α-SMA, alpha-smooth muscle actin

α - SMA,α - 平滑肌肌动蛋白
  • 文章类型: Journal Article
    未经证实:对乙酰氨基酚(APAP)诱导的急性肝损伤(AILI)是急性肝衰竭(ALF)的主要原因。N-乙酰半胱氨酸(NAC)仅在APAP中毒后24小时内有效,迫切需要治疗这种疾病的替代方法。本研究旨在测试卡萨利菌素(Camp)是否,这是慢性肝病的保护因素,保护小鼠免受APAP诱导的肝损伤和ALF。
    未经证实:在小鼠中产生临床相关的AILI模型和APAP诱导的ALF模型。使用遗传和药理学方法来干扰体内cathelicidin的水平。
    未经证实:在APAP中毒的小鼠中观察到肝前CRAMP/CRAMP(小鼠cathelicidin的前体和成熟形式)的增加。上调的cathelicidin源自肝脏浸润的中性粒细胞。与野生型同窝相比,camp敲除对肝损伤没有影响,但抑制了AILI的肝修复,并降低了APAP诱导的ALF的生存率。在APAP攻击的Camp敲除小鼠中观察到CRAMP施用逆转了受损的肝脏恢复。延迟崩溃,CRAMP(1-39)(CRAMP的扩展形式),或LL-37(人导管素的成熟形式)治疗表现出对于AILI的治疗益处。在AILI中联合治疗cathelicidin和NAC显示出比单独的NAC更强的肝保护作用。在APAP诱导的ALF中观察到CRAMP(1-39)/LL-37和NAC的类似累加效应。cathelicidin在APAP受损肝脏中的修复作用归因于肝脏修复开始时炎症的加速消退。可能通过自分泌方式增强中性粒细胞吞噬坏死细胞碎片。
    UNASSIGNED:Cathelicidin通过促进炎症消退促进肝脏恢复,从而减少APAP诱导的小鼠肝损伤和ALF,提示晚期AILI伴或不伴ALF患者的治疗潜力。
    未经证实:对乙酰氨基酚诱导的急性肝损伤是急性肝衰竭的主要原因。N-乙酰半胱氨酸的功效,唯一的临床批准的药物对乙酰氨基酚诱导的急性肝损伤,对于晚期出现的患者显着降低。我们发现cathelicidin在对乙酰氨基酚诱导的肝损伤或急性肝衰竭的小鼠中表现出巨大的治疗潜力。通过特异性促进对乙酰氨基酚中毒后的肝脏修复,弥补了N-乙酰半胱氨酸治疗的局限性。cathelicidin的促修复作用,作为中性粒细胞的关键效应分子,在APAP损伤的肝脏中,炎症在肝脏修复开始时加速消退,可能通过自分泌方式增强中性粒细胞的吞噬功能。
    UNASSIGNED: Acetaminophen (APAP)-induced acute liver injury (AILI) is a leading cause of acute liver failure (ALF). N-acetylcysteine (NAC) is only effective within 24 h after APAP intoxication, raising an urgent need for alternative approaches to treat this disease. This study aimed to test whether cathelicidin (Camp), which is a protective factor in chronic liver diseases, protects mice against APAP-induced liver injury and ALF.
    UNASSIGNED: A clinically relevant AILI model and an APAP-induced ALF model were generated in mice. Genetic and pharmacological approaches were used to interfere with the levels of cathelicidin in vivo.
    UNASSIGNED: An increase in hepatic pro-CRAMP/CRAMP (the precursor and mature forms of mouse cathelicidin) was observed in APAP-intoxicated mice. Upregulated cathelicidin was derived from liver-infiltrating neutrophils. Compared with wild-type littermates, Camp knockout had no effect on hepatic injury but dampened hepatic repair in AILI and reduced survival in APAP-induced ALF. CRAMP administration reversed impaired liver recovery observed in APAP-challenged Camp knockout mice. Delayed CRAMP, CRAMP(1-39) (the extended form of CRAMP), or LL-37 (the mature form of human cathelicidin) treatment exhibited a therapeutic benefit for AILI. Co-treatment of cathelicidin and NAC in AILI displayed a stronger hepatoprotective effect than NAC alone. A similar additive effect of CRAMP(1-39)/LL-37 and NAC was observed in APAP-induced ALF. The pro-reparative role of cathelicidin in the APAP-damaged liver was attributed to an accelerated resolution of inflammation at the onset of liver repair, possibly through enhanced neutrophil phagocytosis of necrotic cell debris in an autocrine manner.
