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《Transfusion Clinique et Biologique》2022,29(3):269-272
A delayed haemolytic transfusion reaction (DHTR) encompasses a positive direct antiglobulin test (DAT) developed anytime between 24 hours to 28 days after cessation of transfusion, a positive eluate or a newly identified alloantibody in the plasma or serum along with features of haemolysis in the patient. Routinely, it is expected that with the transfusion of one unit of packed red cells in a patient of average height and weight, the haemoglobin level and hematocrit increase by 1 g/dL and 3% respectively. However, in a patient with DHTR, an inadequate rise of post-transfusion haemoglobin (< 1 g/dL) or rapid fall in haemoglobin back to pre-transfusion levels is observed. Kidd antibodies are particularly known to cause DHTR, maybe alone or in unison with other antibodies. Detection of these alloantibodies is consequential in providing good transfusion support to these patients. These events may be difficult to detect as they may present as varied clinical features or immunological nuisances. In this case series, we have presented three cases of DHTR with special emphasis on their clinical presentations, immunohaematological evaluations, laboratory parameters and the role of proper transfusion support in these patients to avoid further complications. 相似文献
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《Nutrition, metabolism, and cardiovascular diseases : NMCD》2022,32(5):1165-1174
Background and aimsThe extent to which dietary patterns influence the risk of abnormal blood lipids throughout young adulthood remains unclear. The aim was to investigate whether early young adulthood dietary patterns predict the risk of abnormal blood lipids during later young adulthood.Methods and resultsWe used data from a long running birth cohort study in Australia. Western dietary pattern rich in meats, processed foods and high-fat dairy products and prudent pattern rich in fruit, vegetables, fish, nuts, whole grains and low-fat dairy products were derived using principal component analysis at the 21-year follow-up from dietary data obtained using a food frequency questionnaire. After 9-years, fasting blood samples of all participants were collected and their total, low-density lipoprotein (LDL) and high-density lipoprotein (HDL) cholesterols and triglyceride (TG) levels were measured. Abnormal blood lipids were based on clinical cut-offs for total, LDL and HDL cholesterols, and TG and relative distributions for total:HDL and TG:HDL cholesterols ratios. Log-binomial models were used to estimate risk of each outcome in relation to dietary patterns. Greater adherence to the Western pattern predicted increased risks of high LDL (RR: 1.47; 95%CI: 1.06, 2.03) and TG (1.90; 1.25, 2.86), and high ratios of total:HDL (1.48; 1.00, 2.19) and TG:HDL (1.78; 1.18, 2.70) cholesterols in fully adjusted models. Conversely, a prudent pattern predicted reduced risks of low HDL (0.58; 0.42, 0.78) and high TG (0.66; 0.47, 0.92) and high total:HDL (0.71; 0.51, 0.98) and TG:HDL (0.61; 0.45, 0.84) cholesterols ratios.ConclusionThis is the first prospective study to show greater adherence to unhealthy Western diet predicted increased risks of abnormal blood lipids, whereas healthy prudent diet predicted lower such risks in young adults. Addressing diets in early course may improve cardiovascular health of young adults. 相似文献
