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Exosomes from Hair Follicle Epidermal Neural Crest Stem Cells Promote Acellular Nerve Allografts to Bridge Rat Facial Nerve Defects. 毛囊表皮神经嵴干细胞的外泌体促进无细胞神经同种异体移植物桥接大鼠面神经缺损。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2023-01-01 Epub Date: 2022-12-27 DOI: 10.1089/scd.2022.0245
Yao Pan, Li Tang, Shuxian Dong, Mengjie Xu, Qiong Li, Guochen Zhu

Previous studies showed that acellular nerve allografts (ANAs) have been successfully utilized in repairing peripheral nerve defects, and exosomes produced by stem cells are useful in supporting axon regrowth after peripheral nerve injury. In this study, exosomes from hair follicle epidermal neural crest stem cells (EPI-NCSCs-Exos) combined with ANAs were used to bridge facial nerve defects. EPI-NCSCs-Exos were isolated by ultracentrifuge, and were identified. After coculture, EPI-NCSCs-Exos were internalized into dorsal root ganglions (DRGs) and schwann cells (SCs) in vitro, respectively. EPI-NCSCs-Exos elongate the length of axons and dendrites of DRGs, and accelerated the proliferation and migration of SCs, and increased neurotrophic factor expression of SCs as well. The next step was to assign 24 Sprague Dawley male rats randomly and equally into three groups: the autograft group, the ANA group, and the ANA + EPI-NCSCs-Exos group. Each rat manufactured a 5-mm gap of facial nerve defect and immediately bridged by the corresponding transplants, respectively. After surgery, behavioral changes and electrophysiological testing of each rat were observed and assessed. At 90 days postoperatively, the retrogradely fluorescent tracer-labeled neurons were successfully observed on the injured side in the three groups. Morphological changes of facial nerve regeneration were evaluated by transmission electron microscopy and semithin toluidine blue staining. The results showed that nerve fiber density, nerve fiber diameter, and myelin sheath thickness in the ANA group were significantly worse than those in the other two groups (P < 0.05). No significant difference in nerve fiber density and myelin sheath thickness was observed between the autograft group and the ANA + EPI-NCSCs-Exos group (P = 0.14; P = 0.23). Our data indicated that EPI-NCSCs-Exos facilitate ANAs to bridge facial nerve defects and have the potential to replace autograft therapy in clinic.

先前的研究表明,脱细胞同种异体神经移植物(ANAs)已成功用于修复周围神经缺损,干细胞产生的外泌体可用于支持周围神经损伤后轴突的再生。在本研究中,来自毛囊表皮神经嵴干细胞(EPI-NNCS-Exos)的外泌体与ANAs结合用于桥接面神经缺损。EPI NCSCs外显子经超离心分离鉴定。共培养后,EPI-NSCs-Exos在体外分别内化为背根神经节(DRGs)和雪旺细胞(SCs)。EPI-NSCs-Exos延长DRG的轴突和树突的长度,加速SC的增殖和迁移,并增加SC的神经营养因子表达。下一步是将24只Sprague-Dawley雄性大鼠随机平均分为三组:自体移植组、ANA组和ANA+EPI NCSCs-Exos组。每只大鼠制造一个5毫米的面神经缺损间隙,并分别通过相应的移植立即桥接。术后,观察和评估每只大鼠的行为变化和电生理测试。术后90天,三组均在损伤侧成功观察到逆行荧光示踪剂标记的神经元。用透射电镜和甲苯胺蓝染色观察面神经再生的形态学变化。结果显示,ANA组的神经纤维密度、神经纤维直径和髓鞘厚度均明显低于其他两组(P P = 0.14;P = 0.23)。我们的数据表明,EPI NCSCs-Exos有助于ANAs桥接面神经缺损,并有可能在临床上取代自体移植治疗。
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引用次数: 0
A Bone Morphogenetic Protein Signaling Inhibitor, LDN193189, Converts Ischemia-Induced Multipotent Stem Cells into Neural Stem/Progenitor Cell-Like Cells. 骨形态发生蛋白信号抑制剂LDN193189可将缺血诱导的多能干细胞转化为神经干细胞/祖细胞样细胞。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2022-12-01 DOI: 10.1089/scd.2022.0139
Yusuke Minato, Akiko Nakano-Doi, Seishi Maeda, Takayuki Nakagomi, Hideshi Yagi

