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Human-Induced Hepatocytes-Derived Extracellular Vesicles Ameliorated Liver Fibrosis in Mice Via Suppression of TGF-β1/Smad Signaling and Activation of Nrf2/HO-1 Signaling. 人诱导的肝细胞衍生的细胞外小泡通过抑制TGF-β1/Smad信号传导和激活Nrf2/HO-1信号传导改善小鼠肝纤维化。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-10-01 Epub Date: 2023-07-24 DOI: 10.1089/scd.2023.0110
Wenjing Liu, Jiajun Wu, Huiying Cao, Chen Ma, Zhitao Wu, Youxi Tian, Chenhui Ma, Hong Qiu, Guoyu Pan

Liver fibrosis is a wound-healing response caused by persistent liver injury and often occurs in chronic liver diseases. Effective treatments for liver fibrosis are still pending. Recent studies have revealed that extracellular vesicles (EVs) derived from primary hepatocytes (Hep-EVs) have therapeutic potential for multiple liver diseases. However, Hep-EVs are difficult to manufacture in bulk because of the limited sources of primary hepatocytes. Human-induced hepatocytes (hiHep) are hepatocyte-like cells that can expand in vitro, and their cell culture supernatant is thus an almost unlimited resource for EVs. This study aimed to investigate the potential therapeutic effects of EVs derived from hiHeps. hiHep-EVs inhibited the expression of inflammatory genes and the secretion of inflammation-related cytokines, and suppressed the activation of hepatic stellate cells by inhibiting the transforming growth factor (TGF)-β1/Smad signaling pathway. The anti-inflammatory and antifibrotic effects of hiHep-EVs were similar to those of mesenchymal stem cell-EVs. Furthermore, the administration of hiHep-EVs ameliorated oxidative stress, inflammation, and fibrosis in a CCl4-induced liver fibrosis mouse model. The expression of α smooth muscle actin, collagen I, and collagen III was reduced, which may be attributed to the regulation of matrix metalloproteinase (MMP)-9, tissue inhibitor of metalloproteinases (TIMP)-1, and TIMP-2 by hiHep-EVs, and the protein expression of Nrf2, HO-1, and NQO1 was increased. Taken together, our results suggested that hiHep-EVs alleviated liver fibrosis by activating the Nrf2/HO-1 signaling pathway and inhibiting the TGF-β1/Smad signaling pathway. This study revealed the hepatoprotective effect of hiHep-EVs, and provided a new approach to treating liver fibrosis.

肝纤维化是由持续性肝损伤引起的伤口愈合反应,经常发生在慢性肝病中。肝纤维化的有效治疗方法尚待确定。最近的研究表明,来源于原代肝细胞的细胞外小泡(EVs)对多种肝病具有治疗潜力。然而,由于原代肝细胞的来源有限,Hep-EV很难批量生产。人诱导肝细胞(hiHep)是一种可以在体外扩增的肝细胞样细胞,因此其细胞培养上清液几乎是EVs的无限资源。本研究旨在探讨hiHeps衍生EVs的潜在治疗效果。hiHep-EVs抑制炎症基因的表达和炎症相关细胞因子的分泌,并通过抑制转化生长因子(TGF)-β1/Smad信号通路抑制肝星状细胞的活化。hiHep-EVs的抗炎和抗纤维化作用与间充质干细胞EVs相似。此外,在CCl4诱导的肝纤维化小鼠模型中,给予hiHep-EVs改善了氧化应激、炎症和纤维化。α平滑肌肌动蛋白、I型胶原和III型胶原的表达减少,这可能归因于hiHep-EVs对基质金属蛋白酶(MMP)-9、金属蛋白酶组织抑制剂(TIMP)-1和TIMP-2的调节,以及Nrf2、HO-1和NQO1的蛋白表达增加。总之,我们的研究结果表明,hiHep-EVs通过激活Nrf2/HO-1信号通路和抑制TGF-β1/Smad信号通路来减轻肝纤维化。本研究揭示了hiHep-EVs的保肝作用,为治疗肝纤维化提供了新的途径。
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引用次数: 0
Small Extracellular Vesicles Maintain Homeostasis of Senescent Mesenchymal Stem Cells at Least Through Excreting Harmful Lipids. 细胞外小泡至少通过排泄有害脂质维持衰老间充质干细胞的稳态。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-09-01 DOI: 10.1089/scd.2023.0079
Liping Wang, Huan Zhang, Xian Xiao, Shihua Wang, Robert Chunhua Zhao