    UNASSIGNED: Cathelicidin reduces APAP-induced liver injury and ALF in mice by promoting liver recovery via facilitating inflammation resolution, suggesting a therapeutic potential for late-presenting patients with AILI with or without ALF.
    UNASSIGNED: Acetaminophen-induced acute liver injury is a leading cause of acute liver failure. The efficacy of N-acetylcysteine, the only clinically approved drug against acetaminophen-induced acute liver injury, is significantly reduced for late-presenting patients. We found that cathelicidin exhibits a great therapeutic potential in mice with acetaminophen-induced liver injury or acute liver failure, which makes up for the limitation of N-acetylcysteine therapy by specifically promoting liver repair after acetaminophen intoxication. The pro-reparative role of cathelicidin, as a key effector molecule of neutrophils, in the APAP-injured liver is attributed to an accelerated resolution of inflammation at the onset of liver repair, possibly through enhanced phagocytic function of neutrophils in an autocrine manner.
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  • 文章类型: Journal Article
    肿瘤的发展和进展取决于肿瘤细胞与组织基质的相互作用。将肿瘤基质微环境(TME)生物工程化为3D仿生模型对于深入了解肿瘤细胞的发育和进展途径以及确定治疗靶标至关重要。成釉细胞瘤是一种良性但局部侵袭性上皮牙源性肿瘤,主要发生在颌骨,可引起大量发病,有时甚至死亡。成釉细胞瘤进展的分子机制知之甚少。设计了一个概括肿瘤和基质的空间模型,以表明没有相关的基质种群,肿瘤侵袭定量降低。当相关基质在牙龈成纤维细胞填充的致密胶原中工程化时,核因子κB受体活化因子配体(RANKL)表达增强,包括成釉细胞瘤肿瘤岛,开发并量化。使用人类成骨细胞(骨基质)进一步增强了成釉细胞瘤组织病理学表型的仿生能力。这项工作证明了两个关键基质种群的重要性,成骨细胞,牙龈成纤维细胞,用于精确的3D仿生成釉细胞瘤建模。
    Tumour development and progression is dependent upon tumour cell interaction with the tissue stroma. Bioengineering the tumour-stroma microenvironment (TME) into 3D biomimetic models is crucial to gain insight into tumour cell development and progression pathways and identify therapeutic targets. Ameloblastoma is a benign but locally aggressive epithelial odontogenic neoplasm that mainly occurs in the jawbone and can cause significant morbidity and sometimes death. The molecular mechanisms for ameloblastoma progression are poorly understood. A spatial model recapitulating the tumour and stroma was engineered to show that without a relevant stromal population, tumour invasion is quantitatively decreased. Where a relevant stroma was engineered in dense collagen populated by gingival fibroblasts, enhanced receptor activator of nuclear factor kappa-B ligand (RANKL) expression was observed and histopathological properties, including ameloblastoma tumour islands, developed and were quantified. Using human osteoblasts (bone stroma) further enhanced the biomimicry of ameloblastoma histopathological phenotypes. This work demonstrates the importance of the two key stromal populations, osteoblasts, and gingival fibroblasts, for accurate 3D biomimetic ameloblastoma modelling.
