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Hydrogels are extensively investigated as biomimetic extracellular matrix (ECM) scaffolds in tissue engineering. The physiological properties of ECM affect cellular behaviors, which is an inspiration for cell-based therapies. Photocurable hyaluronic acid (HA) hydrogel (AHAMA-PBA) modified with 3-aminophenylboronic acid, sodium periodate, and methacrylic anhydride simultaneously is constructed in this study. Chondrocytes are then cultured on the surface of the hydrogels to evaluate the effect of the physicochemical properties of the hydrogels on modulating cellular behaviors. Cell viability assays demonstrate that the hydrogel is non-toxic to chondrocytes. The existence of phenylboronic acid (PBA) moieties enhances the interaction of chondrocytes and hydrogel, promoting cell adhesion and aggregation through filopodia. RT-PCR indicates that the gene expression levels of type II collagen, Aggrecan, and Sox9 are significantly up-regulated in chondrocytes cultured on hydrogels. Moreover, the mechanical properties of the hydrogels have a significant effect on the cell phenotype, with soft gels (≈2 kPa) promoting chondrocytes to exhibit a hyaline phenotype. Overall, PBA-functionalized HA hydrogel with low stiffness exhibits the best effect on promoting the chondrocyte phenotype, which is a promising biomaterial for cartilage regeneration.  相似文献   
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Cancer‐cell phenotype is not only the result of malignant progression, but also dependent on the microenvironment surrounding them, including influences from the extracellular matrix and its structural properties. We have investigated the influence of the nanofiber matrix of the self‐assembling peptide, RADA16, in comparison with collagen I and Matrigel on the malignant phenotype of the human breast‐cancer cell, MDA‐MB‐231, in 3D cultures, including the morphology, survival, proliferation rate, migration potential and the effect of these matrices on the malignancy of the cancer cells in vivo. Our data indicate that these tumor cells change their morphology in response to the different 3D matrix in vitro cultures and the RADA16 self‐assembling peptide scaffold mimics an extracellular matrix and could effectively reduce the malignant phenotype of the tumor cells in vitro and in vivo.

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如何根据子代的表型判断基因互作的形式以及确定亲代的基因型,是遗传学上重要的也是困难的问题.给出了解决上述问题的代数方法.在应用上,比以往任何方法更为广泛和方便.  相似文献   
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DNA骨架磷硫酰化修饰是指在天然DNA骨架上发现的P-O键被P-S键替换的化学修饰, 属于首例生理修饰, 具有磷硫修饰的DNA在Tris缓冲体系中电泳时具有DNA降解表型. 研究发现DNA骨架磷硫修饰属于复制后修饰, 具有如下三个特征: Rp型立体修饰, 序列专一性、分布广泛性. 这种修饰由五个基因组成的dnd基因簇(dndA-E)编码的蛋白控制, 但这些蛋白具体的作用机制目前还不清楚. 为了将来更好地研究DNA磷硫修饰机制, 本文综述了DNA磷硫酰化修饰的发现历程, 特点, 参与DNA磷硫修饰的蛋白结构研究进展, 以及磷硫修饰的DNA作为抗氧化剂研究进展. 同时, 对DNA磷硫修饰机制、生理功能等研究目前所面临的困难, 如硫原子如何渗入DNA骨架, 参与DNA磷硫修饰的五个蛋白是如何协调作用完成DNA磷硫修饰的机理等难题进行了简单概括, 以为相关研究提出一些可能的方向.  相似文献   