Stem cell therapy is used to restore neurological function in stroke patients. We have previously reported that ischemia-induced multipotent stem cells (iSCs), which are likely derived from brain pericytes, develop in poststroke human and mouse brains. Although we have demonstrated that iSCs can differentiate into neural lineage cells, the factors responsible for inducing this differentiation remain unclear. In this study, we found that LDN193189, a bone morphogenetic protein (BMP) inhibitor, caused irreversible changes in the shape of iSCs. In addition, compared with iSCs incubated without LDN193189, the iSCs incubated with LDN193189 (LDN-iSCs) showed upregulated expression of neural lineage-related genes and proteins, including those expressed in neural stem/progenitor cells (NSPCs), and downregulated expression of mesenchymal and pericytic-related genes and proteins. Moreover, microarray analysis revealed that LDN-iSCs and NSPCs had similar gene expression profiles. Furthermore, LDN-iSCs differentiated into electrophysiologically functional neurons. These results indicate that LDN193189 induces NSPC-like cells from iSCs, suggesting that bioactive molecules regulating BMP signaling are potential targets for promoting neurogenesis from iSCs in the pathological brain, such as during ischemic stroke. We believe that our findings will bring us one step closer to the clinical application of iSCs.

干细胞疗法用于恢复中风患者的神经功能。我们之前报道过缺血诱导的多能干细胞(iSCs),可能来源于脑周细胞,在中风后的人类和小鼠大脑中发育。虽然我们已经证明iSCs可以分化为神经谱系细胞,但诱导这种分化的因素尚不清楚。在本研究中,我们发现骨形态发生蛋白(BMP)抑制剂LDN193189可引起iSCs形状的不可逆变化。此外,与不含LDN193189培养的iSCs相比,LDN193189培养的iSCs (LDN-iSCs)神经谱系相关基因和蛋白的表达上调,包括神经干/祖细胞(NSPCs)中表达的基因和蛋白,而间充质和周细胞相关基因和蛋白的表达下调。此外,微阵列分析显示LDN-iSCs和NSPCs具有相似的基因表达谱。LDN-iSCs分化为具有电生理功能的神经元。这些结果表明,LDN193189诱导的神经干细胞样细胞来自于神经干细胞,表明调节BMP信号的生物活性分子是促进病理脑(如缺血性卒中)神经干细胞神经发生的潜在靶点。我们相信我们的发现将使我们离iSCs的临床应用更近一步。
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引用次数: 2
Deer Antler Reserve Mesenchyme Cell-Conditioned Medium Reduces the Destruction of Periodontitis in Mice. 鹿角储备间充质细胞条件培养基减少小鼠牙周炎的破坏。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2022-12-01 DOI: 10.1089/scd.2022.0110
Hongbing Lin, Zhen Chen, Qianqian Guo, Peipei Zhang, Yue Tian, Huishan Chen, Haiping Zhao, Yuqin Shen

Reserve mesenchyme cells (RMCs) are a type of antler stem cells (ASCs) that contribute to the rapid growth of deer antlers, the only known mammalian organ that can fully regenerate annually. Based on the prior evidence, ASC-conditioned medium could improve regenerative cutaneous healing in rats. The purpose of the study was to evaluate the therapeutic effects of RMC-conditioned medium (RMC-CM) on reducing the destruction in the mice periodontitis (PD) model and the underlying mechanisms. The lipopolysaccharide (LPS)-stimulated RAW264.7 cells were used in vitro to verify the effects of RMC-CM. The results revealed that RMC-CM could significantly reduce bone resorption and osteoclast activation, upregulate anti-inflammatory macrophages (M2) related interleukin (IL)-10 and CD206, and downregulate pro-inflammatory macrophages (M1) related tumor necrosis factor alpha (TNF-α) and inducible nitric oxide synthase in vivo. In vitro, RMC-CM could significantly promote LPS-stimulated RAW264.7 cells migration, reduce osteoclast differentiation, downregulate the expression of TNF-α, IL-6, and IL-1β, and upregulate the expression of IL-10 and arginase 1. According to the results, we concluded that RMC-CM could significantly reduce alveolar bone resorption and inhibit inflammation in gingival tissue by decreasing the activation of osteoclasts and inducing macrophage polarization toward the M2 phenotype. This study may serve as the experimental foundation for RMC-CM in the treatment of PD.

