Cilia

纤毛
  • 文章类型: Journal Article
    初级纤毛是触角状的感觉细胞器,在几乎所有现代真核生物中在进化上都是保守的,来自单细胞绿藻,莱茵衣藻,脊椎动物和哺乳动物。纤毛是基于微管的细胞突起,已适应执行广泛的物种特异性功能,从细胞运动到检测光和细胞外机械和化学信号的转导。这些功能使纤毛对于生物体的发育和生存至关重要。纤毛的高度保守性允许在C.reinhardtii中发现,以告知我们对哺乳动物初级纤毛的基本生物学的理解,并提供对纤毛病的遗传病因的见解。在过去的二十年里,越来越多的研究表明,纤毛体内平衡的多个方面受肌动蛋白细胞骨架的调节,包括中心体迁移和定位,囊泡运输到基体,胞吞增多,和纤毛介导的信号传导。这里,我们回顾肌动蛋白对纤毛稳态的调节,并强调了莱茵衣原体和哺乳动物细胞中保守和不同的机制。Further,我们将纤毛病患者的疾病表现与肌动蛋白和肌动蛋白相关基因突变的患者进行比较,并提出由肌动蛋白细胞骨架的遗传改变引起的原发性纤毛缺陷可能是某些出生缺陷的基础。
    Primary cilia are antenna-like sensory organelles that are evolutionarily conserved in nearly all modern eukaryotes, from the single-celled green alga, Chlamydomonas reinhardtii, to vertebrates and mammals. Cilia are microtubule-based cellular projections that have adapted to perform a broad range of species-specific functions, from cell motility to detection of light and the transduction of extracellular mechanical and chemical signals. These functions render cilia essential for organismal development and survival. The high conservation of cilia has allowed for discoveries in C. reinhardtii to inform our understanding of the basic biology of mammalian primary cilia, and to provide insight into the genetic etiology of ciliopathies. Over the last two decades, a growing number of studies has revealed that multiple aspects of ciliary homeostasis are regulated by the actin cytoskeleton, including centrosome migration and positioning, vesicle transport to the basal body, ectocytosis, and ciliary-mediated signaling. Here, we review actin regulation of ciliary homeostasis, and highlight conserved and divergent mechanisms in C. reinhardtii and mammalian cells. Further, we compare the disease manifestations of patients with ciliopathies to those with mutations in actin and actin-associated genes, and propose that primary cilia defects caused by genetic alteration of the actin cytoskeleton may underlie certain birth defects.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    AQP4在膜下和血管周围星形胶质细胞的足底膜以及位于心室系统的室管膜中表达。由于Silvio导水管的狭窄,在AQP4-/-小鼠(KO)的后代中观察到了阻塞性先天性脑积水(OCHC)的零星出现。这里,我们探讨AQP4表达缺乏是否会导致小鼠导水管中室管膜细胞发育异常。我们比较了野生型和KO小鼠的导水管周围样品。基于微阵列的转录组分析反映了大量具有差异表达的基因(809)。与室管膜发育相关的基因集(GS),纤毛功能和免疫系统经过特殊修饰的qPCR证实,KO小鼠基因表达降低:(i)编码室管膜分化的转录因子(Rfx4和FoxJ1),(ii)参与轴突的中央器官(Spag16和Hydin)的构成,(iii)与睫状组件相关(Cfap43、Cfap69和Ccdc170),和(iv)参与室管膜的细胞间连接复合物(Cdhr4)。相比之下,基因如Spp1,Gpnmb,伊加克斯,和Cd68,与Cd11c阳性小胶质细胞群体相关,在KO小鼠中过表达。波形蛋白和γ-微管蛋白的电子显微镜和免疫荧光显示KO小鼠的室管膜紊乱,随着细胞间复杂结合的变化,不均匀的纤毛,以及顶膜平面细胞极性的变化。这些结构改变转化为纤毛搏动频率降低,这可能会改变脑脊液的运动。在出生后的第一周,小鼠导水管周围区域中CD11c小胶质细胞的存在是一个新发现。在AQP4-/-小鼠中,这些细胞长时间存在于渡槽周围,在P11处显示峰值表达。我们建议这些细胞在室管膜的正常发育中起重要作用,并且它们在KO小鼠中的过度表达对于减少室管膜异常至关重要,否则可能导致梗阻性脑积水的发展。
