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51.
Marrow transplantation was attempted in a 13-yr-old boy with congenital hypoplastic anemia who had never responded to corticosteroid therapy. Prior to the transplant, he had received 238 transfusions, at least 12 of which were from his father. He was prepared for grafting with antilymphocyte globulin, procarbazine, and total body irradiation (1000 rads). The patient, whose red cells were Group B, then received marrow cells from his Group O, histocompatible, sister. Thereafter, reticulocytes, Group O erythrocytes, and female leukocytes appeared in the peripheral blood. Erythroid precursors were seen in the patient's marrow for the first time in his life, and all lacked fluorescent Y chromosomes. Dividing cells were all female. After initially progressing well, the patient developed interstitial pneumonia and died 55 days after the transplant. The successful erythroid graft suggested that this patient's failure to produce red blood cells was due to a defective stem cell rather than to a humoral defect, plasma inhibitor, or abnormal marrow microenvironment. It suggested further that sibling marrow may be engrafted in patients who have received multiple transfusions, even from a parent.  相似文献   
52.
To study the effect of interleukin-1 (IL-1) beta on the proliferation of hematopoietic progenitor cells (HPC) in long-term bone marrow cultures (LTBMC), stromal cell layers were established from normal human bone marrow. Autologous cryopreserved mononuclear phagocyte- and T-lymphocyte-depleted bone marrow cells were reinoculated on the stromal layers in fresh culture medium, with or without the addition of human IL-1 beta (30 U/mL). Once a week, half of the culture supernatant was replaced with fresh culture medium with or without IL-1, and all nonadherent cells were returned to the flasks. At weekly intervals during a period of 5 weeks, one culture was sacrificed to determine the total number of cells and hematopoietic progenitor cells, present in the adherent and the nonadherent cell fractions. In IL-1-stimulated cultures, the number of cells recovered during a period of 5 weeks exceeded the number of cells in unstimulated control cultures by 1.5 times. This difference was attributed to a twofold increase in the number of adherent cells. The number of HPC recovered from IL-1- stimulated cultures was not different from that recovered from controls. The levels of colony-stimulating activity (CSA) in supernatants from IL-1-stimulated cultures were significantly higher than those in supernatants from control cultures. These results indicate that IL-1 enhances the recovery of cells in LTBMC by stimulating the proliferation of HPC with the concurrent release of CSA from stromal cells, without diminishing the number of HPC.  相似文献   
53.
Delay in hematologic recovery after bone marrow transplantation (BMT) can extend and amplify the risks of infection and hemorrhage, compromise patients' survival, and increase the duration and cost of hospitalization. Because current studies suggest that granulocyte- macrophage (GM) colony-stimulating factor (CSF) may potentiate the sensitivity of hematopoietic progenitor cells to G-CSF, we performed a prospective, randomized trial comparing GM-CSF (250 micrograms/m2/d x 14 days) versus sequential GM-CSF x 7 days followed by G-CSF (5 micrograms/kg/d x 7 days) as treatment for primary or secondary graft failure after BMT. Eligibility criteria included failure to achieve a white blood cell (WBC) count > or = 100/microL by day +21 or > or = 300/microL by day +28, no absolute neutrophil count (ANC) > or = 200/microL by day +28, or secondary sustained neutropenia after initial engraftment. Forty-seven patients were enrolled: 23 received GM-CSF (10 unrelated, 8 related allogeneic, and 5 autologous), and 24 received GM- CSF followed by G-CSF (12 unrelated, 7 related allogeneic, and 5 autologous). For patients receiving GM-CSF alone, neutrophil recovery (ANC > or = 500/microL) occurred between 2 and 61 days (median, 8 days) after therapy, while those receiving GM-CSF+G-CSF recovered at a similar rate of 1 to 36 days (median, 6 days; P = .39). Recovery to red blood cell (RBC) transfusion independence was slow, occurring 6 to 250 days (median, 35 days) after enrollment with no significant difference between the two treatment groups (GM-CSF: median, 30 days; GM-CSF+G- CSF; median, 42 days; P = .24). Similarly, platelet transfusion independence was delayed until 4 to 249 days (median, 32 days) after enrollment, with no difference between the two treatment groups (GM- CSF: median, 28 days; GM-CSF+G-CSF: median, 42 days; P = .38). Recovery times were not different between patients with unrelated donors and those with related donors or autologous transplant recipients. Survival at 100 days after enrollment was superior after treatment with GM-CSF alone. Only 1 of 23 patients treated with GM-CSF died versus 7 of 24 treated with GM-CSF+G-CSF who died 16 to 84 days (median, 38 days) after enrollment, yielding Kaplan-Meier 100-day survival estimates of 96% +/- 8% for GM-CSF versus 71% +/- 18% for GM-CSF+G-CSF (P = .026). These data suggest that sequential growth factor therapy with GM-CSF followed by G-CSF offers no advantage over GM-CSF alone in accelerating trilineage hematopoiesis or preventing lethal complications in patients with poor graft function after BMT.(ABSTRACT TRUNCATED AT 400 WORDS)  相似文献   
54.