Mesenchymal stem cells (MSCs) play an essential role in multiple physiological processes in vivo and a promising cell-based therapy for various diseases. Nonetheless, MSCs suffer from senescence with expansion culture, leading to a limitation for their clinical application. Recently, it was reported that small extracellular vesicles (sEVs) are involved in regulation of senescence in tumor cells and fibroblasts. However, the biological roles of sEVs in senescent MSCs (Sen MSCs) are poorly understood. In this study, we established a replicative senescence model of MSCs by successive passages and compared the phenotypic changes between presenescent MSCs (Pre-Sen MSCs) and Sen MSCs and found that Sen MSCs exhibited a diminished adipogenic and osteogenic differentiation potential and elevated senescence-associated secretory phenotype levels. In addition, we found that sEV secretion was increased in Sen MSCs, and inhibition of sEV secretion led to apoptosis, DNA damage, and decreased cell viability, suggesting that increased sEV secretion plays an important role in maintaining Sen MSC homeostasis. To further investigate the molecular mechanisms, metabolomic profiling of Pre-Sen MSC-derived sEVs (Pre-Sen-sEVs) and Sen MSC-derived sEVs (Sen-sEVs) was performed. The results showed that lipid metabolites were significantly increased in Sen-sEVs and these significantly upregulated lipid metabolites were shown to be toxic for inducing cellular senescence and apoptosis in previous studies. Kyoto Encyclopedia of Genes and Genomes analysis revealed enrichment of differential metabolites between Pre-Sen-sEVs and Sen-sEVs mainly in 25 signaling pathways, of which 21 metabolic pathways have been shown to be closely associated with senescence. Taken together, our findings suggested that increased sEV secretion maintains Sen MSC homeostasis, at least in part, by excreting harmful lipids, thus providing new insights into the regulation of senescence by sEVs.

间充质干细胞(Mesenchymal stem cells, MSCs)在体内多种生理过程中发挥着重要作用,是一种有前景的基于细胞的多种疾病治疗方法。然而,间充质干细胞在扩增培养过程中存在衰老问题,这限制了其临床应用。最近有报道称,小细胞外囊泡(sev)参与肿瘤细胞和成纤维细胞衰老的调控。然而,sev在衰老MSCs (Sen MSCs)中的生物学作用尚不清楚。在本研究中,我们通过连续传代建立了MSCs的复制性衰老模型,并比较了现存MSCs (Pre-Sen MSCs)和Sen MSCs之间的表型变化,发现Sen MSCs的成脂和成骨分化潜力降低,衰老相关分泌表型水平升高。此外,我们发现Sen MSCs中sEV分泌增加,抑制sEV分泌导致细胞凋亡、DNA损伤和细胞活力下降,表明sEV分泌增加在维持Sen MSC稳态中起重要作用。为了进一步研究分子机制,对Pre-Sen msc衍生的sev (Pre-Sen- sev)和Sen msc衍生的sev (Sen- sev)进行了代谢组学分析。结果表明,在sen - sev中,脂质代谢物显著增加,这些显著上调的脂质代谢物在先前的研究中被证明具有诱导细胞衰老和凋亡的毒性。京都基因与基因组百科分析显示,pre - sen - sev和sen - sev主要在25条信号通路中富集差异代谢物,其中21条代谢通路已被证明与衰老密切相关。综上所述,我们的研究结果表明,sEV分泌的增加至少在一定程度上通过排泄有害脂质来维持Sen MSC的稳态,从而为sEV调节衰老提供了新的见解。
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引用次数: 0
Blastocyst Cell Number and Allocation Affect the Developmental Potential and Transcriptome of Bovine Somatic Cell Nuclear Transfer Embryos. 囊胚细胞数量和分配对牛体细胞核移植胚胎发育潜能和转录组的影响。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-09-01 DOI: 10.1089/scd.2022.0292
Pablo J Ross, Marcelo D Goissis, João P N Martins, James L Chitwood, J Richard Pursley, Guilherme J M Rosa, Jose B Cibelli