    AQP4 is expressed in the endfeet membranes of subpial and perivascular astrocytes and in the ependymal cells that line the ventricular system. The sporadic appearance of obstructive congenital hydrocephalus (OCHC) has been observed in the offspring of AQP4-/- mice (KO) due to stenosis of Silvio\'s aqueduct. Here, we explore whether the lack of AQP4 expression leads to abnormal development of ependymal cells in the aqueduct of mice. We compared periaqueductal samples from wild-type and KO mice. The microarray-based transcriptome analysis reflected a large number of genes with differential expression (809). Gene sets (GS) associated with ependymal development, ciliary function and the immune system were specially modified qPCR confirmed reduced expression in the KO mice genes: (i) coding for transcription factors for ependymal differentiation (Rfx4 and FoxJ1), (ii) involved in the constitution of the central apparatus of the axoneme (Spag16 and Hydin), (iii) associated with ciliary assembly (Cfap43, Cfap69 and Ccdc170), and (iv) involved in intercellular junction complexes of the ependyma (Cdhr4). By contrast, genes such as Spp1, Gpnmb, Itgax, and Cd68, associated with a Cd11c-positive microglial population, were overexpressed in the KO mice. Electron microscopy and Immunofluorescence of vimentin and γ-tubulin revealed a disorganized ependyma in the KO mice, with changes in the intercellular complex union, unevenly orientated cilia, and variations in the planar cell polarity of the apical membrane. These structural alterations translate into reduced cilia beat frequency, which might alter cerebrospinal fluid movement. The presence of CD11c + microglia cells in the periaqueductal zone of mice during the first postnatal week is a novel finding. In AQP4-/- mice, these cells remain present around the aqueduct for an extended period, showing peak expression at P11. We propose that these cells play an important role in the normal development of the ependyma and that their overexpression in KO mice is crucial to reduce ependyma abnormalities that could otherwise contribute to the development of obstructive hydrocephalus.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    线粒体相关的神经退行性疾病与初级纤毛功能的破坏有关。已在Leigh综合征中发现内源性线粒体复合物I成分NDUFAFF2的突变,严重的遗传性线粒体病.ARMC9中的突变,编码一种基础体蛋白,因为Joubert综合征,大脑有缺陷的纤毛病,肾,和眼睛。这里,我们报道了线粒体代谢和初级纤毛信号之间的机制联系。我们发现NDUFAF2的丢失在体外和体内引起线粒体和纤毛缺陷,并将NDUFAF2鉴定为ARMC9的结合伴侣。我们还发现,NDUFAFF2对于纤毛形成既必要又足够,并且NDUFAFF2的外源表达挽救了已知ARMC9缺乏症患者细胞中观察到的纤毛和线粒体缺陷。补充NAD可恢复ARMC9缺陷细胞和斑马鱼的线粒体和纤毛功能障碍,并改善ARMC9缺陷患者的眼运动和运动缺陷。目前的结果提供了一个令人信服的机械联系,在人类研究的证据支持下,在初级纤毛和线粒体信号之间。重要的是,我们的发现对于针对纤毛病变的治疗方法的发展具有重要意义.