储备间充质细胞(RMCs)是一种鹿角干细胞(ASCs),它有助于鹿角的快速生长,鹿角是唯一已知的每年可以完全再生的哺乳动物器官。基于先前的证据,asc条件培养基可以促进大鼠皮肤再生愈合。本研究旨在探讨rmmc条件培养基(rmmc - cm)对小鼠牙周炎(PD)模型的治疗作用及其机制。体外实验采用脂多糖(LPS)刺激RAW264.7细胞,验证RMC-CM的作用。结果显示,RMC-CM在体内可显著降低骨吸收和破骨细胞活化,上调抗炎巨噬细胞(M2)相关的白细胞介素(IL)-10和CD206,下调促炎巨噬细胞(M1)相关的肿瘤坏死因子α (TNF-α)和诱导型一氧化氮合酶。在体外实验中,rmmc - cm能显著促进lps刺激的RAW264.7细胞迁移,抑制破骨细胞分化,下调TNF-α、IL-6、IL-1β的表达,上调IL-10和精氨酸酶1的表达。综上所述,我们认为rmmc - cm通过降低破骨细胞的激活,诱导巨噬细胞向M2表型极化,显著减少牙槽骨吸收,抑制牙龈组织炎症。本研究可为rmmc - cm治疗PD提供实验基础。
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引用次数: 3
miR-1275 Inhibits Human Omental Adipose-Derived Stem Cells Differentiation Toward the Beige Phenotype via PRDM16. miR-1275通过PRDM16抑制人类大网膜脂肪干细胞向米色表型分化
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2022-12-01 DOI: 10.1089/scd.2022.0176
Chenhong Lin, Xiaoying He, Xueying Chen, Liehua Liu, Hongyu Guan, Haipeng Xiao, Yanbing Li

Beige adipocytes have recently attracted attention for their potential as new therapeutic targets in the management of obesity and related metabolic disorders. MicroRNAs (miRNAs) have been reported as transcriptional regulators or biomarkers of brown and beige adipogenesis. Nevertheless, the effects of miRNAs involved in beige differentiation of human visceral adipocytes remain to be investigated. In this study, microarray screening showed that miR-1275 was significantly decreased during the differentiation of beige adipocytes induced by human omental adipose-derived stem cells (hASCs). Overexpression of miR-1275 suppressed the "brown-like" differentiation of hASCs by inhibiting the key transcriptional factor PR domain containing 16 (PRDM16) without affecting the proliferation. Adipogenesis and mitochondrial biogenesis of beige adipocytes derived from hASCs were impaired by miR-1275 overexpression. The regulatory effect of miR-1275 was determined by direct binding to the 3'-untranslated region of PRDM16, which was demonstrated by a dual-luciferase assay. Taken together, this study identified miR-1275 as a negative regulator of beige cell development in hASCs by inhibiting PRDM16. Thus, miR-1275 might be a potential target in the management of visceral obesity and related metabolic diseases.

米色脂肪细胞最近因其在肥胖和相关代谢紊乱的治疗中作为新的治疗靶点而受到关注。MicroRNAs (miRNAs)已被报道为褐色和米色脂肪形成的转录调节因子或生物标志物。然而,mirna在人内脏脂肪细胞米色分化中的作用仍有待研究。在这项研究中,微阵列筛选显示,miR-1275在人大网膜脂肪源性干细胞(hASCs)诱导的米色脂肪细胞分化过程中显著降低。过表达miR-1275通过抑制关键转录因子PR结构域16 (PRDM16)来抑制hASCs的“棕色样”分化,而不影响增殖。来源于hASCs的米色脂肪细胞的脂肪形成和线粒体生物发生受到miR-1275过表达的损害。miR-1275的调控作用是通过直接结合PRDM16的3'-非翻译区来确定的,这是通过双荧光素酶实验来证明的。综上所述,本研究确定miR-1275通过抑制PRDM16在hASCs中作为米色细胞发育的负调节因子。因此,miR-1275可能是管理内脏肥胖和相关代谢疾病的潜在靶点。
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引用次数: 0
Three-Dimensional Culture of Equine Bone Marrow-Derived Mesenchymal Stem Cells Enhances Anti-Inflammatory Properties in a Donor-Dependent Manner. 马骨髓间充质干细胞的三维培养以供体依赖的方式增强抗炎特性。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2022-12-01 DOI: 10.1089/scd.2022.0074
Sophie H Bogers, Jennifer G Barrett

