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2.
痛情绪是指因疼痛引发的情绪和情感体验,是疾病过程中最常见的一种情绪。痛情绪相关神经机制非常复杂,但主要与单胺类神经递质、神经肽和某些神经环路有关,笔者将结合目前研究现状分别从以上两方面展开,就痛情绪相关单胺类神经递质和神经肽在受体分类、脑区通路、共疾病以及各神经递质之间的联系和痛情绪相关神经环路中各个蛋白的作用机制等方面进行探讨。 相似文献
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Proteomic Profiling of Small Extracellular Vesicles Isolated from the Plasma of Vietnamese Patients with Non-Small Cell Lung Cancer Reveals Some Potential Biomarkers 下载免费PDF全文
Thao Phuong Bui Phuong Lan LeLinh Thi Tu Nguyen Le Trung ThoThai Hong Trinh 《Asian Pacific journal of cancer prevention》2022,23(6):1893-1900
Background: Considering the poor prognosis of non-small cell lung cancer (NSCLC), the objective of this study was to examine the potential of plasma-derived vesicles as a source of lung cancer-specific proteins. Extracellular vesicle (EV) cargos are specific to the source cells, hence they have the potential of being a source of cancer-specific proteins. Methods: The proteins differently expressed in cancer were determined and derived from EVs isolated from the plasma of NSCLC patients at the National Lung Hospital. To this end, purification was done using gel filtration chromatography and ultracentrifugation. In addition, nano liquid chromatography mass spectrometry (LC–MS/MS) was used for analyzing. Results: Fifty-seven EV-derived proteins related to NSCLC were highlighted in this research. Some of them have not been addressed before, such as EEF1A1 (elongation factor 1-α1), KPNB1 (Importin subunit beta 1), SRC (proto-oncogene tyrosine-protein kinase) and ACTC1 (actin, alpha cardiac muscle 1). This list was further confirmed through a comparison with ExoCarta and Vesiclepedia. Conclusion: This study is the first work to show the involvement of several novel proteins of small EV (EEF1A1, KPNB1, SRC, and ACTC1) in the progression of NSCLC. The results suggested that they could serve as novel biomarkers for non-small cell lung cancer in the future. 相似文献
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Photobiomodulation (PBM) therapy is based on the exposure of biological tissues to low‐level laser light (coherent light) or light‐emitting diodes (LEDs; noncoherent light), leading to the modulation of cellular functions, such as proliferation and migration, which result in tissue regeneration. PBM therapy has important clinical applications in regenerative medicine. Vitiligo is an acquired depigmentary disorder resulting from disappearance of functional melanocytes in the involved skin. Vitiligo repigmentation depends on available melanocytes derived from (a) melanocyte stem cells located in the bulge area of hair follicles and (b) the epidermis at the lesional borders, which contains a pool of functional melanocytes. Since follicular melanoblasts (MBs) are derived from the melanocyte stem cells residing at the bulge area of hair follicle, the process of vitiligo repigmentation presents a research model for studying the regenerative effect of PBM therapy. Previous reports have shown favourable response for treatment of vitiligo with a low‐energy helium‐neon (He‐Ne) laser. This review focuses on the molecular events that took place during the repigmentation process of vitiligo triggered by He‐Ne laser (632.8 nm, red light). Monochromatic radiation in the visible and infrared A (IRA) range sustains matrix metalloproteinase (MMP), improves mitochondrial function, and increases adenosine triphosphate (ATP) synthesis and O2 consumption, which lead to cellular regenerative pathways. Cytochrome c oxidase in the mitochondria was reported to be the photoacceptor upon which He‐Ne laser exerts its effects. Mitochondrial retrograde signalling is