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《Saudi Pharmaceutical Journal》2022,30(11):1572-1588
Non-alcoholic fatty liver disease (NAFLD) is one of the most common complications of a metabolic syndrome caused by excessive accumulation of fat in the liver. Orthosiphon stamineus also known as Orthosiphon aristatus is a medicinal plant with possible potential beneficial effects on various metabolic disorders. This study aims to investigate the in vitro inhibitory effects of O. stamineus on hepatic fat accumulation and to further use the computational systems pharmacology approach to identify the pharmacokinetic properties of the bioactive compounds of O. stamineus and to predict their molecular mechanisms against NAFLD. Methods: The effects of an ethanolic extract of O. stamineus leaves on cytotoxicity, fat accumulation and antioxidant activity were assessed using HepG2 cells. The bioactive compounds of O. stamineus were identified using LC/MS and two bioinformatics databases, namely the Traditional Chinese Medicine Integrated Database (TCMID) and the Bioinformatics Analysis Tool for the Molecular Mechanism of Traditional Chinese Medicine (BATMAN-TCM). Pathway enrichment analysis was performed on the predicted targets of the bioactive compounds to provide a systematic overview of the molecular mechanism of action, while molecular docking was used to validate the predicted targets. Results: A total of 27 bioactive compounds corresponding to 50 potential NAFLD-related targets were identified. O. stamineus exerts its anti-NAFLD effects by modulating a variety of cellular processes, including oxidative stress, mitochondrial β-oxidation, inflammatory signalling pathways, insulin signalling, and fatty acid homeostasis pathways. O. stamineus is significantly targeting many oxidative stress regulators, including JNK, mammalian target of rapamycin (mTOR), NFKB1, PPAR, and AKT1. Molecular docking analysis confirmed the expected high affinity for the potential targets, while the in vitro assay indicates the ability of O. stamineus to inhibit hepatic fat accumulation. Conclusion: Using the computational systems pharmacology approach, the potentially beneficial effect of O. stamineus in NAFLD was indicated through the combination of multiple compounds, multiple targets, and multicellular components.  相似文献   
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 Û   ¬  ࿞ ¿   ¬ í  &#x; ྽   &#x;         &#x; 《中国肺癌杂志》2021,24(3):161
背景与目的以免疫检查点抑制剂(immune checkpoint inhibitors, ICIs)为代表的免疫治疗越来越广泛地应用于肺癌治疗。然而,对于程序性死亡受体配体1(programmed cell death-ligand 1, PD-L1)高表达,即肿瘤比例评分(tumor proportion score, TPS)≥50%的晚期非小细胞肺癌(non-small cell lung cancer, NSCLC)患者,采用单纯免疫治疗还是免疫联合化疗在临床上仍存争议。本研究旨在评估PD-L1高表达的晚期NSCLC患者接受单纯免疫治疗与免疫联合化疗的疗效。方法本研究回顾性分析了49例PD-L1高表达晚期NSCLC患者的临床资料。PD-L1表达采用22C3抗体行免疫组化染色,按TPS判读PD-L1表达水平。比较不同临床特征分组患者的客观缓解率(objective response rate,ORR)和无进展生存时间(progression free survival, PFS)。结果免疫单药与免疫联合化疗组的ORR分别为47.1%(8/17)和43.8%(14/32),差异无统计学意义(P=0.825)。免疫单药与免疫联合化疗组的中位PFS分别为8.0个月和6.8个月,差异无统计学意义(P=0.502)。并对本组PD-L1高表达患者免疫治疗的预测因素进行了分析,结果显示,一线免疫治疗ORR(12/19, 63.2%)显著优于二线及以上免疫治疗(10/30, 33.3%),差异有统计学意义(P=0.041),二者间PFS无差异。年龄、性别、吸烟史、功能状态评分(performance status, PS)、病理类型、肿瘤大小、肿瘤淋巴结转移(tumor node metastasis, TNM)分期与ORR和PFS不相关。结论PD-L1高表达的晚期NSCLC患者接受免疫单药和免疫联合化疗的疗效相近。PD-L1高表达患者一线免疫治疗的ORR更佳。对此类人群的最佳治疗方案有待于前瞻性临床研究进一步探索。  相似文献   