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目的 探讨我国弓形虫Chinese 1优势基因型感染对宿主脑组织铁代谢及脑损伤的影响。方法 将20只C57BL/6(体质量15~17 g)小鼠随机分为对照组和感染组,每组10只。感染组每只小鼠腹腔注射4 000个弓形虫Chinese 1优势基因型TgCtwh3虫株速殖子,对照组小鼠注射等量无菌PBS,饲养6 d后处死小鼠并取其脑组织。采用电感耦合等离子体质谱法(inductively coupled plasma mass spectrometry, ICP⁃MS)检测小鼠脑组织铁元素水平;采用RNA芯片检测两组小鼠脑组织差异基因数目并对功能基因表达情况进行基因本体论(Gene Ontology, GO)功能富集;采用实时荧光定量PCR(fluorescent quantitative real⁃time PCR, qPCR)技术检测小鼠脑组织中弓形虫表面抗原1(Toxoplasma gondii surface antigen 1,TgSAG1)基因及部分锌铁调控蛋白(Zrt⁃ and Irt⁃like protein, ZIP)家族mRNA表达水平;采用光镜和电镜观察小鼠脑组织海马齿轮回(dentate gyrus, DG)超微结构;采用Western blotting检测谷胱甘肽过氧化物酶4(glutathione peroxidase 4, GPx4)蛋白表达水平;采用硫代巴比妥酸(TBA)法检测丙二醛(malondialdehyde, MDA)水平;采用免疫组化检测血管内皮生长因子(vascular endothelial growth factor, VEGF)蛋白表达光密度(optical density, OD)值。结果 光镜下可见感染组小鼠脑组织海马DG区细胞坏死,电镜下见感染组小鼠脑组织海马区出现胞质空泡化、核皱缩坏死、线粒体嵴断裂消融、自噬小体增加等超微结构变化。与对照组相比,感染组小鼠脑组织中铁元素水平上调[(32.92 ± 0.90) µg/g vs.(37.72 ± 1.10) µg/g;t = 3.397, P < 0.01];RNA芯片检测感染组小鼠脑组织发现721个基因上调、276个基因下调,差异表达基因在金属离子结合能力上有明显富集。与对照组相比,感染组小鼠脑组织金属元素转运体ZIP2 mRNA表达水平上调(t = 8.659,P < 0.05)、GPx4表达下降[(1.046 ± 0.025) vs. (0.720 ± 0.101);t = 3.129,P < 0.01])、MDA水平升高[(4.37 ± 0.33) nmol/mgprot vs.(5.93 ± 0.54) nmol/mgprot;t = 2.451,P < 0.05)]、VEGF蛋白平均OD值上调[(0.348 3 ± 0.017 8) vs. (0.490 6 ± 0.010 5);t = 6.641,P < 0.01]。结论 Chinese 1优势基因型弓形虫感染后,小鼠脑组织中铁元素蓄积、抗氧化能力下调、氧化应激水平升高,提示弓形虫感染可影响宿主脑组织铁代谢而导致脑损伤。 相似文献
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In the field of drug development, technology for producing human metabolites at a low cost is required. In this study, we explored the possibility of using prokaryotic water-soluble cytochrome P450 (CYP) to produce human metabolites. Streptomyces griseolus CYP105A1 metabolizes various non-steroidal anti-inflammatory drugs (NSAIDs), including diclofenac, mefenamic acid, flufenamic acid, tolfenamic acid, meclofenamic acid, and ibuprofen. CYP105A1 showed 4′-hydroxylation activity towards diclofenac, mefenamic acid, flufenamic acid, tolfenamic acid, and meclofenamic acid. It should be noted that this reaction specificity was similar to that of human CYP2C9. In the case of mefenamic acid, another metabolite, 3′-hydroxymethyl mefenamic acid, was detected as a major metabolite. Substitution of Arg at position 73 with Ala in CYP105A1 dramatically reduced the hydroxylation activity toward diclofenac, flufenamic acid, and ibuprofen, indicating that Arg73 is essential for the hydroxylation of these substrates. In contrast, substitution of Arg84 with Ala remarkably increased the hydroxylation activity towards diclofenac, mefenamic acid, and flufenamic acid. Recombinant Rhodococcus erythrocyte cells expressing the CYP105A1 variant R84A/M239A showed complete conversion of diclofenac into 4′-hydroxydiclofenac. These results suggest the usefulness of recombinant R. erythropolis cells expressing actinomycete CYP, such as CYP105A1, for the production of human drug metabolites. 相似文献
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《Saudi Pharmaceutical Journal》2022,30(5):595-604
Anthrax is a zoonotic infection caused by the gram-positive, aerobic, spore-forming bacterium Bacillus anthracis. Depending on the origin of the infection, serious health problems or mortality is possible. The virulence of B. anthracis is reliant on three pathogenic factors, which are secreted upon infection: protective antigen (PA), lethal factor (LF), and edema factor (EF). Systemic illness results from LF and EF entering cells through the formation of a complex with the heptameric form of PA, bound to the membrane of infected cells through its receptor. The currently available anthrax vaccines have multiple drawbacks, and recombinant PA is considered a promising second-generation vaccine candidate. However, the inherent chemical instability of PA through Asn deamidation at multiple sites prevents its use after long-term storage owing to loss of potency. Moreover, there is a distinct possibility of B. anthracis being used as a bioweapon; thus, the developed vaccine should remain efficacious and stable over the long-term. Second-generation anthrax vaccines with appropriate adjuvant formulations for enhanced immunogenicity and safety are desired. In this article, using protein engineering approaches, we have reviewed the stabilization of anthrax vaccine candidates that are currently licensed or under preclinical and clinical trials. We have also proposed a formulation to enhance recombinant PA vaccine potency via adjuvant formulation. 相似文献
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