    Mitochondria-related neurodegenerative diseases have been implicated in the disruption of primary cilia function. Mutation in an intrinsic mitochondrial complex I component NDUFAF2 has been identified in Leigh syndrome, a severe inherited mitochondriopathy. Mutations in ARMC9, which encodes a basal body protein, cause Joubert syndrome, a ciliopathy with defects in the brain, kidney, and eye. Here, we report a mechanistic link between mitochondria metabolism and primary cilia signaling. We discovered that loss of NDUFAF2 caused both mitochondrial and ciliary defects in vitro and in vivo and identified NDUFAF2 as a binding partner for ARMC9. We also found that NDUFAF2 was both necessary and sufficient for cilia formation and that exogenous expression of NDUFAF2 rescued the ciliary and mitochondrial defects observed in cells from patients with known ARMC9 deficiency. NAD+ supplementation restored mitochondrial and ciliary dysfunction in ARMC9-deficient cells and zebrafish and ameliorated the ocular motility and motor deficits of a patient with ARMC9 deficiency. The present results provide a compelling mechanistic link, supported by evidence from human studies, between primary cilia and mitochondrial signaling. Importantly, our findings have significant implications for the development of therapeutic approaches targeting ciliopathies.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    体外和体内造血干细胞和祖细胞(HSPCs)的产生,特别是安全治疗性HSPCs的产生,仍然效率低下。在这项研究中,我们已经确定化合物BF170盐酸盐是以前未报道的促造血分子,使用原代斑马鱼卵裂球细胞培养物和小鼠胚状体(EB)的分化测定,我们证明了BF170盐酸盐在体内促进了确定的造血作用。在斑马鱼确定的造血过程中,BF170盐酸盐增加血流量,扩大血源性内皮(HE)细胞,促进HSPC的出现。机械上,初级纤毛-Ca2+-Notch/NO信号通路,它是血流的下游,在体内介导盐酸BF170对HSPC的诱导作用。我们的发现,第一次,揭示了BF170盐酸盐是增强HSPC诱导的化合物,并且可以应用于HSPC的离体扩增。
    Generation of hematopoietic stem and progenitor cells (HSPCs) ex vivo and in vivo, especially the generation of safe therapeutic HSPCs, still remains inefficient. In this study, we have identified compound BF170 hydrochloride as a previously unreported pro-hematopoiesis molecule, using the differentiation assays of primary zebrafish blastomere cell culture and mouse embryoid bodies (EBs), and we demonstrate that BF170 hydrochloride promoted definitive hematopoiesis in vivo. During zebrafish definitive hematopoiesis, BF170 hydrochloride increases blood flow, expands hemogenic endothelium (HE) cells and promotes HSPC emergence. Mechanistically, the primary cilia-Ca2+-Notch/NO signaling pathway, which is downstream of the blood flow, mediated the effects of BF170 hydrochloride on HSPC induction in vivo. Our findings, for the first time, reveal that BF170 hydrochloride is a compound that enhances HSPC induction and may be applied to the ex vivo expansion of HSPCs.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    在衣藻中,直接光门,质膜定位的阳离子通道视紫红质ChR1和ChR2是趋光性的主要光感受器。它们的目标和丰富度对于最佳运动反应至关重要。然而,我们对衣藻如何实现这一目标的了解仍处于起步阶段。在这里,我们表明ChR1内化是通过光刺激的内吞作用发生的。在内吞之前或期间,ChR1被修饰并形成高分子量复合物。这些是细胞外囊泡中唯一可检测的ChR1形式,并且它们的丰度在照射时动态变化。含ChR1的细胞外囊泡通过质膜和/或纤毛碱基分泌。与此相符,纤毛发生突变体表现出增加的ChR1降解速率。Further,我们确定了半胱氨酸蛋白酶CEP1的参与,这是木瓜蛋白酶C1A亚家族的成员。ΔCEP1敲除菌株缺乏光诱导的ChR1降解,而ChR2降解不受影响。低光照刺激CEP1表达,它是通过促光素调节的,SPA1泛素连接酶和环AMP。Further,突变体和抑制剂分析显示,小GTP酶ARL11和SUMO化参与了靶向眼点和纤毛的ChR1。因此,我们的研究定义了衣藻的这种中央光感受器的降解途径,并确定了参与其同型平衡和靶向的新元件。