Background

The kallikrein-kinin system (KKS) is an endogenous pathway involved in angiogenesis and tumourigenesis, both vital for cancer growth and progression.

Objectives

To investigate the effect of two bradykinin receptor (B1R and B2R) agonists on growth and motility of prostate tumour (DU145) and micro-vascular endothelial cells (dMVECs).

Methods

Increasing concentrations of selective B1R and B2R agonists were added to cultured cells. Cell proliferation and migration were assessed using the 3-[4,5 dimethylthiazol-2-yl]-2,5-diphenyl-tetrazolium bromide (MTT) and modified Boyden Chamber assays, respectively. Where significant stimulation was found, the influence of an antagonist was also investigated.

Results

Neither growth nor motility of endothelial cells was affected by either agonist. In DU145 cells, while the B2R agonist was without any significant effect, the B1R agonist stimulated proliferation and migration at concentrations of 10nM and 50nM respectively. Further, this effect was abrogated when cells were pre-incubated with a B1R antagonist.

Conclusions

Unlike the physiologically-active B2R, the pathologically-inducible B1R may be implicated in prostate tumourigenic events. The involvement of the KKS in malignant prostate pathology supports on-going exploration of bradykinin receptor antagonists as target candidates in the development of alternate approaches to cancer therapy.  相似文献   
55.
BACKGROUND: Macrolide antibiotics have long been used as steroid-sparing agents in patients with severe steroid-dependent asthma. Their efficacy and their propensity to potentiate glucocorticoid adverse effects have been attributed in part to their ability to delay glucocorticoid clearance. OBJECTIVE: We sought to determine whether clarithromycin, a newer macrolide antibiotic, can alter the pharmacokinetic profile of oral glucocorticoids and thereby increase the risk of steroid-induced adverse effects. METHODS: An open-label study in a paired design (before and after treatment) was conducted in a hospital-based outpatient clinic. Participants were 6 adult patients (mean age, 30 years) with mild-to-moderate asthma. Prednisone (40 mg/1.73 m2) and methylprednisolone (40 mg/1.73 m2) were given as single randomized doses on consecutive study days before and on days 8 and 9 of a clarithromycin (500 mg twice daily) course. Twelve-hour pharmacokinetic profiles with measurement of plasma methylprednisolone and prednisolone levels were taken before and after clarithromycin therapy. RESULTS: Clarithromycin therapy resulted in a 65% reduction of methylprednisolone clearance and significantly higher mean plasma methylprednisolone concentrations compared with preclarithromycin concentrations but had no significant effect on prednisolone clearance or mean