responsible for the cellular events by red light. This review shows that He‐Ne laser initiated mitochondrial retrograde signalling via a Ca2+‐dependent cascade. The impact on cytochrome c oxidase within the mitochondria, an event that results in activation of CREB (cyclic‐AMP response element binding protein)‐related cascade, is responsible for the He‐Ne laser promoting functional development at different stages of MBs and boosting functional melanocytes. He‐Ne laser irradiation induced (a) melanocyte stem cell differentiation; (b) immature outer root sheath MB migration; (c) differentiated outer root sheath MB melanogenesis and migration; and (d) perilesional melanocyte migration and proliferation. These photobiomodulation effects result in perifollocular and marginal repigmentation in vitiligo. 相似文献
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目的建立单抗N糖分析方法的系统适用性对照品,并设定相应的系统适用性要求。方法利用液质联用(LC-MS)仪对N糖系统适用性对照品进行N糖型的表征鉴别,并对对照品进行稳定性评价。结合方法特点和验证数据,对系统适用性要求进行设定。结果建立的系统适用性对照品具有良好的稳定性,其糖型涵盖了单抗主要的N糖型种类。针对3种药典拟收录的单抗N糖分析方法,设定了以下系统适用性要求,包括:图谱与典型图谱相似、G1F(1,6)和G1F(1,3)的分离度应满足具体要求、G0F%应在规定的范围内、G0F保留时间的RSD应≤4%。结论建立了单抗N糖系统适用性对照品,可配合3种2020年版《中国药典》拟收录的N糖分析方法使用。 相似文献
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目的探讨维纳托克(Venetoclax)在HepG2、Hep3B 2个肝癌细胞株的抗癌活性。方法对人肝癌细胞株HepG2、Hep3B细胞株进行体外培养,采用不同浓度的Venetoclax(0、3、10、30μmol/L)处理肝癌细胞,以细胞计数试剂盒(CCK-8)检测细胞活性,0,3,10和30μmol/L Venetoclax作用细胞48 h,锥虫蓝拒染法检测细胞的死亡,0,5μmol/L Venetoclax,作用24 h,流式细胞学检测细胞凋亡率,蛋白质印迹法(Western blot)检测Venetoclax诱导半胱氨酰天冬氨酸特异性蛋白酶(Caspase)-3活化,聚腺苷二磷酸核糖聚合酶(PARP)裂解。组间比较采用t检验。结果Venetoclax对HepG2、Hep3B细胞株均有较强活性抑制作用。不同浓度的Venetoclax处理肝癌细胞48、72 h,Venetoclax在HepG2细胞株中取得的半数细胞活性抑制率(IC50)值分别为46.5μmol/L和14.2μmol/L;在Hep3B细胞的IC50值分别为24.6μmol/L和11.2μmol/L。处理24 h,30.0μmol/L的Venetoclax在HepG2和Hep3B细胞株中诱导57%[对照组、实验组凋亡率分别为(4.00±1.00)%、(56.67±8.51)%,t=-10.650,P<0.01]和54%[对照组、实验组凋亡率分别为(5.67±1.53)%、(54.33±9.87)%,t=-8.440,P<0.01]的肝癌细胞发生凋亡,并能诱导肝癌细胞的Caspase-3活化,PARP裂解,差异均有统计学意义。用0、3、10和30μmol/L的Venetoclax处理48 h,在HepG2细胞株中可诱导3%(3.26±1.71)%,12%[(12.36±1.99)%,(t=-12.36,P<0.05)],32%[(32.38±4.57)%,(t=-10.350,P<0.01)]和67%[(66.71±6.29)%,(t=-16.86,P<0.01)]的细胞死亡,差异均有统计学意义;在Hep3B细胞株诱导2%(1.91±0.68)%,16%[(15.72±3.40)%,(t=-6.890,P<0.05)],42%[(42.39±6.86)%,(t=-10.180,P<0.01)]和73%[(73.32±2.69)%,t=-44.490,P<0.01]的细胞死亡,差异均有统计学意义。应用半胱氨酸蛋白酶(Caspase)抑制剂预处理,Venetoclax对HepG2和Hep3B细胞的死亡率分别从56%(56.71±6.29)%降低至11%(10.70±1.43)%,(t=12.350,P<0.01)和68%(68.05±10.16)%至12%(12.7±6.12)%,(t=8.080,P<0.01),差异有统计学意义。结论Venetoclax能够通过诱导Caspase的活化,诱导肝癌细胞发生凋亡,并对肝癌细胞进行杀伤。 相似文献
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Ping Liu Jiang Peng Gong-Hai Han Xiao Ding Shuai Wei Gang Gao Kun Huang Feng Chang Yu Wang 《中国神经再生研究》2019,(8)
Resident and inflammatory macrophages are essential effectors of the innate immune system. These cells provide innate immune defenses and regulate tissue and organ homeostasis. In addition to their roles in diseases such as cancer, obesity and osteoarthritis, they play vital roles in tissue repair and disease rehabilitation. Macrophages and other inflammatory cells are recruited to tissue injury sites where they promote changes in the microenvironment. Among the inflammatory cell types, only macrophages have both pro-inflammatory(M1) and anti-inflammatory(M2) actions, and M2 macrophages have four subtypes. The co-action of M1 and M2 subtypes can create a favorable microenvironment, releasing cytokines for damaged tissue repair. In this review, we discuss the activation of macrophages and their roles in severe peripheral nerve injury. We also describe the therapeutic potential of macrophages in nerve tissue engineering treatment and highlight approaches for enhancing M2 cell-mediated nerve repair and regeneration. 相似文献