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  • 文章类型: Journal Article
    转化生长因子-β(TGF-β)是肝脏中的有效效应,它参与了肝损伤后启动的过多过程。TGF-β影响实质,非实质,和炎症细胞高度依赖环境的方式。其生物利用度对于对各种侮辱的快速反应是至关重要的。在肝脏中-可能在其他器官中-通过将大部分TGF-β作为称为潜伏TGF-β(L-TGF-β)的灭活前体形式在细胞外基质中沉积而成为可能。几种基质蛋白参与基质沉积,潜在的复杂稳定,和L-TGF-β的激活。细胞外基质蛋白1(ECM1)最近被认为是维持健康肝脏中沉积的L-TGF-β潜伏期的关键因素。的确,它的耗竭导致自发的TGF-β信号激活,对肝脏结构和功能产生有害影响.这篇综述文章介绍了细胞内L-TGF-β复合物形成的最新知识,分泌,基质沉积,和激活,并描述了所涉及的蛋白质和过程。Further,我们强调了下调肝纤维化和肝癌中L-TGF-β活化的治疗潜力。
    Transforming growth factor-β (TGF-β) is a potent effector in the liver, which is involved in a plethora of processes initiated upon liver injury. TGF-β affects parenchymal, non-parenchymal, and inflammatory cells in a highly context-dependent manner. Its bioavailability is critical for a fast response to various insults. In the liver - and probably in other organs - this is made possible by the deposition of a large portion of TGF-β in the extracellular matrix as an inactivated precursor form termed latent TGF-β (L-TGF-β). Several matrisomal proteins participate in matrix deposition, latent complex stabilisation, and activation of L-TGF-β. Extracellular matrix protein 1 (ECM1) was recently identified as a critical factor in maintaining the latency of deposited L-TGF-β in the healthy liver. Indeed, its depletion causes spontaneous TGF-β signalling activation with deleterious effects on liver architecture and function. This review article presents the current knowledge on intracellular L-TGF-β complex formation, secretion, matrix deposition, and activation and describes the proteins and processes involved. Further, we emphasise the therapeutic potential of toning down L-TGF-β activation in liver fibrosis and liver cancer.
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  • 文章类型: Journal Article
    心内膜纤维弹性增生(EFE)由心内膜上的纤维化组织定义,部分通过异常的内皮-间质转化形成。然而,病理触发因素仍然未知.在这项研究中,我们表明,在啮齿动物模型中,异常血流部分通过内皮-间质转化诱导EFE,氯沙坦可以废除EFE的发展。此外,我们将我们的发现转化为人类心内膜内皮细胞,并显示层流促进与间充质分化相关的基因的抑制。这些发现强调了血流在促进心内膜内皮细胞EFE中的作用,并为治疗这种高度病态的疾病提供了一种新的潜在疗法。
    Endocardial fibroelastosis (EFE) is defined by fibrotic tissue on the endocardium and forms partly through aberrant endothelial-to-mesenchymal transition. However, the pathologic triggers are still unknown. In this study, we showed that abnormal flow induces EFE partly through endothelial-to-mesenchymal transition in a rodent model, and that losartan can abrogate EFE development. Furthermore, we translated our findings to human endocardial endothelial cells, and showed that laminar flow promotes the suppression of genes associated with mesenchymal differentiation. These findings emphasize the role of flow in promoting EFE in endocardial endothelial cells and provide a novel potential therapy to treat this highly morbid condition.
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  • 文章类型: Journal Article
    慢性急性肝衰竭(ACLF)的特征是器官衰竭,短期死亡率高,and,病理生理上,紊乱的炎症反应。细胞外基质(ECM)与炎症反应的调节密切相关。本研究旨在确定ACLF中ECM更新的生物标志物的改变及其与炎症的关联。器官衰竭,和死亡率。
    我们研究了283例因患有或不患有ACLF的急性代偿失调(AD)而入院的肝硬化患者,64例稳定期肝硬化患者,和30个健康对照。一个验证队列(25ACLF,包括9名健康对照)。测量血浆PRO-C3、PRO-C4、PRO-C5、PRO-C6和PRO-C8(即III-VI型和VIII型胶原形成)以及C4M和C6M(即IV型和VI型胶原降解)。对肝脏活检进行PRO-C6的免疫组织化学(AD[n=7],ACLF[n=5])。进行竞争风险回归分析以探索具有28天和90天死亡率的ECM更新的生物标志物的预后价值。
    与AD相比,ACLF中的PRO-C3和PRO-C6增加(分别为p=0.089和p<0.001),而胶原降解标志物C4M和C6M相似。PRO-C3和PRO-C6均与肝功能和炎症标志物密切相关。仅PRO-C6与肝外器官衰竭和28天和90天死亡率相关(风险比[HR;对数标度]6.168,95%CI2.366-16.080,p<0.001,和3.495,95%CI1.509-8.093,p=0.003,分别)。这些发现在验证队列中是一致的。在ACLF患者的肝活检中观察到高PRO-C6表达。
    这项研究表明,第一次,ACLF中严重的间质胶原净沉积的证据,并对PRO-C6与(肝外)器官衰竭和死亡率之间的关联进行了新的观察。需要进一步的研究来确定这些观察的致病意义。
    本研究描述了在慢性急性肝衰竭(ACLF)中III型和VI型胶原蛋白的更新中断。这些胶原蛋白的血浆生物标志物(PRO-C3和PRO-C6)与肝功能障碍和炎症的严重程度有关。PRO-C6,也称为激素内毒素,还发现与急性代偿失调和ACLF的多器官功能衰竭和预后有关。
    UNASSIGNED: Acute-on-chronic liver failure (ACLF) is characterised by organ failure(s), high short-term mortality, and, pathophysiologically, deranged inflammatory responses. The extracellular matrix (ECM) is critically involved in regulating the inflammatory response. This study aimed to determine alterations in biomarkers of ECM turnover in ACLF and their association with inflammation, organ failures, and mortality.