    In Chlamydomonas, the directly light-gated, plasma membrane-localized cation channels channelrhodopsins ChR1 and ChR2 are the primary photoreceptors for phototaxis. Their targeting and abundance is essential for optimal movement responses. However, our knowledge how Chlamydomonas achieves this is still at its infancy. Here we show that ChR1 internalization occurs via light-stimulated endocytosis. Prior or during endocytosis ChR1 is modified and forms high molecular mass complexes. These are the solely detectable ChR1 forms in extracellular vesicles and their abundance therein dynamically changes upon illumination. The ChR1-containing extracellular vesicles are secreted via the plasma membrane and/or the ciliary base. In line with this, ciliogenesis mutants exhibit increased ChR1 degradation rates. Further, we establish involvement of the cysteine protease CEP1, a member of the papain-type C1A subfamily. ΔCEP1-knockout strains lack light-induced ChR1 degradation, whereas ChR2 degradation was unaffected. Low light stimulates CEP1 expression, which is regulated via phototropin, a SPA1 E3 ubiquitin ligase and cyclic AMP. Further, mutant and inhibitor analyses revealed involvement of the small GTPase ARL11 and SUMOylation in ChR1 targeting to the eyespot and cilia. Our study thus defines the degradation pathway of this central photoreceptor of Chlamydomonas and identifies novel elements involved in its homoeostasis and targeting.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    Odad3基因功能缺失突变导致原发性纤毛运动障碍(PCD),由活动纤毛功能障碍引起的疾病。以前,我们证明了小鼠中Odad3基因的敲除复制了PCD的几个特征,比如脑积水,左右身体对称性的缺陷,和男性不育,生殖道中完全没有精子。大多数Odad3基因敲除的动物在性成熟前由于严重的脑积水和无法茁壮成长而死亡,这就排除了生育研究。这里,我们在性腺发育和成年睾丸中进行了Odad3基因的表达分析。我们表明Odad3在第一波精子发生过程中开始表达,特别是在减数分裂阶段,它的表达仅限于成年睾丸的生殖细胞,表明Odad3在精子形成中起作用。随后,我们有条件地删除了成年男性的Odad3基因,并证明即使部分切除Odad3基因,也会导致小鼠精子鞭毛(MMAF)形态异常的弱精子症.对Odad3缺陷小鼠的精细管的分析显示,精子发生缺陷,精细管在精子发生和精子发生阶段积累。此外,对杂合子Odad3+/-基因敲除小鼠的生育力分析显示精子数量和运动性减少以及精子形态异常。此外,Odad3/-雄性的生育能力较短。总的来说,这些结果表明Odad3和Odad3基因剂量在男性生育力中的重要作用。这些发现可能对携带Odad3功能丧失突变的PCD患者的遗传和生育咨询实践产生影响。
    Odad3 gene loss-of-function mutation leads to Primary Ciliary Dyskinesia (PCD), a disease caused by motile cilia dysfunction. Previously, we demonstrated that knockout of the Odad3 gene in mice replicates several features of PCD, such as hydrocephalus, defects in left-right body symmetry, and male infertility, with a complete absence of sperm in the reproductive tract. The majority of Odad3 knockout animals die before sexual maturation due to severe hydrocephalus and failure to thrive, which precludes fertility studies. Here, we performed the expression analysis of the Odad3 gene during gonad development and in adult testes. We showed that Odad3 starts its expression during the first wave of spermatogenesis, specifically at the meiotic stage, and that its expression is restricted to the germ cells in the adult testes, suggesting that Odad3 plays a role in spermatozoa formation. Subsequently, we conditionally deleted the Odad3 gene in adult males and demonstrated that even partial ablation of the Odad3 gene leads to asthenoteratozoospermia with multiple morphological abnormalities of sperm flagella (MMAF) in mice. The analysis of the seminiferous tubules in Odad3-deficient mice revealed defects in spermatogenesis with accumulation of seminiferous tubules at the spermiogenesis and spermiation phases. Furthermore, analysis of fertility in heterozygous Odad3+/- knockout mice revealed a reduction in sperm count and motility as well as abnormal sperm morphology. Additionally, Odad3+/- males exhibited a shorter fertile lifespan. Overall, these results suggest the important role of Odad3 and Odad3 gene dosage in male fertility. These findings may have an impact on the genetic and fertility counseling practice of PCD patients carrying Odad3 loss-of-function mutations.