Three-dimensional (3D) culture of human mesenchymal stem cells (MSCs) as spheroids enhances the production of important regulators of inflammation: prostaglandin E2 (PGE2), interleukin (IL)-6, and tumor necrosis factor-inducible gene 6 (TSG-6). The horse is a model species and suffers from musculoskeletal, ocular, and systemic inflammatory disease. It is unknown if 3D culture promotes enhanced production of immunomodulatory cytokines and regulators in equine MSCs and if there is variation between individual cell donors. We evaluated the feasibility, cell viability, and stem cell marker stability of 3D-cultured equine bone marrow-derived MSCs (eBMSCs) and determined the effect of inflammatory stimulation upon gene expression and secretion of key regulators of inflammation [PGE2, TSG-6, IL-10, IL-6, stromal cell-derived factor 1 (SDF-1)]. Variations in anti-inflammatory phenotype between six donors were investigated, with and without IL-1β stimulation, in either monolayer [two-dimensional (2D)] or 3D culture. Our results showed that eBMSCs self-aggregate in 3D culture while maintaining cell viability and markers of stemness CD90, CD44, CD104, and Oct4. In addition, 3D culture enhances the anti-inflammatory phenotype regardless of inflammatory stimulation by increasing PGE2, IL-6, TSG-6, SDF-1, and IL-10. Finally, anti-inflammatory phenotype was enhanced by IL-1β exposure but showed significant variation between cell lines in the degree of gene upregulation, and what genes were expressed. We conclude that 3D culture of eBMSCs as spheroids alters their anti-inflammatory phenotype, but this effect is influenced by cytokine exposure and cell donor.

人间充质干细胞(MSCs)的三维(3D)球形培养增强了重要炎症调节因子的产生:前列腺素E2 (PGE2)、白细胞介素(IL)-6和肿瘤坏死因子诱导基因6 (TSG-6)。马是一种模式物种,患有肌肉骨骼,眼部和全身炎症性疾病。目前尚不清楚3D培养是否促进了马间充质干细胞中免疫调节细胞因子和调节因子的产生,以及个体细胞供体之间是否存在差异。我们评估了3d培养马骨髓源性间充质干细胞(eBMSCs)的可行性、细胞活力和干细胞标记物的稳定性,并确定了炎症刺激对炎症关键调节因子[PGE2、TSG-6、IL-10、IL-6、基质细胞源性因子1 (SDF-1)]基因表达和分泌的影响。在单层[二维(2D)]或三维培养中,研究了6个供体在有和没有IL-1β刺激的情况下抗炎表型的变化。我们的研究结果表明,eBMSCs在3D培养中自我聚集,同时保持细胞活力和干细胞标记CD90、CD44、CD104和Oct4。此外,3D培养通过增加PGE2、IL-6、TSG-6、SDF-1和IL-10来增强抗炎表型,而不受炎症刺激。最后,IL-1β暴露增强了抗炎表型,但在不同细胞系之间,基因上调的程度和表达的基因存在显著差异。我们得出的结论是,3D培养成球形的骨髓间充质干细胞改变了它们的抗炎表型,但这种效果受到细胞因子暴露和细胞供体的影响。
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引用次数: 6
Suppressor of Fused Regulation of Hedgehog Signaling is Required for Proper Astrocyte Differentiation. 星形胶质细胞正常分化需要融合调节Hedgehog信号的抑制因子。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2022-12-01 DOI: 10.1089/scd.2022.0131
Danielle M Spice, Joshua Dierolf, Gregory M Kelly