    UNASSIGNED: We studied 283 patients with cirrhosis admitted for acute decompensation (AD) with or without ACLF, 64 patients with stable cirrhosis, and 30 healthy controls. A validation cohort (25 ACLF, 9 healthy controls) was included. Plasma PRO-C3, PRO-C4, PRO-C5, PRO-C6, and PRO-C8 (i.e. collagen type III-VI and VIII formation) and C4M and C6M (i.e. collagen type IV and VI degradation) were measured. Immunohistochemistry of PRO-C6 was performed on liver biopsies (AD [n = 7], ACLF [n = 5]). A competing-risk regression analysis was performed to explore the prognostic value of biomarkers of ECM turnover with 28- and 90-day mortality.
    UNASSIGNED: PRO-C3 and PRO-C6 were increased in ACLF compared to AD (p = 0.089 and p <0.001, respectively), whereas collagen degradation markers C4M and C6M were similar. Both PRO-C3 and PRO-C6 were strongly associated with liver function and inflammatory markers. Only PRO-C6 was associated with extrahepatic organ failures and 28- and 90-day mortality (hazard ratio [HR; on log-scale] 6.168, 95% CI 2.366-16.080, p <0.001, and 3.495, 95% CI 1.509-8.093, p = 0.003, respectively). These findings were consistent in the validation cohort. High PRO-C6 expression was observed in liver biopsies of patients with ACLF.
    UNASSIGNED: This study shows, for the first time, evidence of severe net interstitial collagen deposition in ACLF and makes the novel observation of the association between PRO-C6 and (extrahepatic) organ failures and mortality. Further studies are needed to define the pathogenic significance of these observations.
    UNASSIGNED: This study describes a disrupted turnover of collagen type III and VI in Acute-on-chronic liver failure (ACLF). Plasma biomarkers of these collagens (PRO-C3 and PRO-C6) are associated with the severity of liver dysfunction and inflammation. PRO-C6, also known as the hormone endotrophin, has also been found to be associated with multi-organ failure and prognosis in acute decompensation and ACLF.
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  • 文章类型: Journal Article
    线粒体是细胞中形成活性氧(ROS)的主要细胞器,线粒体功能障碍已被描述为胆汁淤积性肝病发病的关键因素。甲基化控制的J蛋白(MCJ)是一种线粒体蛋白,与电子传递链的复合物I相互作用并抑制其功能。尚未探索MCJ在胆汁淤积病理中的相关性。
    我们研究了MCJ与慢性胆汁淤积性肝病患者肝活检中胆汁淤积性肝损伤之间的关系,以及从WT和MCJ-KO小鼠获得的肝脏和原代肝细胞。胆管结扎(BDL)作为胆汁淤积的动物模型,和原代肝细胞用毒性剂量的胆汁酸处理。我们评估了MCJ沉默治疗胆汁淤积诱导的肝损伤的效果。
    与正常肝组织相比,在慢性胆汁淤积性肝病患者的肝组织中检测到MCJ水平升高。同样,在老鼠模型中,肝脏MCJ水平升高。BDL之后,MCJ-KO动物表现出显著降低的炎症和凋亡。在胆汁酸诱导毒性的体外模型中,我们观察到,MCJ的损失保护小鼠原代肝细胞从胆汁酸诱导的线粒体ROS过度产生和ATP耗竭,使更高的细胞活力。最后,MCJ表达的体内抑制,在BDL之后,显示出减少的肝损伤和缓解的主要胆汁淤积特征。
    我们证明MCJ参与胆汁淤积性肝损伤的进展,我们的结果确定MCJ是减轻胆汁淤积引起的肝损伤的潜在治疗靶点。
    在这项研究中,我们研究了MCJ抑制线粒体呼吸链对胆汁酸诱导的肝毒性的影响。MCJ的丢失保护肝细胞免受凋亡,线粒体ROS过度生产,和ATP消耗作为胆汁酸毒性的结果。我们的结果确定MCJ是缓解胆汁淤积性肝病中肝损伤的潜在治疗靶点。
    OBJECTIVE: Mitochondria are the major organelles for the formation of reactive oxygen species (ROS) in the cell, and mitochondrial dysfunction has been described as a key factor in the pathogenesis of cholestatic liver disease. The methylation-controlled J-protein (MCJ) is a mitochondrial protein that interacts with and represses the function of complex I of the electron transport chain. The relevance of MCJ in the pathology of cholestasis has not yet been explored.
