HA, Hyaluronic acid

HA,透明质酸
  • 文章类型: Journal Article
    细胞外基质(ECM)在肿瘤微环境(TME)的构建中起着关键和动态的作用,成为癌症研究和治疗的焦点。ECM重塑中的多细胞信号传导有助于不受控制的增殖,转移,免疫逃避和癌症的耐药性。靶向ECM重塑三部曲可能是早期的一种新策略,middle-,晚期癌症和克服耐药性。目前,近60%的替代抗癌药物来自天然产物或活性成分或从植物中分离的结构类似物。根据ECM的特点,这份手稿提出了癌症全过程管理的三个阶段,包括在癌症早期预防癌症发展(I期);在癌症中期预防肿瘤转移(II期);提供一种用于晚期癌症(III期)的免疫疗法的新方法,并提出了关于天然产物的贡献的新见解,这些天然产物用作通过靶向ECM中的成分来发挥抗癌作用的创新策略。在这里,我们关注ECM重塑的三部曲和ECM之间的相互作用,癌症相关成纤维细胞(CAFs)和肿瘤相关巨噬细胞(TAMs),并梳理天然产物在肿瘤进展中对ECM及相关靶点的干预作用,为开发抗肿瘤转移和复发的新药提供参考。
    Extracellular matrix (ECM) plays a pivotal and dynamic role in the construction of tumor microenvironment (TME), becoming the focus in cancer research and treatment. Multiple cell signaling in ECM remodeling contribute to uncontrolled proliferation, metastasis, immune evasion and drug resistance of cancer. Targeting trilogy of ECM remodeling could be a new strategy during the early-, middle-, advanced-stages of cancer and overcoming drug resistance. Currently nearly 60% of the alternative anticancer drugs are derived from natural products or active ingredients or structural analogs isolated from plants. According to the characteristics of ECM, this manuscript proposes three phases of whole-process management of cancer, including prevention of cancer development in the early stage of cancer (Phase I); prevent the metastasis of tumor in the middle stage of cancer (Phase II); provide a novel method in the use of immunotherapy for advanced cancer (Phase III), and present novel insights on the contribution of natural products use as innovative strategies to exert anticancer effects by targeting components in ECM. Herein, we focus on trilogy of ECM remodeling and the interaction among ECM, cancer-associated fibroblasts (CAFs) and tumor-associated macrophages (TAMs), and sort out the intervention effects of natural products on the ECM and related targets in the tumor progression, provide a reference for the development of new drugs against tumor metastasis and recurrence.
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  • 文章类型: Journal Article
    细胞外囊泡(EV)是由发挥重要生物学作用的细胞分泌的纳米级或微米级囊泡的统称。间充质干细胞是一类具有自我修复和多向分化潜能的细胞。近年来,大量研究表明,电动汽车,尤其是那些由间充质干细胞分泌的细胞,能促进各种组织的修复和再生,因此,在再生医学中具有巨大的潜力。然而,由于循环系统的快速清除能力,电动汽车几乎无法在特定部位持续发挥作用,以修复目标组织。水凝胶具有良好的生物相容性和松散和多孔结构特性,使其能够作为电动汽车载体,从而延长在某些特定区域的保留时间并减缓电动汽车的释放。当需要电动汽车在特定地点运行时,EV负载的水凝胶可以作为一种极好的方法。在这次审查中,我们首先介绍来源,角色,以及电动汽车的提取和表征方法,并描述其应用现状。然后,我们回顾了不同类型的水凝胶,并讨论了影响其携带和释放电动汽车能力的因素。我们总结了将EV加载到水凝胶中并表征EV加载水凝胶的几种策略。此外,我们讨论了EV负载水凝胶的应用策略,并回顾了它们在组织再生和修复中的具体应用。本文最后总结了电动汽车水凝胶的研究现状,并对未来的研究方向进行了展望,我们希望这将为研究人员提供有希望的想法。
    Extracellular vesicles (EVs) are a collective term for nanoscale or microscale vesicles secreted by cells that play important biological roles. Mesenchymal stem cells are a class of cells with the potential for self-healing and multidirectional differentiation. In recent years, numerous studies have shown that EVs, especially those secreted by mesenchymal stem cells, can promote the repair and regeneration of various tissues and, thus, have significant potential in regenerative medicine. However, due to the rapid clearance capacity of the circulatory system, EVs are barely able to act persistently at specific sites for repair of target tissues. Hydrogels have good biocompatibility and loose and porous structural properties that allow them to serve as EV carriers, thereby prolonging the retention in certain specific areas and slowing the release of EVs. When EVs are needed to function at specific sites, the EV-loaded hydrogels can stand as an excellent approach. In this review, we first introduce the sources, roles, and extraction and characterization methods of EVs and describe their current application status. We then review the different types of hydrogels and discuss factors influencing their abilities to carry and release EVs. We summarize several strategies for loading EVs into hydrogels and characterizing EV-loaded hydrogels. Furthermore, we discuss application strategies for EV-loaded hydrogels and review their specific applications in tissue regeneration and repair. This article concludes with a summary of the current state of research on EV-loaded hydrogels and an outlook on future research directions, which we hope will provide promising ideas for researchers.