Cloning cattle using somatic cell nuclear transfer (SCNT) is inefficient. Although the rate of development of SCNT embryos in vitro is similar to that of fertilized embryos, most fail to develop into healthy calves. In this study, we aimed to identify developmentally competent embryos according to blastocyst cell composition and perform transcriptome analysis of single embryos. Transgenic SCNT embryos expressing nuclear-localized HcRed gene at day 7 of development were imaged by confocal microscopy for cell counting and individually transferred to recipient heifers. Pregnancy rates were determined by ultrasonography. Embryos capable of establishing pregnancy by day 35 had an average of 117 ± 6 total cells, whereas embryos with an average of 128 ± 5 cells did not establish pregnancy (P < 0.05). A lesser average number of 41 ± 3 cells in the inner cell mass (ICM) also resulted in pregnancies (<0.05) than a greater number of 48 ± 2 cells in the ICM. Single embryos were then subjected to RNA sequencing for transcriptome analysis. Using weighted gene coexpression network analysis, we identified clusters of genes in which gene expression correlated with the number of total cells or ICM cells. Gene ontology analysis of these clusters revealed enriched biological processes in coenzyme metabolic process, intracellular signaling cascade, and glucose catabolic process, among others. We concluded that SCNT embryos with fewer total and ICM cell numbers resulted in greater pregnancy establishment rates and that these differences are reflected in the transcriptome of such embryos.

利用体细胞核移植(SCNT)克隆牛是低效的。尽管体外SCNT胚胎的发育速度与受精胚胎相似,但大多数胚胎不能发育成健康的小牛。在这项研究中,我们的目的是根据囊胚细胞组成鉴定发育正常的胚胎,并对单个胚胎进行转录组分析。在发育第7天表达核定位HcRed基因的转基因SCNT胚胎通过共聚焦显微镜成像进行细胞计数,并单独转移给受体母牛。超声检查妊娠率。在第35天能够建立妊娠的胚胎平均有117±6个细胞,而胚胎平均有128±5个细胞不能建立妊娠(P
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引用次数: 0
Correction to: In Vitro Transdifferentiation Potential of Equine Mesenchymal Stem Cells into Schwann-Like Cells, by Lucas Vinícius de Oliveira Ferreira et al. Stem Cells and Development 2023;32(13-14):422-432; doi: 10.1089/scd.2022.0274. 更正:Lucas Vinícius de Oliveira Ferreira 等人撰写的《马间充质干细胞向许旺样细胞的体外转分化潜能》。 干细胞与发育》2023;32(13-14):422-432; doi: 10.1089/scd.2022.0274。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-09-01 Epub Date: 2023-08-16 DOI: 10.1089/scd.2022.0274.correx
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引用次数: 0
Identification and Functional Evaluation of Alternative Splice Variants of Dax1 in Mouse Embryonic Stem Cells. 小鼠胚胎干细胞中Dax1选择性剪接变异体的鉴定和功能评价。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-09-01 Epub Date: 2023-07-14 DOI: 10.1089/scd.2023.0037
Jiaqi Wang, Yi Huang, Chen Zhang, Yan Ruan, Yanping Tian, Fengsheng Wang, Yixiao Xu, Meng Yu, Jiangjun Wang, Yuda Cheng, Lianlian Liu, Ran Yang, Jiali Wang, Yi Yang, Jiaxiang Xiong, Yan Hu, Rui Jian, Bing Ni, Wei Wu, Junlei Zhang

Dax1 (Nr0b1; Dosage-sensitive sex reversal-adrenal hypoplasia congenital on the X-chromosome gene-1) is an important component of the transcription factor network that governs pluripotency in mouse embryonic stem cells (ESCs). Functional evaluation of alternative splice variants of pluripotent transcription factors has shed additional insight on the maintenance of ESC pluripotency and self-renewal. Dax1 splice variants have not been identified and characterized in mouse ESCs. We identified 18 new transcripts of Dax1 with putative protein-coding properties and compared their protein structures with known Dax1 protein (Dax1-472). The expression pattern analysis showed that the novel isoforms were cotranscribed with Dax1-472 in mouse ESCs, but they had transcriptional heterogeneity among single cells and the subcellular localization of the encoded proteins differed. Cell function experiments indicated that Dax1-404 repressed Gata6 transcription and functionally replaced Dax1-472, while Dax1-38 and Dax1-225 partially antagonized Dax1-472 transcriptional repression. This study provided a comprehensive characterization of the Dax1 splice variants in mouse ESCs and suggested complex effects of Dax1 variants in a self-renewal regulatory network.