Hedgehog signaling is essential for vertebrate development; however, less is known about the negative regulators that influence this pathway. Using the mouse P19 embryonal carcinoma cell model, suppressor of fused (SUFU), a negative regulator of the Hedgehog (Hh) pathway, was investigated during retinoic acid (RA)-induced neural differentiation. We found Hh signaling increased activity in the early phase of differentiation, but was reduced during terminal differentiation of neurons and astrocytes. This early increase in pathway activity was required for neural differentiation; however, it alone was not sufficient to induce neural lineages. SUFU, which regulates signaling at the level of Gli, remained relatively unchanged during differentiation, but its loss through CRISPR-Cas9 gene editing resulted in ectopic expression of Hh target genes. Interestingly, these SUFU-deficient cells were unable to differentiate toward neural lineages without RA, and when directed toward these lineages, they showed delayed and decreased astrocyte differentiation; neuron differentiation was unaffected. Ectopic activation of Hh target genes in SUFU-deficient cells remained throughout RA-induced differentiation and this was accompanied by the loss of Gli3, despite the presence of the Gli3 message. Thus, the study indicates the proper timing and proportion of astrocyte differentiation requires SUFU, likely acting through Gli3, to reduce Hh signaling during late-stage differentiation.

刺猬信号对脊椎动物的发育至关重要;然而,对影响这一途径的负面调节因子知之甚少。利用小鼠P19胚胎癌细胞模型,研究了维甲酸(RA)诱导的神经分化过程中Hedgehog (Hh)通路的负调节因子融合抑制因子(SUFU)。我们发现Hh信号在神经元和星形胶质细胞的早期分化阶段活性增加,但在末梢分化阶段活性降低。这种早期通路活动的增加是神经分化所必需的;然而,单靠它还不足以诱导神经谱系。在Gli水平调控信号的SUFU在分化过程中保持相对不变,但通过CRISPR-Cas9基因编辑导致其缺失导致Hh靶基因异位表达。有趣的是,这些缺乏sufu的细胞不能向没有RA的神经谱系分化,当指向这些谱系时,它们表现出星形胶质细胞分化延迟和减少;神经元分化未受影响。在ra诱导的分化过程中,sufu缺陷细胞中Hh靶基因的异位激活仍然存在,这伴随着Gli3的缺失,尽管Gli3信息存在。因此,该研究表明,星形胶质细胞分化的适当时机和比例需要SUFU,可能通过Gli3起作用,在分化后期减少Hh信号。
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引用次数: 0
Overexpression of NDST1 Attenuates Fibrotic Response in Murine Adipose-Derived Stem Cells. NDST1过表达可减弱小鼠脂肪来源干细胞的纤维化反应。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2022-12-01 Epub Date: 2022-09-03 DOI: 10.1089/scd.2022.0053
Takayoshi Otsuka, Ho-Man Kan, Timothy D Mason, Lakshmi S Nair, Cato T Laurencin
Adipose-derived stem cells (ADSCs) hold tremendous potential for treating diseases and repairing damaged tissues. Heparan sulfate (HS) plays various roles in cellular signaling mechanisms. The importance of HS in stem cell function has been reported and well documented. However, there has been little progress in using HS for therapeutic purposes. We focused on one of the sulfotransferases, NDST1, which influences overall HS chain extent and sulfation pattern, with the expectation to enhance stem cell function by increasing the N-sulfation level. We herein performed transfections of a GFP-vector control and NDST1-vector into mouse ADSCs to evaluate stem cell functions. Overexpression of NDST1 suppressed the osteogenic differentiation of ADSCs. There was no pronounced effect observed on the stemness, inflammatory gene expression, nor any noticeable effect in adipogenic and chondrogenic differentiation. Under the tumor necrosis factor-alpha (TNF-α) stimulation, NDST1 overexpression induced several chemokine productions that attract neutrophils and macrophages. Finally, we identified an anti-fibrotic response in ADSCs overexpressing NDST1. This study provides a foundation for the evaluation of HS-related effects in ADSCs undergoing ex vivo gene manipulation.
脂肪源性干细胞(ADSCs)在治疗疾病和修复受损组织方面具有巨大的潜力。硫酸肝素(HS)在细胞信号传导机制中发挥着多种作用。HS在干细胞功能中的重要性已被报道和充分记录。然而,在将HS用于治疗目的方面进展甚微。我们重点研究了影响HS整体链长度和硫酸化模式的其中一种硫转移酶NDST1,期望通过提高n -硫酸化水平来增强干细胞功能。我们将绿色荧光蛋白载体对照和ndst1载体转染到小鼠ADSCs中,以评估干细胞的功能。NDST1过表达抑制ADSCs成骨分化。对干性、炎性基因表达无明显影响,对成脂和成软骨分化无明显影响。在肿瘤坏死因子- α刺激下,NDST1过表达诱导多种趋化因子产生,吸引中性粒细胞和巨噬细胞。最后,我们在过表达NDST1的ADSCs中发现了抗纤维化反应。本研究为体外基因操作后评价hs在ADSCs中的相关作用奠定了基础。
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引用次数: 0
Laminin-511 Activates the Human Induced Pluripotent Stem Cell Survival via α6β1 Integrin-Fyn-RhoA-ROCK Signaling. Laminin-511通过α6β1 Integrin-Fyn-RhoA-ROCK信号激活人诱导多能干细胞存活
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2022-11-01 DOI: 10.1089/scd.2022.0010
Yoshiki Nakashima, Masayoshi Tsukahara