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  • 文章类型: Journal Article
    独特的生物学和流变学特性使透明质酸成为医药和美容领域的热门材料。由于在医疗应用中对透明质酸的纯度要求非常高,链球菌发酵的盈利能力降低。通过重组系统生产透明质酸被认为是有希望的替代方案。表达的基因和发酵条件的组合的变化改变了所产生的透明质酸的产量和分子量。这篇综述致力于重组细菌和真菌生物生产透明质酸的现状。
    The unique biological and rheological properties make hyaluronic acid a sought-after material for medicine and cosmetology. Due to very high purity requirements for hyaluronic acid in medical applications, the profitability of streptococcal fermentation is reduced. Production of hyaluronic acid by recombinant systems is considered a promising alternative. Variations in combinations of expressed genes and fermentation conditions alter the yield and molecular weight of produced hyaluronic acid. This review is devoted to the current state of hyaluronic acid production by recombinant bacterial and fungal organisms.
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  • 文章类型: Case Reports
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  • 文章类型: Journal Article
    植入心血管支架是治疗冠状动脉疾病的重要方法。裸金属支架和药物洗脱支架显示有希望的临床结果,然而,他们的永久存在可能会造成并发症。近年来,许多临床前和临床试验已经评估了生物可吸收支架的特性,包括聚合物和镁基支架。三维(3D)打印形状记忆聚合物材料能够实现支架的自展开,并为个性化治疗提供了新的方法。新型生物可吸收金属支架如铁基和锌基支架也已被研究和改进。然而,伴随临床平移的新型生物可吸收支架的开发仍然耗时且具有挑战性。这篇综述全面总结了基于临床前/临床试验的生物可吸收支架的发展,并重点介绍了转化研究以及支架的新技术(例如,与生物传感器集成的生物可吸收电子支架)。这些发现有望激发新型支架的设计和优化方法,以提高心血管疾病的治疗效果。
    Implantation of cardiovascular stents is an important therapeutic method to treat coronary artery diseases. Bare-metal and drug-eluting stents show promising clinical outcomes, however, their permanent presence may create complications. In recent years, numerous preclinical and clinical trials have evaluated the properties of bioresorbable stents, including polymer and magnesium-based stents. Three-dimensional (3D) printed-shape-memory polymeric materials enable the self-deployment of stents and provide a novel approach for individualized treatment. Novel bioresorbable metallic stents such as iron- and zinc-based stents have also been investigated and refined. However, the development of novel bioresorbable stents accompanied by clinical translation remains time-consuming and challenging. This review comprehensively summarizes the development of bioresorbable stents based on their preclinical/clinical trials and highlights translational research as well as novel technologies for stents (e.g., bioresorbable electronic stents integrated with biosensors). These findings are expected to inspire the design of novel stents and optimization approaches to improve the efficacy of treatments for cardiovascular diseases.