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    活动纤毛的缺陷,称为能动纤毛病,导致影响呼吸系统和生殖系统的临床表现,以及侧向缺陷和脑积水。我们先前定义了双等位基因MNS1变异,导致坐位倒置和男性不育,反映了Mns1-/-小鼠的发现。这里,我们介绍了5个新发现的个体的临床和基因组发现,这些个体来自4个无关的受MNS1相关疾病影响的家庭.纤毛病组测试和全外显子组测序确定了一个先前报道的和两个新的MNS1变体,扩展了疾病的基因型谱。确认了广泛的侧向缺陷,包括全位倒置和异位性。有趣的是,一名患有MNS1无义变异的6岁女孩纯合子,有新生儿呼吸窘迫综合征病史,反复呼吸道感染,慢性鼻炎,还有湿咳.因此,免疫荧光分析显示该个体的呼吸道上皮细胞不存在MNS1。另外两个具有低态变异的个体显示出侧向缺陷和轻度呼吸表型。这项研究代表了在具有双等位基因MNS1变体的个体中异位性和呼吸系统疾病的首次观察。与MNS1相关的能动纤毛病相关的表型的重要扩展。
    Defects in motile cilia, termed motile ciliopathies, result in clinical manifestations affecting the respiratory and reproductive system, as well as laterality defects and hydrocephalus. We previously defined biallelic MNS1 variants causing situs inversus and male infertility, mirroring the findings in Mns1-/- mice. Here, we present clinical and genomic findings in five newly identified individuals from four unrelated families affected by MNS1-related disorder. Ciliopathy panel testing and whole exome sequencing identified one previously reported and two novel MNS1 variants extending the genotypic spectrum of disease. A broad spectrum of laterality defects including situs inversus totalis and heterotaxia was confirmed. Interestingly, a single affected six-year-old girl homozygous for an MNS1 nonsense variant presented with a history of neonatal respiratory distress syndrome, recurrent respiratory tract infections, chronic rhinitis, and wet cough. Accordingly, immunofluorescence analysis showed the absence of MNS1 from the respiratory epithelial cells of this individual. Two other individuals with hypomorphic variants showed laterality defects and mild respiratory phenotype. This study represents the first observation of heterotaxia and respiratory disease in individuals with biallelic MNS1 variants, an important extension of the phenotype associated with MNS1-related motile ciliopathy disorder.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    初级纤毛,从大多数真核细胞类型的表面突出的天线状感觉细胞器,鉴于其结构和/或功能的缺陷与人类疾病和综合症有关,已成为越来越感兴趣的信号枢纽,被称为纤毛病。随着初级纤毛在健康和疾病中的作用不断扩大,识别纤毛发生中的新参与者将导致对该细胞器功能的更好理解。研究表明,初级纤毛与免疫突触有相似之处,在抗原呈递细胞或靶细胞与淋巴细胞之间的界面处的高度组织的结构。研究已经证明已知的纤毛调节因子在免疫突触形成中的作用。然而,免疫突触调节因子是否能调节纤毛生成仍然难以捉摸。这里,我们发现程序性死亡配体1(PD-L1),一种免疫检查点蛋白和免疫突触形成的调节剂,在纤毛生成的调节中起作用。我们发现PD-L1富集在纤毛细胞的中心体/基体和高尔基体,消耗PD-L1增强了纤毛生成并增加了纤毛膜运输蛋白Rab8a的积累,BBS5和感觉受体蛋白PC-2。此外,PD-L1与BBS5和PC-2形成复合物。此外,我们发现PD-L1的耗竭导致Gli3的纤毛积累和Gli1的下调.我们的结果表明PD-L1是纤毛发生的新参与者,有助于PC-2介导的感觉信号和Hh信号级联。
