scholarship Council award.
文摘The teeth and their supporting tissues provide an easily accessible source of oral stem cells.These different stem cell populations have been extensively studied for their properties,such as high plasticity and clonogenicity,expressing stem cell markers and potency for multilineage differentiation in vitro.Such cells with stem cell properties have been derived and characterised from the dental pulp tissue,the apical papilla region of roots in development,as well as the supporting tissue of periodontal ligament that anchors the tooth within the alveolar socket and the soft gingival tissue.Studying the dental pulp stem cell populations in a continuously growing mouse incisor model,as a traceable in vivo model,enables the researchers to study the properties,origin and behaviour of mesenchymal stem cells.On the other side,the oral mucosa with its remarkable scarless wound healing phenotype,offers a model to study a well-coordinated system of healing because of coordinated actions between epithelial,mesenchymal and immune cells populations.Although described as homogeneous cell populations following their in vitro expansion,the increasing application of approaches that allow tracing of individual cells over time,along with single-cell RNA-sequencing,reveal that different oral stem cells are indeed diverse populations and there is a highly organised map of cell populations according to their location in resident tissues,elucidating diverse stem cell niches within the oral tissues.This review covers the current knowledge of diverse oral stem cells,focusing on the new approaches in studying these cells.These approaches“decode”and“map”the resident cells populations of diverse oral tissues and contribute to a better understanding of the“stem cells niche architecture and interactions.Considering the high accessibility and simplicity in obtaining these diverse stem cells,the new findings offer potential in development of translational tissue engineering approaches and innovative therapeutic solutions.
文摘根尖周牙乳头干细胞(Stem Cells from the Apical Papilla,SCAP)存在于未完全发育成形的恒牙根尖周组织中,是具有高度增生、自我更新能力和多向分化潜能的成体干细胞。SCAP是牙根发育时成牙本质细胞的重要来源,在牙根的形成和发育中起着重要的作用,SCAP的研究将对牙髓修复,牙本质再生以及生物学牙根组织工程产生重要作用。该文就其研究现状作一综述。