Dax1(Nr0b1;剂量敏感性逆转X染色体基因-1上先天性肾上腺发育不全)是控制小鼠胚胎干细胞(ESCs)多能性的转录因子网络的重要组成部分。多能干转录因子的选择性剪接变异体的功能评估为ESC多能干性和自我更新的维持提供了额外的见解。Dax1剪接变异体尚未在小鼠ESCs中鉴定和表征。我们鉴定了18个具有假定蛋白质编码特性的Dax1新转录本,并将它们的蛋白质结构与已知的Dax1蛋白质(Dax1-472)进行了比较。表达模式分析表明,新的异构体在小鼠ESCs中与Dax1-472共转录,但它们在单细胞之间具有转录异质性,编码蛋白的亚细胞定位不同。细胞功能实验表明,Dax1404抑制了Gata6的转录,并在功能上取代了Dax1-472,而Dax1-38和Dax1-25部分拮抗了Dax1-422的转录抑制。本研究提供了小鼠ESCs中Dax1剪接变异体的全面表征,并提出了Dax1变异体在自我更新调控网络中的复杂作用。
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引用次数: 0
Apelin-Overexpressing Neural Stem Cells in Conjunction with a Silk Fibroin Nanofiber Scaffold for the Treatment of Traumatic Brain Injury. 过表达apelin的神经干细胞联合丝素纳米纤维支架治疗创伤性脑损伤。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-09-01 DOI: 10.1089/scd.2023.0008
Tianwen Li, Qisheng Tang, Jiaxin Xu, Xiangru Ye, Kezhu Chen, Junjie Zhong, Jianhong Zhu, Shijun Lu, Tongming Zhu

Traumatic brain injury (TBI), especially moderate or severe TBI, is one of the most devastating injuries to the nervous system, as the existing therapies for neurological defect repair have difficulty achieving satisfactory results. Neural stem cells (NSCs) therapy is a potentially effective treatment option, especially after specific genetic modifications and when used in combination with biomimetic biological scaffolds. In this study, tussah silk fibroin (TSF) scaffolds with interconnected nanofibrous structures were fabricated using a top-down method. We constructed the apelin-overexpressing NSCs that were cocultured with a TSF nanofiber scaffold (TSFNS) that simulated the extracellular matrix in vitro. To verify the therapeutic efficacy of engineered NSCs in vivo, we constructed TBI models and randomized the C57BL/6 mice into three groups: a control group, an NSC-ctrl group (transplantation of NSCs integrated on TSFNS), and an NSC-apelin group (transplantation of apelin-overexpressing NSCs integrated on TSFNS). The neurological functions of the model mice were evaluated in stages. Specimens were obtained 24 days after transplantation for immunohistochemistry, immunofluorescence, and western blot experiments, and statistical analysis was performed. The results showed that the combination of the TSFNS and apelin overexpression guided extension and elevated the proliferation and differentiation of NSCs both in vivo and in vitro. Moreover, the transplantation of TSFNS-NSCs-Apelin reduced lesion volume, enhanced angiogenesis, inhibited neuronal apoptosis, reduced blood-brain barrier damage, and mitigated neuroinflammation. In summary, TSFNS-NSC-Apelin therapy could build a microenvironment that is more conducive to neural repair to promote the recovery of injured neurological function.