    The primary cilium, an antenna-like sensory organelle that protrudes from the surface of most eukaryotic cell types, has become a signaling hub of growing interest given that defects in its structure and/or function are associated with human diseases and syndromes, known as ciliopathies. With the continuously expanding role of primary cilia in health and diseases, identifying new players in ciliogenesis will lead to a better understanding of the function of this organelle. It has been shown that the primary cilium shares similarities with the immune synapse, a highly organized structure at the interface between an antigen-presenting or target cell and a lymphocyte. Studies have demonstrated a role for known cilia regulators in immune synapse formation. However, whether immune synapse regulators modulate ciliogenesis remains elusive. Here, we find that programmed death ligand 1 (PD-L1), an immune checkpoint protein and regulator of immune synapse formation, plays a role in the regulation of ciliogenesis. We found that PD-L1 is enriched at the centrosome/basal body and Golgi apparatus of ciliated cells and depleting PD-L1 enhanced ciliogenesis and increased the accumulation of ciliary membrane trafficking proteins Rab8a, BBS5, and sensory receptor protein PC-2. Moreover, PD-L1 formed a complex with BBS5 and PC-2. In addition, we found that depletion of PD-L1 resulted in the ciliary accumulation of Gli3 and the downregulation of Gli1. Our results suggest that PD-L1 is a new player in ciliogenesis, contributing to PC-2-mediated sensory signaling and the Hh signaling cascade.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    脑脊液(CSF)填充的脑室扩大(脑室扩大),先天性脑积水(CH)的主要特征,在自闭症谱系障碍(ASD)患者中越来越得到认可。KATNAL2,Katanin家族微管切断ATP酶的成员,是已知的ASD风险基因,但其在人脑发育中的作用尚不清楚。这里,我们发现Katnal2的无义截断(Katnal2Δ17)在小鼠中导致经典纤毛表型,包括精子发生受损和脑室扩大。在人类和小鼠中,KATNAL2在胎儿心室-室下区的纤毛放射状神经胶质以及其出生后的室管膜和神经元后代中高度表达。在Katnal2Δ17小鼠中观察到的脑室肥大与初级纤毛和室管膜平面细胞极性的破坏有关,导致纤毛产生的CSF流量受损。Further,脑室巨大Katnal2Δ17小鼠的前额锥体神经元表现出降低的兴奋性驱动和降低的高频放电。与小鼠的这些发现一致,我们发现了罕见的,在5名经神经外科治疗的CH和并发ASD或其他神经发育障碍的无关患者中,KATNAL2中的破坏性杂合种系变异。用直系同源ASD相关的KATNAL2F244L错义变体工程化的小鼠概括了在人类患者中发现的心室增宽。一起,这些数据提示KATNAL2致病变异体通过破坏胎儿放射状神经胶质细胞及其出生后室管膜和神经元后代的微管动力学,从而改变脑室内CSF稳态和实质神经元连接.结果确定了ASD患者遗传亚群中脑室肥大发展的分子机制,并且可以解释尽管神经外科CSF分流,但某些CH患者神经发育表型的持续存在。
    Enlargement of the cerebrospinal fluid (CSF)-filled brain ventricles (cerebral ventriculomegaly), the cardinal feature of congenital hydrocephalus (CH), is increasingly recognized among patients with autism spectrum disorders (ASD). KATNAL2, a member of Katanin family microtubule-severing ATPases, is a known ASD risk gene, but its roles in human brain development remain unclear. Here, we show that nonsense truncation of Katnal2 (Katnal2Δ17) in mice results in classic ciliopathy phenotypes, including impaired spermatogenesis and cerebral ventriculomegaly. In both humans and mice, KATNAL2 is highly expressed in ciliated radial glia of the fetal ventricular-subventricular zone as well as in their postnatal ependymal and neuronal progeny. The ventriculomegaly observed in Katnal2Δ17 mice is associated with disrupted primary cilia and ependymal planar cell polarity that results in impaired cilia-generated CSF flow. Further, prefrontal pyramidal neurons in ventriculomegalic Katnal2Δ17 mice exhibit decreased excitatory drive and reduced high-frequency firing. Consistent with these findings in mice, we identified rare, damaging heterozygous germline variants in KATNAL2 in five unrelated patients with neurosurgically treated CH and comorbid ASD or other neurodevelopmental disorders. Mice engineered with the orthologous ASD-associated KATNAL2 F244L missense variant recapitulated