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  • 文章类型: Journal Article
    癌症仍然是全球死亡的主要原因之一,转移总是导致治疗失败。这里,我们开发了一种多功能的水凝胶加载光热剂,化疗药物,和免疫佐剂通过联合治疗根除原位肿瘤并抑制转移。通过聚多巴胺(PDA)与硫醇化透明质酸的硫醇-迈克尔加成合成了水凝胶网络。PDA作为交联剂,赋予水凝胶优异的光热性能。同时,化疗药物,多柔比星(DOX),通过PDA和免疫佐剂的π-π堆叠加载到水凝胶中,CpG-ODN,是通过静电相互作用加载的。DOX从水凝胶中的释放最初是缓慢的,但由于近红外光照射而加速。水凝胶对4T1癌细胞表现出明显的协同作用,并刺激RAW264.7细胞分泌大量细胞因子。此外,在瘤内注射和光照射后,水凝胶根除了原位鼠乳腺癌异种移植物,并强烈抑制了转移。这种化学-光热免疫疗法的高抗癌效率是由多功能水凝胶的强协同作用引起的。包括诱发的宿主免疫反应。化学-光热免疫疗法的组合策略有望用于乳腺癌的高效治疗。
    Cancer remains one of the leading causes of death globally and metastasis always leads to treatment failure. Here, we develop a versatile hydrogel loading photothermal agents, chemotherapeutics, and immune-adjuvants to eradicate orthotopic tumors and inhibit metastasis by combinational therapy. Hydrogel networks were synthesized via the thiol-Michael addition of polydopamine (PDA) with thiolated hyaluronic acid. PDA acted as a cross-linking agent and endowed the hydrogel with excellent photothermal property. Meanwhile, a chemotherapeutic agent, doxorubicin (DOX), was loaded in the hydrogel via π‒π stacking with PDA and an immune-adjuvant, CpG-ODN, was loaded via electrostatic interaction. The release of DOX from the hydrogel was initially slow but accelerated due to near infrared light irradiation. The hydrogels showed remarkably synergistic effect against 4T1 cancer cells and stimulated plenty of cytokines secreting from RAW264.7 cells. Moreover, the hydrogels eradicated orthotopic murine breast cancer xenografts and strongly inhibited metastasis after intratumoral injection and light irradiation. The high anticancer efficiency of this chemo-photothermal immunotherapy resulted from the strong synergistic effect of the versatile hydrogels, including the evoked host immune response. The combinational strategy of chemo-photothermal immunotherapy is promising for highly effective treatment of breast cancer.
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  • 文章类型: Case Reports
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  • 文章类型: Journal Article
    迄今为止,皮肤伤口仍然是医疗保健专业人员的问题。尽管多年来已经开发了许多用于皮肤再生的方法,再生医学的最新进展为人造皮肤替代品的制造提供了非常有前途的策略,包括3D生物打印,静电纺丝或喷涂,在其他人中。特别是,皮肤喷雾剂是一种仍在临床评估中的创新技术,显示出巨大的细胞和水凝胶递送治疗急性和慢性伤口的潜力。与用于伤口愈合的常规治疗相比,皮肤喷雾剂具有显着的优势,例如应用的便利,治疗大面积伤口的可能性,或喷涂材料的均匀分布。在这篇文章中,我们回顾了这项技术的最新进展,详细描述了研究和目前市售的无细胞和细胞皮肤喷雾产品,用于各种疾病和应用不同的实验材料。此外,由于皮肤喷雾剂产品受到不同的分类,我们还解释了商业化的监管途径,包括针对不同皮肤病及其治疗条件的主要临床试验。最后,我们争论并建议皮肤喷雾剂生物技术的未来可能趋势,以更好地用于临床皮肤病学。
    To date, skin wounds are still an issue for healthcare professionals. Although numerous approaches have been developed over the years for skin regeneration, recent advances in regenerative medicine offer very promising strategies for the fabrication of artificial skin substitutes, including 3D bioprinting, electrospinning or spraying, among others. In particular, skin sprays are an innovative technique still under clinical evaluation that show great potential for the delivery of cells and hydrogels to treat acute and chronic wounds. Skin sprays present significant advantages compared to conventional treatments for wound healing, such as the facility of application, the possibility to treat large wound areas, or the homogeneous distribution of the sprayed material. In this article, we review the latest advances in this technology, giving a detailed description of investigational and currently commercially available acellular and cellular skin spray products, used for a variety of diseases and applying different experimental materials. Moreover, as skin sprays products are subjected to different classifications, we also explain the regulatory pathways for their commercialization and include the main clinical trials for different skin diseases and their treatment conditions. Finally, we argue and suggest possible future trends for the biotechnology of skin sprays for a better use in clinical dermatology.