外伤性脑损伤(Traumatic brain injury, TBI),尤其是中重度脑损伤,是神经系统最具破坏性的损伤之一,现有的神经缺损修复方法难以达到令人满意的效果。神经干细胞(NSCs)治疗是一种潜在的有效治疗选择,特别是在经过特定的遗传修饰和与仿生生物支架联合使用时。本研究采用自上而下的方法制备了具有相互连接的纳米纤维结构的柞蚕丝素(TSF)支架。我们构建了过表达apelin的NSCs,并将其与体外模拟细胞外基质的TSF纳米纤维支架(TSFNS)共培养。为了验证工程化NSCs在体内的治疗效果,我们构建了TBI模型,并将C57BL/6小鼠随机分为三组:对照组、NSCs -对照组(移植整合在TSFNS上的NSCs)和NSCs -apelin组(移植整合在TSFNS上的过表达的NSCs)。分阶段评价模型小鼠的神经功能。移植后24 d取标本进行免疫组化、免疫荧光、western blot实验,并进行统计学分析。结果表明,TSFNS与apelin联合过表达,在体内和体外均可诱导NSCs的增殖和分化。此外,移植TSFNS-NSCs-Apelin可减少病变体积,促进血管生成,抑制神经元凋亡,减轻血脑屏障损伤,减轻神经炎症。综上所述,TSFNS-NSC-Apelin治疗可以构建更有利于神经修复的微环境,促进损伤神经功能的恢复。
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引用次数: 0
Etv5a Suppresses Neural Progenitor Cell Proliferation by Inhibiting sox2 Transcription. Etv5a通过抑制sox2转录抑制神经祖细胞增殖
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-09-01 DOI: 10.1089/scd.2023.0005
Hung-Yu Shih, Hao-Yuan Chen, Yin-Cheng Huang, Tu-Hsueh Yeh, Yi-Chieh Chen, Yi-Chuan Cheng

Neural progenitor cells are self-renewable, proliferative, and multipotent cell populations that generate diverse types of neurons and glia to build the nervous system. Transcription factors play critical roles in regulating various cellular processes; however, the transcription factors that regulate the development of neural progenitors are yet to be identified. In the present study, we demonstrated that zebrafish etv5a is expressed in the neural progenitor cells of the neuroectoderm. Downregulation of endogenous Etv5a function by etv5a morpholino or an etv5a dominant-negative variant increased the proliferation of sox2-positive neural progenitor cells, accompanied by inhibition of neurogenesis and gliogenesis. These phenotypes in Etv5a-depleted embryos could be rescued by a co-injection with etv5a cRNA. Etv5a overexpression reduced sox2 expression. Direct binding of Etv5a to the regulatory elements of sox2 was affirmed by chromatin immunoprecipitation. These data revealed that Etv5a directly suppressed sox2 expression to reduce the proliferation of neural progenitor cells. In addition, the expression of foxm1, a putative target gene of Etv5a and a direct upstream transcription factor of sox2, was upregulated in Etv5a-deficient embryos. Moreover, the suppression of Foxm1 function by the foxm1 dominant-negative construct nullified the phenotype of upregulated sox2 expression caused by Etv5a deficiency. Overall, our results indicated that Etv5a regulates the expression of sox2 via direct binding to the sox2 promoter and indirect regulation by inhibiting foxm1 expression. Hence, we revealed the role of Etv5a in the transcriptional hierarchy that regulates the proliferation of neural progenitor cells.

神经祖细胞是一种自我再生、增殖和多能的细胞群,它能产生多种类型的神经元和胶质细胞来构建神经系统。转录因子在调节各种细胞过程中发挥着关键作用;然而,调控神经祖细胞发育的转录因子尚未被确定。在本研究中,我们证实了etv5a在斑马鱼神经外胚层的神经祖细胞中表达。Etv5a morpholino或Etv5a显性阴性变体下调内源性Etv5a功能可增加sox2阳性神经祖细胞的增殖,同时抑制神经发生和胶质发生。在etv5a缺失的胚胎中,这些表型可以通过与etv5a cRNA共注射来挽救。Etv5a过表达降低sox2表达。染色质免疫沉淀证实了Etv5a与sox2调控元件的直接结合。这些数据表明,Etv5a可直接抑制sox2的表达,从而降低神经祖细胞的增殖。此外,在Etv5a缺失的胚胎中,被推测为Etv5a靶基因、sox2直接上游转录因子foxm1的表达上调。此外,Foxm1显性阴性结构对Foxm1功能的抑制使Etv5a缺失导致的sox2表达上调的表型无效。总之,我们的研究结果表明,Etv5a通过直接结合sox2启动子和通过抑制foxm1表达间接调控sox2的表达。因此,我们揭示了Etv5a在调节神经祖细胞增殖的转录层次中的作用。
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引用次数: 0
The Role of Macrophage Phenotype in the Vascularization of Prevascularized Human Bone Marrow Mesenchymal Stem Cell Sheets. 巨噬细胞表型在预血管化人骨髓间充质干细胞片血管化中的作用。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-08-01 DOI: 10.1089/scd.2022.0268
Rui Chen, Siqi Long, Lina Ren, Sen Xu, Xiaoning Liu, Jiamin Shi, Jiaxin Liu, Dongyang Ma, Ping Zhou, Liling Ren