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目的比较骨填充网袋椎体成形术(Vesselplasty)与经皮椎体后凸成形术(percutaneous kyphoplasty,PKP)治疗 Kümmell 病的临床疗效。方法2015 年 1 月—2018 年 12 月收治 63 例 Kümmell 病患者,其中 28 例采用 Vesselplasty 治疗(Vesselplasty 组),35 例采用 PKP 治疗(PKP 组)。两组患者性别、年龄、病程、骨密度 T 值、骨折节段及术前疼痛视觉模拟评分(VAS)、Oswestry 功能障碍指数(ODI)、伤椎前缘高度、后凸 Cobb 角等一般资料比较,差异均无统计学意义(P>0.05),具有可比性。记录两组手术时间、术中透视时间、骨水泥注射量、骨水泥渗漏率、骨水泥弥散面积率和随访期间并发症发生情况,以及术前、术后 1 d、末次随访时 VAS 评分、ODI、伤椎前缘高度、后凸 Cobb 角。 结果两组患者均获随访,随访时间 12~36 个月,平均 24.2 个月。Vesselplasty 组手术时间、术中透视时间、骨水泥注射量、骨水泥弥散面积率均明显小于 PKP 组(P<0.05)。Vesselplasty 组骨水泥渗漏率(7.14%)明显低于 PKP 组(34.29%)(χ2=5.153,P=0.023)。两组患者术后 1 d 及末次随访时 VAS 评分、ODI、伤椎前缘高度、后凸 Cobb 角均较术前显著改善(P<0.05),术后两组间比较差异均无统计学意义(P>0.05)。随访期间两组均未见术椎再塌陷,Vesselplasty 组邻椎骨折发生率(7.14%)与 PKP 组(14.29%)比较,差异无统计学意义(χ2=0.243,P=0.622)。 结论Vesselplasty 和 PKP 治疗 Kümmell 病疗效相似,均能有效缓解患者疼痛症状,改善生活质量,部分恢复伤椎高度,矫正椎体后凸。但前者具有手术时间短、术中透视时间少、骨水泥渗漏少等优势。  相似文献   
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《Vaccine》2021,39(45):6601-6613
AKS-452 is a biologically-engineered vaccine comprising an Fc fusion protein of the SARS-CoV-2 viral spike protein receptor binding domain antigen (Ag) and human IgG1 Fc (SP/RBD-Fc) in clinical development for the induction and augmentation of neutralizing IgG titers against SARS-CoV-2 viral infection to address the COVID-19 pandemic. The Fc moiety is designed to enhance immunogenicity by increasing uptake via Fc-receptors (FcγR) on Ag-presenting cells (APCs) and prolonging exposure due to neonatal Fc receptor (FcRn) recycling. AKS-452 induced approximately 20-fold greater neutralizing IgG titers in mice relative to those induced by SP/RBD without the Fc moiety and induced comparable long-term neutralizing titers with a single dose vs. two doses. To further enhance immunogenicity, AKS-452 was evaluated in formulations containing a panel of adjuvants in which the water-in-oil adjuvant, Montanide™ ISA 720, enhanced neutralizing IgG titers by approximately 7-fold after one and two doses in mice, including the neutralization of live SARS-CoV-2 virus infection of VERO-E6 cells. Furthermore, ISA 720-adjuvanted AKS-452 was immunogenic in rabbits and non-human primates (NHPs) and protected from infection and clinical symptoms with live SARS-CoV-2 virus in NHPs (USA-WA1/2020 viral strain) and the K18 human ACE2-trangenic (K18-huACE2-Tg) mouse (South African B.1.351 viral variant). These preclinical studies support the initiation of Phase I clinical studies with adjuvanted AKS-452 with the expectation that this room-temperature stable, Fc-fusion subunit vaccine can be rapidly and inexpensively manufactured to provide billions of doses per year especially in regions where the cold-chain is difficult to maintain.  相似文献   
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Therapy-related myeloid neoplasm (t-MN) is a rare but devastating consequence of chemotherapy and/or radiotherapy used for the treatment of solid cancers and various hematologic malignancies. Our current understanding of the etiology is that hematopoietic clones that are contemporaneous with the primary cancer and resistant to the cytotoxic exposure have the potential to undergo selective expansion and transformation to t-MN. Consequently, a large proportion of cases are associated with adverse risk factors, resulting in limited effective treatment options. Despite the emergence of some therapies with promising activity in t-MN, most effects are short-lived and allogeneic stem cell transplantation remains the only curative option for eligible patients. This review summarizes the current literature on t-AML and t-MDS, with the aim of providing practical recommendations on the clinical evaluation and management of these conditions.  相似文献   
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