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  • 文章类型: Journal Article
    炎症性关节炎是老年人致残的主要原因。这种情况会导致关节疼痛,功能丧失,生活质量下降,主要是由于骨关节炎(OA)和类风湿性关节炎(RA)。目前,炎性关节炎的可用治疗选择包括口服抗炎药,topic,或关节内路线,手术,和身体康复。治疗炎症性关节炎的新替代方法,到目前为止,由于灾难性的经济负担和微不足道的治疗益处,仍然是巨大的挑战。鉴于非靶向的全身细胞毒性和药物治疗的生物利用度有限,一个主要关注的问题是使用纳米材料建立刺激响应性药物递送系统,在生物医学应用中具有开关潜力.这篇综述总结了取决于各种内部刺激(包括还原-氧化(氧化还原),pH值,和酶)和外部刺激(包括温度,超声(美国),磁性,照片,电压,和机械摩擦)。该综述还探讨了基于病理变化使用刺激响应性纳米材料来管理炎症性关节炎的进展和挑战。包括软骨退化,滑膜炎,软骨下骨破坏.暴露于由这种组织病理学改变引起的适当刺激可以触发治疗药物的释放。在炎性关节炎的关节靶向治疗中势在必行。
    Inflammatory arthritis is a major cause of disability in the elderly. This condition causes joint pain, loss of function, and deterioration of quality of life, mainly due to osteoarthritis (OA) and rheumatoid arthritis (RA). Currently, available treatment options for inflammatory arthritis include anti-inflammatory medications administered via oral, topical, or intra-articular routes, surgery, and physical rehabilitation. Novel alternative approaches to managing inflammatory arthritis, so far, remain the grand challenge owing to catastrophic financial burden and insignificant therapeutic benefit. In the view of non-targeted systemic cytotoxicity and limited bioavailability of drug therapies, a major concern is to establish stimuli-responsive drug delivery systems using nanomaterials with on-off switching potential for biomedical applications. This review summarizes the advanced applications of triggerable nanomaterials dependent on various internal stimuli (including reduction-oxidation (redox), pH, and enzymes) and external stimuli (including temperature, ultrasound (US), magnetic, photo, voltage, and mechanical friction). The review also explores the progress and challenges with the use of stimuli-responsive nanomaterials to manage inflammatory arthritis based on pathological changes, including cartilage degeneration, synovitis, and subchondral bone destruction. Exposure to appropriate stimuli induced by such histopathological alterations can trigger the release of therapeutic medications, imperative in the joint-targeted treatment of inflammatory arthritis.
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  • 文章类型: Journal Article
    哺乳动物细胞,包括癌细胞,被含有细胞结合蛋白聚糖的表面层覆盖,糖蛋白,相关的糖胺聚糖和结合的蛋白质,通常被称为糖萼。实体肿瘤还具有动态流体微环境,其间质流量升高。在目前的工作中,我们进一步研究了以下假设:肿瘤糖萼会感觉到间质流,从而导致细胞运动和转移的激活。使用高转移性肾癌细胞系(SN12L1)及其低转移性对应物(SN12C),我们在体外证明了小分子磺酰苯胺羟胺酸(SAHA)抑制硫酸乙酰肝素合成酶N-去乙酰化酶-N-磺基转移酶-1,减少硫酸乙酰肝素中的糖萼并抑制SN12L1对间质流的运动。SN12L1细胞植入SCID小鼠的肾包膜形成大的原发性肿瘤,并转移到远处的器官,但用SAHA治疗时未检测到转移。在另一组实验中,研究了透明质酸的作用。透明质酸合成酶1,透明质酸合成途径中的关键酶,在SN12L1细胞中被敲低,体外实验显示抑制了间质流诱导的迁移。随后将这些细胞植入小鼠肾脏中,没有检测到远处转移。这些发现为肾癌转移的治疗提供了新的治疗方法。
    Mammalian cells, including cancer cells, are covered by a surface layer containing cell bound proteoglycans, glycoproteins, associated glycosaminoglycans and bound proteins that is commonly referred to as the glycocalyx. Solid tumors also have a dynamic fluid microenvironment with elevated interstitial flow. In the present work we further investigate the hypothesis that interstitial flow is sensed by the tumor glycocalyx leading to activation of cell motility and metastasis. Using a highly metastatic renal carcinoma cell line (SN12L1) and its low metastatic counterpart (SN12C) we demonstrate in vitro that the small molecule Suberoylanilide Hydroxamic Acid (SAHA) inhibits the heparan sulfate synthesis enzyme N-deacetylase-N-sulfotransferase-1, reduces heparan sulfate in the glycocalyx and suppresses SN12L1 motility in response to interstitial flow. SN12L1 cells implanted in the kidney capsule of SCID mice formed large primary tumors and metastasized to distant organs, but when treated with SAHA metastases were not detected. In another set of experiments, the role of hyaluronic acid was investigated. Hyaluronan synthase 1, a critical enzyme in the synthetic pathway for hyaluronic acid, was knocked down in SN12L1 cells and in vitro experiments revealed inhibition of interstitial flow induced migration. Subsequently these cells were implanted in mouse kidneys and no distant metastases were detected. These findings suggest new therapeutic approaches to the treatment of kidney carcinoma metastasis.
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