With the development of tissue engineering and regenerative medicine, prevascularized bone marrow mesenchymal stem cell (BMSC) sheets have been regarded as a promising method for tissue regeneration. Furthermore, the inflammatory response is one of the main regulators of vascularization and the restoration of engineered tissue function; among them, macrophages and cytokines produced by them are considered to be the decisive factors of the downstream outcomes. This study investigated the effect of macrophages on the formation of microvascular-like structures of human umbilical vein endothelial cells (HUVECs) in BMSC sheets. First, a human monocytic leukemia cell line (THP-1 cells) was differentiated into derived macrophages (M0) with phorbol 12-myristate 13-acetate and further activated into proinflammatory macrophages (M1 macrophages) with interferon-γ and lipopolysaccharide or anti-inflammatory macrophages (M2 macrophages) with interleukin-4. Then, HUVECs and prevascularized sheets were treated with conditioned media (CM) from different macrophages, and the impact of macrophage phenotypes on vascularized network formation in prevascularized cell sheets was examined by hematoxylin and eosin staining, CD31 immunofluorescence staining and enzyme-linked immunosorbent assay. Our study showed that macrophages may guide the arrangement of endothelial cells through a paracrine pathway. Cell sheets that were cultured in the CM from M2 macrophages were thinner than those cultured in other media. At various time points, the levels of tumor necrosis factor alpha and vascular endothelial growth factor in prevascularized sheets cultured with CM(M1) was higher than that in sheets cultured with other media; however, the levels of platelet-derived growth factor in prevascularized sheets cultured with CM(M2) was higher than that in sheets cultured with other media. These findings suggest that the paracrine effect of macrophages can influence the formation of microvascular networks in prevascularized sheets by regulating the arrangement of cells, the thickness of the cell sheet and the secretion of cytokines related to angiogenesis. Macrophages with different phenotypes have unique effects on prevascularized sheets.

随着组织工程和再生医学的发展,预血管化骨髓间充质干细胞(BMSC)被认为是一种很有前途的组织再生方法。此外,炎症反应是血管化和工程组织功能恢复的主要调节因子之一;其中巨噬细胞及其产生的细胞因子被认为是影响下游结局的决定性因素。本研究探讨巨噬细胞对人脐静脉内皮细胞(HUVECs)在骨髓间充质干细胞薄片中形成微血管样结构的影响。首先,将人单核白血病细胞系(THP-1细胞)分化为含有12-肉豆肉酸13-醋酸酯的衍生性巨噬细胞(M0),并进一步被干扰素-γ和脂多糖激活为促炎巨噬细胞(M1)或含有白细胞介素-4的抗炎巨噬细胞(M2)。然后,用不同巨噬细胞的条件培养基(CM)处理HUVECs和预血管化片,通过苏木精和伊红染色、CD31免疫荧光染色和酶联免疫吸附法检测巨噬细胞表型对预血管化细胞片血管化网络形成的影响。我们的研究表明,巨噬细胞可能通过旁分泌途径引导内皮细胞的排列。在CM中培养的M2巨噬细胞比在其他培养基中培养的细胞薄。在不同时间点,CM(M1)培养的预血管化薄片的肿瘤坏死因子α和血管内皮生长因子水平均高于其他培养基培养的薄片;然而,用CM(M2)培养的预血管化薄片中血小板衍生生长因子的水平高于用其他培养基培养的薄片。这些结果表明,巨噬细胞的旁分泌作用可能通过调节细胞的排列、细胞片的厚度和血管生成相关细胞因子的分泌来影响血管化片微血管网络的形成。不同表型的巨噬细胞对血管化前膜有独特的作用。
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引用次数: 0
Deletion of p66Shc Dysregulates ERK and STAT3 Activity in Mouse Embryonic Stem Cells, Enhancing Their Naive-Like Self-Renewal in the Presence of Leukemia Inhibitory Factor. p66Shc缺失会失调小鼠胚胎干细胞中ERK和STAT3的活性,增强它们在白血病抑制因子存在下的幼稚样自我更新。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-08-01 DOI: 10.1089/scd.2022.0283
Andrew Powell, Nicole A Edwards, Hailey L M Hunter, Patti Kaiser, Andrew John Watson, Robert Cumming, Dean Harvey Betts