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Macrophages play a prominent role in wound healing. In the early stages, they promote inflammation and remove pathogens, wound debris, and cells that have apoptosed. Later in the repair process, they dampen inflammation and secrete factors that regulate the proliferation, differentiation, and migration of keratinocytes, fibroblasts, and endothelial cells, leading to neovascularisation and wound closure. The macrophages that coordinate this repair process are complex: they originate from different sources and have distinct phenotypes with diverse functions that act at various times in the repair process. Macrophages in individuals with diabetes are altered, displaying hyperresponsiveness to inflammatory stimulants and increased secretion of pro-inflammatory cytokines. They also have a reduced ability to phagocytose pathogens and efferocytose cells that have undergone apoptosis. This leads to a reduced capacity to remove pathogens and, as efferocytosis is a trigger for their phenotypic switch, it reduces the number of M2 reparative macrophages in the wound. This can lead to diabetic foot ulcers (DFUs) forming and contributes to their increased risk of not healing and becoming infected, and potentially, amputation. Understanding macrophage dysregulation in DFUs and how these cells might be altered, along with the associated inflammation, will ultimately allow for better therapies that might complement current treatment and increase DFU’s healing rates.  相似文献   
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三疣梭子蟹肠道菌群结构及代谢表型分析   总被引:1,自引:0,他引:1  
建立16S rRNA基因的高通量测序和基于核磁共振( NMR)的代谢组学技术分析三疣梭子蟹肠道菌群结构及代谢物组成的方法。经对梭子蟹肠道样品提取基因组DNA和16 S rRNA基因的V3-V4可变区片段的扩增,产物用于MiSeq测序。经对测序结果进行聚类和注释分析,发现梭子蟹肠道的细菌群落结构以变形杆菌门、拟杆菌门、梭杆菌门、软壁菌门和酸杆菌门为主,其中以发光杆菌属、Paludibacter和产丙酸菌属的细菌丰度最高。梭子蟹肠道样品经组织破碎、甲醇-水(2:1, V/V)提取、高速离心和冷冻干燥后,重悬在钠钾磷酸盐缓冲液中,用于NMR分析。采用标准的 Noesypr1D脉冲序列采集1 H NMR谱,设置90o脉冲宽度约为10μs,等待时间为2 s,混合时间为100 ms,谱宽为20 ppm,采样点数为32 K,自由感应衰减累加次数为64。再利用2D NMR谱对肠道代谢物进行归属,共获得包括氨基酸、有机羧酸和有机胺类等30种代谢产物。本方法可用于系统分析梭子蟹肠道菌群及其代谢物组成。  相似文献   
8.
作为HIV侵染细胞的蛋白质机器,包膜蛋白gp120利用序列变异和结构柔性等策略逃避宿主免疫识别,是病毒呈现出不同中和表型的主要原因.尽管HIV中和表型的分子机制已被初步探索,但其热力学相关的分子基础仍待进一步阐明.本研究利用同源模建的方法构建了极端中和表型HIV毒株(中和抵抗毒株H061.14与中和敏感毒株R2)的gp120结构模型,在逐渐升高的温度梯度下进行了高温分子动力学模拟,以研究二者在结构稳定性、解折叠和构象柔性上的差异.结果表明,HIV中和表型与gp120的热力学性质呈正相关,与解折叠程度无必然关联.各温度下gp120的结构偏差、天然接触含量、构象群体分布,以及单残基柔性的比较清楚地说明,中和敏感比中和抵抗gp120表现出更大的结构偏差、更多的构象状态和更高的构象柔性,但两者具有相似的解折叠程度.由极端中和表型HIV包膜蛋白gp120显著不同的热力学性质可以推断,HIV很可能利用gp120的热力学性质来调节其构象,进而平衡病毒侵染和免疫逃避之间的矛盾.我们的研究不仅揭示了极端中和表型HIV包膜蛋白gp120的在构象柔性和结构稳定性上的差异,同时还从高温解折叠热力学的角度明确了...  相似文献   
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A new method for ultrathin grafting of pNIPAm on PDMS surfaces is introduced that employs plasma activation of the surface followed by thermal polymerization. This method is optimized for human primary SMC attachment and subsequent intact cell sheet detachment by lowering the temperature. The contractile gene expression of the cells showed that the contractile phenotype of the SMCs which is induced by aligning the cells through micropatterning is more preserved after thermoresponsive cell sheet detachment in contrast with enzymatic detachment. Given its simplicity and low cost, this thermoresponsive grafting method can be utilized for engineering patterned cell sheets for future bottom‐up tissue engineering techniques.

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