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61.
Siobhan Flaherty Pamela Strauch Mahdi Maktabi Brandon S. Pybus Gregory Reichard Larry A Walker Rosemary Rochford 《Journal of cellular and molecular medicine》2022,26(13):3675
Primaquine (PQ) and Tafenoquine (TQ) are clinically important 8‐aminoquinolines (8‐AQ) used for radical cure treatment of P. vivax infection, known to target hepatic hypnozoites. 8‐AQs can trigger haemolytic anaemia in individuals with glucose‐6‐phosphate dehydrogenase deficiency (G6PDd), yet the mechanisms of haemolytic toxicity remain unknown. To address this issue, we used a humanized mouse model known to predict haemolytic toxicity responses in G6PDd human red blood cells (huRBCs). To evaluate the markers of eryptosis, huRBCs were isolated from mice 24–48 h post‐treatment and analysed for effects on phosphatidylserine (PS), intracellular reactive oxygen species (ROS) and autofluorescence. Urinalysis was performed to evaluate the occurrence of intravascular and extravascular haemolysis. Spleen and liver tissue harvested at 24 h and 5–7 days post‐treatment were stained for the presence of CD169+ macrophages, F4/80+ macrophages, Ter119+ mouse RBCs, glycophorin A+ huRBCs and murine reticulocytes (muRetics). G6PDd‐huRBCs from PQ/TQ treated mice showed increased markers for eryptosis as early as 24 h post‐treatment. This coincided with an early rise in levels of muRetics. Urinalysis revealed concurrent intravascular and extravascular haemolysis in response to PQ/TQ. Splenic CD169+ macrophages, present in all groups at day 1 post‐dosing were eliminated by days 5–7 in PQ/TQ treated mice only, while liver F4/80 macrophages and iron deposits increased. Collectively, our data suggest 8‐AQ treated G6PDd‐huRBCs have early physiological responses to treatment, including increased markers for eryptosis indicative of oxidative stress, resulting in extramedullary haematopoiesis and loss of splenic CD169+ macrophages, prompting the liver to act as the primary site of clearance. 相似文献
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RueiLung Lin Hilaree N. Frazier Katie L. Anderson Sami L. Case Adam O. Ghoweri Olivier Thibault 《Aging cell》2022,21(7)
Neuronal hippocampal Ca2+ dysregulation is a critical component of cognitive decline in brain aging and Alzheimer''s disease and is suggested to impact communication and excitability through the activation of a larger after hyperpolarization. However, few studies have tested for the presence of Ca2+ dysregulation in vivo, how it manifests, and whether it impacts network function across hundreds of neurons. Here, we tested for neuronal Ca2+ network dysregulation in vivo in the primary somatosensory cortex (S1) of anesthetized young and aged male Fisher 344 rats using single‐cell resolution techniques. Because S1 is involved in sensory discrimination and proprioception, we tested for alterations in ambulatory performance in the aged animal and investigated two potential pathways underlying these central aging‐ and Ca2+‐dependent changes. Compared to young, aged animals displayed increased overall activity and connectivity of the network as well as decreased ambulatory speed. In aged animals, intranasal insulin (INI) increased network synchronicity and ambulatory speed. Importantly, in young animals, delivery of the L‐type voltage‐gated Ca2+ channel modifier Bay‐K 8644 altered network properties, replicating some of the changes seen in the older animal. These results suggest that hippocampal Ca2+ dysregulation may be generalizable to other areas, such as S1, and might engage modalities that are associated with locomotor stability and motivation to ambulate. Further, given the safety profile of INI in the clinic and the evidence presented here showing that this central dysregulation is sensitive to insulin, we suggest that these processes can be targeted to potentially increase motivation and coordination while also reducing fall frequency with age. 相似文献
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Summary Two sugarbeet (Beta vulgaris L.) genotypes, REL-1 and REL-2, were used to measure the level of somatic embryo and shoot production from hormone-autonomous
callus plated under varied nutrient medium combinations of abscisic acid with the growth regulators 6-benzyladenine, 1-naphthaleneacetic
acid, or 2,4-dichlorophenoxyacetic acid, with eight sole nitrogen sources, or with different sucrose concentrations. Clone
REL-2 produced embryos up to 35-fold more frequently than clone REL-1. Inclusion of abscisic acid at some concentrations consistently
improved embryo production in all experiments and was observed to stimulate shoot production. At some concentrations, 1-naphthaleneacetic
acid as well as urea and glutamine stimulated greater embryo production over the control, but only for REL-1, for which there
was greater room for improvement. Three and five percent sucrose were superior to 1, 7, and 9%. Higher initial 6-benzyladenine
concentration [in the range 0, 0.1−1.0 mg/L (0.44−4.44 μM)] was associated with lower embryo production but greater shoot regeneration for both clones. REL-2 was significantly better
than REL-1 in shoot regeneration. The range of embryo production was more than 35-fold between genotypes, whereas the range
of physiological effects was no greater than 10-fold. REL-2 has been released to sugarbeet researchers because of its superior
embryogenic and shoot regeneration abilities for application in biotechnology. 相似文献
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Lentiviral vectors have been used for gene transfer into the liver but their ability to efficiently transduce quiescent hepatocytes
remains controversial. Lentivirus-mediated gene transfer is more efficient in cycling cells. We determine the effect of H-IL6
in the lentiviral transduction. The lentiviral vector was used to transduce HepG2 cells and mice liver cells, previously treated
with H-IL6. The highest transduction level was observed in HepG2 cells treated with 30 ng/mL H-IL6 and in the mice that received
4 μg H-IL6. Our results suggest that H-IL6 is an inducer of lentiviral gene transfer into the liver cells without any toxicity. 相似文献
69.
杜氏盐藻是一种抗渗透能力强的单细胞绿藻,甘油在其渗透调节过程中具有重要作用。葡萄糖对杜氏盐藻细胞数量的增加效果不明显,但对盐藻细胞内甘油积累有显著促进作用,在0~15g/L范围内葡萄糖的浓度与胞内甘油积累显著相关(R2=0.9604,P=0.01);葡萄糖浓度达到15g/L时,胞内甘油积累量达到最高值7.80pg/cell,是对照的1.88倍,胞内甘油积累量与葡萄糖的消耗量极显著相关(R2=0.9982,P=0.01)。葡萄糖对盐藻细胞内总蛋白、3-磷酸甘油脱氢酶(GPDH)酶活和比活都有显著影响,在15g/L葡萄糖时这3个值达到最大值,分别是对照的1.354、4.384、3.229倍。数据显示葡萄糖浓度在15g/L时细胞内蛋白质含量增加不多,但GPDH酶活和比活却大幅度增加;葡萄糖导致的渗透压的变化可能诱导新的同功酶的合成。 相似文献
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