In human induced pluripotent stem cells (hiPSCs), laminin-511/α6β1 integrin interacts with E-cadherin, an intercellular adhesion molecule, to induce the activation of the phosphatidylinositol 3-kinase (PI3K)-dependent signaling pathway. The interaction between laminin-511/α6β1 integrin and E-cadherin, an intercellular adhesion molecule, results in protection against apoptosis through the proto-oncogene tyrosine-protein kinase Fyn(Fyn)-RhoA-ROCK signaling pathway and the Ras homolog gene family member A (RhoA)/Rho kinase (ROCK) signaling pathway (the major pathway for cell death). In this article, the impact of laminin-511 on hiPSC on α6β1 integrin-Fyn-RhoA-ROCK signaling is discussed and explored along with validation experiments. PIK3CA mRNA (mean [standard deviation {SD}]: iMatrix-511, 1.00 [0.61]; collagen+MFGE8, 0.023 [0.02]; **P < 0.01; n = 6) and PIK3R1 mRNA (mean [SD]: iMatrix-511, 1.00 [0.79]; collagen+MFGE8, 0.040 [0.06]; *P < 0.05; n = 6) were upregulated by iMatrix-511 resulting from an increased expression of Integrin α6 mRNA (mean [SD]: iMatrix-511, 1.00 [0.42]; collagen+MFGE8, 0.23 [0.05]; **P < 0.01; n = 6). The iMatrix-511 increased the expression of p120-Catenin mRNA (mean [SD]: iMatrix-511, 1.00 [0.71]; collagen+MFGE8, 0.025 [0.03]; **P < 0.01; n = 6) and RAC1 mRNA (mean [SD]: iMatrix-511, 1.00 [0.28]; collagen+MFGE8, 0.39 [0.15]; **P < 0.01; n = 6) by increasing the expression of E-cadherin mRNA (mean [SD]: iMatrix-511, 1.00 [0.38]; collagen+MFGE8, 0.16 [0.11]; **P < 0.01; n = 6). As a result, iMatrix-511 increased the expression of P190 RhoGAP (GTPase-activating proteins) mRNA, such as ARHGAP1 mRNA (mean [SD]: iMatrix-511, 1.00 [0.57]; collagen+MFGE8, 0.032 [0.03]; **P < 0.01; n = 6), ARHGAP4 mRNA (mean [SD]: iMatrix-511, 1.00 [0.56]; collagen+MFGE8, 0.039 [0.049]; **P < 0.01; n = 6), and ARHGAP5 mRNA (mean [SD]: iMatrix-511, 1.00 [0.39]; collagen+MFGE8, 0.063 [0.043]; **P < 0.01; n = 6). Western blotting showed that phospho-Rac1 remained in the cytoplasm and phospho-Fyn showed nuclear transition in iPSCs cultured on iMatrix-511. Proteome analysis showed that PI3K signaling was enhanced and cytoskeletal actin was activated in iPSCs cultured on iMatrix-511. In conclusion, laminin-511 strongly activated the cell survival by promoting α6β1 integrin-Fyn-RhoA-ROCK signaling in hiPSCs.