    METHODS: We studied the relationship between MCJ and cholestasis-induced liver injury in liver biopsies from patients with chronic cholestatic liver diseases, and in livers and primary hepatocytes obtained from WT and MCJ-KO mice. Bile duct ligation (BDL) was used as an animal model of cholestasis, and primary hepatocytes were treated with toxic doses of bile acids. We evaluated the effect of MCJ silencing for the treatment of cholestasis-induced liver injury.
    RESULTS: Elevated levels of MCJ were detected in the liver tissue of patients with chronic cholestatic liver disease when compared with normal liver tissue. Likewise, in mouse models, the hepatic levels of MCJ were increased. After BDL, MCJ-KO animals showed significantly decreased inflammation and apoptosis. In an in vitro model of bile-acid induced toxicity, we observed that the loss of MCJ protected mouse primary hepatocytes from bile acid-induced mitochondrial ROS overproduction and ATP depletion, enabling higher cell viability. Finally, the in vivo inhibition of the MCJ expression, following BDL, showed reduced liver injury and a mitigation of the main cholestatic characteristics.
    CONCLUSIONS: We demonstrated that MCJ is involved in the progression of cholestatic liver injury, and our results identified MCJ as a potential therapeutic target to mitigate the liver injury caused by cholestasis.
    BACKGROUND: In this study, we examine the effect of mitochondrial respiratory chain inhibition by MCJ on bile acid-induced liver toxicity. The loss of MCJ protects hepatocytes against apoptosis, mitochondrial ROS overproduction, and ATP depletion as a result of bile acid toxicity. Our results identify MCJ as a potential therapeutic target to mitigate liver injury in cholestatic liver diseases.
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  • 文章类型: Journal Article
    The tumor development and metastasis are closely related to the structure and function of the tumor microenvironment (TME). Recently, TME modulation strategies have attracted much attention in cancer immunotherapy. Despite the preliminary success of immunotherapeutic agents, their therapeutic effects have been restricted by the limited retention time of drugs in TME. Compared with traditional delivery systems, nanoparticles with unique physical properties and elaborate design can efficiently penetrate TME and specifically deliver to the major components in TME. In this review, we briefly introduce the substitutes of TME including dendritic cells, macrophages, fibroblasts, tumor vasculature, tumor-draining lymph nodes and hypoxic state, then review various nanoparticles targeting these components and their applications in tumor therapy. In addition, nanoparticles could be combined with other therapies, including chemotherapy, radiotherapy, and photodynamic therapy, however, the nanoplatform delivery system may not be effective in all types of tumors due to the heterogeneity of different tumors and individuals. The changes of TME at various stages during tumor development are required to be further elucidated so that more individualized nanoplatforms could be designed.
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  • 文章类型: Journal Article
    心脏瓣膜病(VHD)是一个主要的健康负担,影响着全世界数百万人。这类疾病的治疗依赖于医学,阀门维修,和人工心脏瓣膜,包括机械和生物人工瓣膜。然而,有无数关于可能的替代品的报告指出了长期稳定性和生物相容性问题,并强调需要制造更持久和有效的替代品。这篇综述讨论了可用于开发此类阀门的当前和潜在材料,以及现有和正在开发的制造方法。从这个角度来看,我们定量比较了目前使用或提议用于心脏瓣膜的各种材料的机械性能及其制造工艺,以确定我们在创造新材料和制造技术以更好地模仿天然心脏瓣膜性能方面面临的挑战。
    Valvular heart diseases (VHD) are a major health burden, affecting millions of people worldwide. The treatments for such diseases rely on medicine, valve repair, and artificial heart valves including mechanical and bioprosthetic valves. Yet, there are countless reports on possible alternatives noting long-term stability and biocompatibility issues and highlighting the need for fabrication of more durable and effective replacements. This review discusses the current and potential materials that can be used for developing such valves along with existing and developing fabrication methods. With this perspective, we quantitatively compare mechanical properties of various materials that are currently used or proposed for heart valves along with their fabrication processes to identify challenges we face in creating new materials and manufacturing techniques to better mimick ​the performance of native heart valves.