The ShcA adapter protein is necessary for early embryonic development. The role of ShcA in development is primarily attributed to its 52 and 46 kDa isoforms that transduce receptor tyrosine kinase signaling through the extracellular signal regulated kinase (ERK). During embryogenesis, ERK acts as the primary signaling effector, driving fate acquisition and germ layer specification. P66Shc, the largest of the ShcA isoforms, has been observed to antagonize ERK in several contexts; however, its role during embryonic development remains poorly understood. We hypothesized that p66Shc could act as a negative regulator of ERK activity during embryonic development, antagonizing early lineage commitment. To explore the role of p66Shc in stem cell self-renewal and differentiation, we created a p66Shc knockout murine embryonic stem cell (mESC) line. Deletion of p66Shc enhanced basal ERK activity, but surprisingly, instead of inducing mESC differentiation, loss of p66Shc enhanced the expression of core and naive pluripotency markers. Using pharmacologic inhibitors to interrogate potential signaling mechanisms, we discovered that p66Shc deletion permits the self-renewal of naive mESCs in the absence of conventional growth factors, by increasing their responsiveness to leukemia inhibitory factor (LIF). We discovered that loss of p66Shc enhanced not only increased ERK phosphorylation but also increased phosphorylation of Signal transducer and activator of transcription in mESCs, which may be acting to stabilize their naive-like identity, desensitizing them to ERK-mediated differentiation cues. These findings identify p66Shc as a regulator of both LIF-mediated ESC pluripotency and of signaling cascades that initiate postimplantation embryonic development and ESC commitment.

ShcA适配蛋白是早期胚胎发育所必需的。ShcA在发育中的作用主要归因于其52和46 kDa亚型,这些亚型通过细胞外信号调节激酶(ERK)转导受体酪氨酸激酶信号。在胚胎发生过程中,ERK作为主要的信号效应因子,驱动命运获取和胚层规范。P66Shc是最大的ShcA亚型,已被观察到在几种情况下拮抗ERK;然而,它在胚胎发育中的作用仍然知之甚少。我们假设p66Shc可能在胚胎发育过程中作为ERK活性的负调节因子,对抗早期谱系承诺。为了探索p66Shc在干细胞自我更新和分化中的作用,我们建立了p66Shc敲除小鼠胚胎干细胞(mESC)系。p66Shc的缺失增强了ERK的基础活性,但令人惊讶的是,p66Shc的缺失并没有诱导mESC分化,而是增强了核心和初始多能性标记物的表达。使用药物抑制剂来询问潜在的信号机制,我们发现p66Shc缺失通过增加其对白血病抑制因子(LIF)的反应,允许在缺乏常规生长因子的情况下初始mESCs的自我更新。我们发现p66Shc的缺失不仅增加了mESCs中ERK的磷酸化,还增加了mESCs中信号换能器和转录激活因子的磷酸化,这可能有助于稳定mESCs的幼稚特性,使其对ERK介导的分化信号不敏感。这些发现表明p66Shc是fif介导的ESC多能性和启动胚胎移植后胚胎发育和ESC承诺的信号级联的调节剂。
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引用次数: 0
Rosalind Franklin Society Proudly Announces the 2022 Award Recipient for Stem Cells and Development. 罗莎琳德·富兰克林协会自豪地宣布2022年干细胞和发展奖获得者。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-08-01 DOI: 10.1089/scd.2023.29014.rfs2022
Gordana Vunjak-Novakovic
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Stem cells and development
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