the ventriculomegaly found in human patients. Together, these data suggest KATNAL2 pathogenic variants alter intraventricular CSF homeostasis and parenchymal neuronal connectivity by disrupting microtubule dynamics in fetal radial glia and their postnatal ependymal and neuronal descendants. The results identify a molecular mechanism underlying the development of ventriculomegaly in a genetic subset of patients with ASD and may explain persistence of neurodevelopmental phenotypes in some patients with CH despite neurosurgical CSF shunting.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    纤毛是毛状微致动器,其循环运动专门用于在低雷诺数下推动细胞外液。这些细胞器的集群可以形成同步的跳动模式,称为元时波,这可能是由流体动力学相互作用引起的。我们通过与圆形轨道弹性结合的微球对流体动力学相互作用的纤毛进行建模,其相对于无滑移壁的倾斜度模型为纤毛功率和恢复行程,导致粘性流的各向异性。我们通过将微球动力学简化为同步的慢时间尺度来得出耦合的相位振荡器描述,并确定解析的历时波解及其在周期性链设置中的稳定性。在这个框架中,通过将细胞或组织表面附近的流动几何形状与流体动力耦合函数的方向性相关联,可以建立相位振荡器之间的流体动力耦合的简单直觉。这种直觉自然地解释了元时波的线性稳定性的性质。表面附近的流动稳定了沿动力冲程方向传播的长波长的变波,此外,短波波垂直于动力冲程传播。执行具有周期性边界条件的相位振荡器链的模拟,我们确实发现两种波类型都出现了各种线性稳定的波数。在相位振荡器的开放链中,变征波的动力学是根本不同的。在这里,模型纤毛的弹性控制波方向并选择特定的波数:在大弹性时,在动力冲程方向上传播的波是稳定的,而在较小的弹性波在相反的方向是稳定的。对于中等弹性,两个波方向共存。在这个制度中,波向链的两端传播,但是只有一个波浪方向占上风,取决于弹性和初始条件。
    Cilia are hairlike microactuators whose cyclic motion is specialized to propel extracellular fluids at low Reynolds numbers. Clusters of these organelles can form synchronized beating patterns, called metachronal waves, which presumably arise from hydrodynamic interactions. We model hydrodynamically interacting cilia by microspheres elastically bound to circular orbits, whose inclinations with respect to a no-slip wall model the ciliary power and recovery stroke, resulting in an anisotropy of the viscous flow. We derive a coupled phase-oscillator description by reducing the microsphere dynamics to the slow timescale of synchronization and determine analytical metachronal wave solutions and their stability in a periodic chain setting. In this framework, a simple intuition for the hydrodynamic coupling between phase oscillators is established by relating the geometry of flow near the surface of a cell or tissue to the directionality of the hydrodynamic coupling functions. This intuition naturally explains the properties of the linear stability of metachronal waves. The flow near the surface stabilizes metachronal waves with long wavelengths propagating in the direction of the power stroke and, moreover, metachronal waves with short wavelengths propagating perpendicularly to the power stroke. Performing simulations of phase-oscillator chains with periodic boundary conditions, we indeed find that both wave types emerge with a variety of linearly stable wave numbers. In open chains of phase oscillators, the dynamics of metachronal waves is fundamentally different. Here the elasticity of the model cilia controls the wave direction and selects a particular wave number: At large elasticity, waves traveling in the direction of the power stroke are stable, whereas at smaller elasticity waves in the opposite direction are stable. For intermediate elasticity both wave directions coexist. In this regime, waves propagating towards both ends of the chain form, but only one wave direction prevails, depending on the elasticity and initial conditions.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

公众号