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  • 文章类型: Journal Article
    背景:这项研究的目的是设计一种癌症侵袭模型,其中可以在体外调节癌症侵袭率。
    方法:制备含有各种浓度的转化生长因子-β1(TGF-β1)(CAF-GM-TGF-β1)的明胶水凝胶微球(GM)的癌相关成纤维细胞(CAF)聚集体。测量CAF聚集体的α-平滑肌肌动蛋白(α-SMA)以通过改变TGF-β1的浓度来研究CAF活化水平。通过将癌细胞与各种CAF-GM-TGF-β1共培养来进行侵袭测定以评估癌症侵袭率。
    结果:CAF中α-SMA的表达水平随着TGF-β1浓度的增加而增加。当与各种类型的CAF-GM-TGF-β1共培养时,癌症侵袭率与α-SMA水平密切相关。可以想象,TGF-β1浓度可以改变CAF活化的水平,导致癌细胞的侵袭率。此外,在高浓度的TGF-β1下,观察到基质金属蛋白酶(MMP)抑制剂对癌症侵袭率的影响。较高的侵袭率将通过较高的MMP产量来实现。
    结论:本模型有望实现通过改变TGF-β1浓度来改变其速率的癌症侵袭。
    BACKGROUND: The objective of this study is to design a cancer invasion model where the cancer invasion rate can be regulated in vitro.
    METHODS: Cancer-associated fibroblasts (CAF) aggregates incorporating gelatin hydrogel microspheres (GM) containing various concentrations of transforming growth factor-β1 (TGF-β1) (CAF-GM-TGF-β1) were prepared. Alpha-smooth muscle actin (α-SMA) for the CAF aggregates was measured to investigate the CAF activation level by changing the concentration of TGF-β1. An invasion assay was performed to evaluate the cancer invasion rate by co-cultured of cancer cells with various CAF-GM-TGF-β1.
    RESULTS: The expression level of α-SMA for CAF increased with an increased in the TGF-β1 concentration. When co-cultured with various types of CAF-GM-TGF-β1, the cancer invasion rate was well correlated with the α-SMA level. It is conceivable that the TGF-β1 concentration could modify the level of CAF activation, leading to the invasion rate of cancer cells. In addition, at the high concentrations of TGF-β1, the effect of a matrix metalloproteinase (MMP) inhibitor on the cancer invasion rate was observed. The higher invasion rate would be achieved through the higher MMP production.
    CONCLUSIONS: The present model is promising to realize the cancer invasion whose rate can be modified by changing the TGF-β1 concentration.
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  • 文章类型: Journal Article
    Division of large, immature alveolar structures into smaller, more numerous alveoli increases the surface area available for gas exchange. Alveolar division requires precise epithelial-mesenchymal interactions. However, few experimental models exist for studying how these cell-cell interactions produce changes in 3-dimensional structure. Here we report an epithelial-mesenchymal cell co-culture model where 3-dimensional peaks form with similar cellular orientation as alveolar structures in vivo. Co-culturing fetal mouse lung mesenchyme with A549 epithelial cells produced tall peaks of cells covered by epithelia with cores of mesenchymal cells. These structures did not form when using adult lung fibroblasts. Peak formation did not require localized areas of cell proliferation or apoptosis. Mesenchymal cells co-cultured with epithelia adopted an elongated cell morphology closely resembling myofibroblasts within alveolar septa in vivo. Because inflammation inhibits alveolar formation, we tested the effects of E. coli lipopolysaccharide on 3-dimensional peak formation. Confocal and time-lapse imaging demonstrated that lipopolysaccharide reduced mesenchymal cell migration, resulting in fewer, shorter peaks with mesenchymal cells present predominantly at the base. This epithelial-mesenchymal co-culture model may therefore prove useful in future studies of mechanisms regulating alveolar morphogenesis.
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