在人诱导多能干细胞(hiPSCs)中,层粘连蛋白-511/α6β1整合素与细胞间粘附分子E-cadherin相互作用,诱导磷脂酰肌醇3-激酶(PI3K)依赖信号通路的激活。层粘连蛋白-511/α6β1整合素与细胞间粘附分子E-cadherin相互作用,通过原癌基因酪氨酸-蛋白激酶Fyn(Fyn)-RhoA-ROCK信号通路和Ras同源基因家族成员A (RhoA)/Rho激酶(ROCK)信号通路(细胞死亡的主要途径)对细胞凋亡起到保护作用。本文结合验证实验,探讨了hiPSC中laminin-511对α6β1 integrin-Fyn-RhoA-ROCK信号传导的影响。PIK3CA mRNA(均值[标准差{SD}]: iMatrix-511, 1.00 [0.61];胶原+MFGE8, 0.023 [0.02];**P n = 6)和PIK3R1 mRNA (mean [SD]: iMatrix-511, 1.00 [0.79];胶原+MFGE8, 0.040 [0.06];*P n = 6), iMatrix-511上调了Integrin α6 mRNA的表达(平均值[SD]: iMatrix-511, 1.00 [0.42];胶原+MFGE8, 0.23 [0.05];**P n = 6)。iMatrix-511增加了p120-Catenin mRNA的表达(平均[SD]: iMatrix-511, 1.00 [0.71];胶原+MFGE8, 0.025 [0.03];**P n = 6)和RAC1 mRNA (mean [SD]: iMatrix-511, 1.00 [0.28];胶原+MFGE8, 0.39 [0.15];**P n = 6)通过增加E-cadherin mRNA的表达(mean [SD]: iMatrix-511, 1.00 [0.38];胶原+MFGE8, 0.16 [0.11];**P n = 6)。结果,iMatrix-511增加了P190 RhoGAP (gtpase激活蛋白)mRNA的表达,如ARHGAP1 mRNA (mean [SD]: iMatrix-511, 1.00 [0.57];胶原+MFGE8, 0.032 [0.03];* * P n = 6), ARHGAP4 mRNA(意味着(SD): imatrix - 511, 1.00 (0.56);胶原+MFGE8, 0.039 [0.049];**P n = 6), ARHGAP5 mRNA (mean [SD]: iMatrix-511, 1.00 [0.39];胶原+MFGE8, 0.063 [0.043];**P n = 6)。Western blot结果显示,在iMatrix-511上培养的iPSCs中,phospho-Rac1保留在细胞质中,phospho-Fyn出现核转移。蛋白质组学分析显示,在iMatrix-511上培养的iPSCs中,PI3K信号通路增强,细胞骨架肌动蛋白被激活。综上所述,laminin-511通过促进hipsc中α6β1 integrin-Fyn-RhoA-ROCK信号通路,强烈激活细胞存活。
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引用次数: 2
Effects of Recloning on the Telomere Lengths of Mouse Terc+/- Nuclear Transfer-Derived Embryonic Stem Cells. 克隆对小鼠Terc+/-核移植胚胎干细胞端粒长度的影响。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2022-11-01 DOI: 10.1089/scd.2022.0115
Li-Kuang Tsai, Huan Ou-Yang, Jie Xu, Chuan-Mu Chen, Wei-Fang Chang, Li-Ying Sung

Haploinsufficiency of genes that participate in telomere elongation and maintenance processes, such as telomerase RNA component (Terc) and telomere reverse transcriptase (Tert), often leads to premature aging-related diseases such as dyskeratosis congenita and aplastic anemia. Previously, we reported that when mouse Terc+/- tail tip fibroblasts (TTFs) were used as donor cells for somatic cell nuclear transfer (SCNT, also known as cloning), the derivative embryonic stem cells (ntESCs) had elongated telomeres. In the present work, we are interested to know if an additional round of SCNT, or recloning, could lead to further elongation of telomeres. Terc+/- TTFs were used to derive the first-generation (G1) ntESCs, followed by a second round of SCNT using G1-Terc+/- ntESCs as donor cells to derive G2-Terc+/- ntESCs. Multiple lines of G1- and G2-Terc+/- ntESCs were efficiently established, and all expressed major pluripotent markers and supported efficient chondrocyte differentiation in vitro. Compared with donor TTFs, telomere lengths of G1 ntESCs were elongated to the level comparable with that in wild-type ntESCs. Interestingly, recloning did not further elongate the telomere lengths of Terc+/- ntESCs. Together, our work demonstrates that while a single round of SCNT is a viable means to reprogram Terc haploinsufficient cells to the ESC state, and to elongate these cells' telomere lengths, a second round of SCNT does not necessarily further elongate the telomeres.

端粒酶RNA组分(Terc)和端粒逆转录酶(Tert)等参与端粒延长和维持过程的基因单倍性不足,常导致先天性角化不良、再生障碍性贫血等早衰相关疾病。在此之前,我们报道了将小鼠Terc+/-尾尖成纤维细胞(ttf)用作体细胞核移植(SCNT,也称为克隆)的供体细胞时,衍生的胚胎干细胞(ntESCs)端粒延长。在目前的工作中,我们有兴趣知道额外的SCNT或再克隆是否会导致端粒的进一步延长。使用Terc+/- ttf获得第一代(G1) ntESCs,随后使用G1-Terc+/- ntESCs作为供体细胞进行第二轮SCNT获得G2-Terc+/- ntESCs。我们高效地建立了多株G1-和G2-Terc+/- ntESCs,它们都表达了主要的多能性标志物,并支持了体外软骨细胞的高效分化。与供体ttf相比,G1型ntESCs的端粒长度延长至与野生型ntESCs相当的水平。有趣的是,再克隆并没有进一步延长Terc+/- ntESCs的端粒长度。总之,我们的工作表明,虽然单轮SCNT是将Terc单倍不足的细胞重编程为ESC状态并延长这些细胞的端粒长度的可行方法,但第二轮SCNT并不一定会进一步延长端粒。
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引用次数: 1
Comparison Between Cancellous Trabecular and Cortical Specimens from Human Lumbar Spine Samples as an Alternative Source of Mesenchymal Stromal Cells. 人腰椎松质小梁和皮质标本作为间充质间质细胞替代来源的比较。
IF 4 3区 医学 Q3 CELL & TISSUE ENGINEERING Pub Date : 2022-11-01 DOI: 10.1089/scd.2022.0157
Stefania Lenna, Ava Brozovich, Takashi Hirase, Francesca Paradiso, Bradley K Weiner, Francesca Taraballi

Due to their immunosuppressive potential and ability to differentiate into multiple musculoskeletal cell lineages, mesenchymal stromal cells (MSCs) became popular in clinical trials for the treatment of musculoskeletal disorders. The aim of this study was to isolate and characterize native populations of MSCs from human cortical and cancellous bone from the posterior elements of the lumbar spine and determine what source of MSCs yields better quality and quantity of cells to be potentially used for spinal fusion repair. We were able to show that MSCs from trabecular and cortical spine had the typical MSC morphology and expression markers; the ability to differentiate in adipocyte, chondrocyte, or osteoblast but they did not have a consistent pattern in the expression of the specific differentiation lineage genes. Moreover, MSCs from both sites demonstrated an immune suppression profile suggesting that these cells may have a more promising success in applications related to immunomodulation more than exploring their ability to drive osteogenesis to prevent nonunion in spine fusion procedures.

由于间充质基质细胞(MSCs)具有免疫抑制潜能和分化为多种肌肉骨骼细胞谱系的能力,因此在治疗肌肉骨骼疾病的临床试验中越来越受欢迎。本研究的目的是从腰椎后部的人皮质骨和松质骨中分离和表征本地MSCs群体,并确定哪种MSCs来源能产生质量和数量更好的细胞,从而有可能用于脊柱融合修复。我们能够证明来自脊柱小梁和皮质的间充质干细胞具有典型的间充质干细胞形态和表达标记;在脂肪细胞、软骨细胞或成骨细胞中分化的能力,但它们在特定分化谱系基因的表达上没有一致的模式。此外,来自这两个地点的MSCs都显示出免疫抑制特征,这表明这些细胞在免疫调节方面的应用可能比探索它们在脊柱融合手术中驱动成骨以防止不愈合的能力更有希望取得成功。
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引用次数: 0
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Stem cells and development
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