prednisolone plasma concentrations. CONCLUSIONS: Clinicians must be aware of potential drug interactions that could place patients at increased risk for steroid-induced adverse effects. Such an effect has been demonstrated between clarithromycin and methylprednisolone, two drugs that may be administered concomitantly in asthma. To avoid potential steroid-enhancing effects, prednisone should be substituted for methylprednisolone during prolonged courses of clarithromycin therapy.  相似文献   
56.
四种中成药对气血双虚模型小鼠血象及免疫水平的影响   总被引:1,自引:0,他引:1  
目的:为艾滋病抗病毒疗法所致的骨髓不良反应筛选疗效确切的中成药,观察分析参芪颗粒、复方阿胶浆、贞芪扶正颗粒、复方皂矾丸四种中成药对放血和注射环磷酰胺联合复制的气血双虚模型小鼠血象及免疫水平的影响。方法:实验于2005-08/09在河南中医学院药理实验室完成。①参芪颗粒(江西山高制药有限公司生产,批号040702);复方阿胶浆(山东东阿阿胶股份有限公司生产,批号050446);贞芪扶正颗粒(甘肃扶正药业科技股份有限公司生产,批号040803);复方皂矾丸(陕西郝其军制药有限责任公司生产,批号041014);当归补血口服液(郑州市协和制药厂生产,批号041122);环磷酰胺(上海华联制药有限公司生产,批号050101)。②选取清洁级昆明种小鼠150只,随机数字表法分为15组,10只/组:1~3组分别灌服参芪颗粒混悬液3,2,1g/kg;4~6组分别灌服复方阿胶浆30,20,10mL/kg;7~9组分别灌服贞芪扶正颗粒混悬液15,10,5g/kg;10~12组分别灌服复方皂矾丸混悬液2.4,1.6,0.8g/kg;第13组灌服当归补血口服液10g/kg;剩余2组为空白对照组和模型对照组,分别给于同体积生理盐水10g/kg。各组给药1次/d,连续给药10d。③除空白对照组外,其他各组从给药第1天开始建立气血双虚模型。每只鼠尾部放血0.25mL/10g,然后分别于第2,4,6,8天腹腔注射环磷酰胺80,40,40,40mg/kg。空白对照组同时间点仅腹腔注射等体积生理盐水。末次注射环磷酰胺后2h,眼眶取血,一部分用于血象测定,另一部分离心取血清,测定血细胞比容及血清中巨噬细胞集落刺激因子水平;解剖取胸腺和脾脏,检测胸腺皮质厚度、胸腺淋巴细胞数、脾小结大小、脾脏淋巴细胞数病理学指标的变化。结果:150只小鼠全部进入结果分析,放血和注射环磷酰胺并用可成功建立小鼠气血双虚模型。①与模型对照组比较,参芪颗粒3g/kg组、贞芪扶正颗粒10,5g/kg组、复方皂矾丸1.6g/kg组均可升高气血双虚模型小鼠白细胞水平(t=2.18~2.74,P<0.05),贞芪扶正颗粒15g/kg组作用更为显著(t=2.98,P<0.01);参芪颗粒1g/kg组、复方阿胶浆20mL/kg组、贞芪扶正颗粒15,10g/kg组均可升高红细胞水平(t=2.44~2.69,P<0.05),复方阿胶浆30mL/kg组、贞芪扶正颗粒5g/kg组、复方皂矾丸2.4,1.6g/kg组作用更为显著(t=2.91~3.66,P<0.01);当归补血口服液组、复方阿胶浆20mL/kg组、参芪颗粒3,1g/kg组、贞芪扶正颗粒15,10,5g/kg组均可升高血红蛋白水平(t=2.27~2.85,P<0.05),复方阿胶浆30mL/kg组、复方皂矾丸2.4,1.6g/kg组作用更为显著(t=3.07~4.04,P<0.01);当归补血口服液组、参芪颗粒3,2g/kg组均可升高血小板水平(t=2.20~2.41,P<0.05)。②与模型对照组比较,参芪颗粒2g/kg组、贞芪扶正颗粒5g/kg组均可升高气血双虚模型小鼠血细胞比容(t=2.01~2.62,P<0.05),参芪颗粒1g/kg组、复方阿胶浆30,20,10mL/kg组、贞芪扶正颗粒15,10,5g/kg组、复方皂矾丸2.4,1.6,0.8g/kg组作用更为显著(t=3.18~4.36,P<0.01);参芪颗粒2g/kg组、复方阿胶浆30,20,10mL/kg组、贞芪扶正颗粒15,10,5g/kg组、复方皂矾丸2.4,1.6g/kg组均可显著升高巨噬细胞集落刺激因子水平(t=3.60~6.80,P<0.01)。③与模型对照组比较,当归补血口服液组、参芪颗粒3,2,1g/kg组、复方阿胶浆30,20,10mL/kg组、贞芪扶正颗粒15,10,5g/kg组、复方皂矾丸2.4,1.6,0.8g/kg组均可显著增加气血双虚模型小鼠胸腺皮质厚度(t=3.71~9.34,P<0.01),增大脾小结(t=3.36~11.97,P<0.01),增加脾脏淋巴细胞数(t=4.29~10.44,P<0.01);复方阿胶浆30mL/kg组可明显增加小鼠胸腺淋巴细胞数(t=2.45,P<0.05),当归补血口服液组、参芪颗粒3,2,1g/kg组、复方阿胶浆20,10mL/kg组、贞芪扶正颗粒15,10,5g/kg组、复方皂矾丸2.4g/kg组作用更为显著(t=3.22~8.20,P<0.01)。结论:①四种中成药对气血双虚模型小鼠血红蛋白升高作用相近,以复方阿胶浆和贞芪扶正颗粒对白细胞和红细胞水平升高作用为强,以复方阿胶浆和贞芪扶正颗粒对血小板水平升高作用为优。②四种中成药对气血双虚模型小鼠血细胞比容的影响无差异,以贞芪扶正颗粒和复方皂矾丸对巨噬细胞集落刺激因子水平的升高作用为优。③以参芪颗粒、复方阿胶浆、贞芪扶正颗粒对胸腺皮质厚度和淋巴细胞数的促进作用为优,以参芪颗粒、贞芪扶正颗粒、复方皂矾丸对脾小结和脾脏淋巴细胞数的促进作用为优。  相似文献   
57.
58.
目的:利用免疫磁性细胞分选系统分离纯化骨髓衍生肝干细胞亚群c-Kit lin-。方法:实验于2006-07/08在南方医科大学实验动物中心完成。6~8周龄的SPF级纯系BALB/C雄性小鼠10只,体质量18~20g。收集小鼠股骨骨髓细胞,利用免疫磁性细胞分选系统,通过两步法分选纯化c-Kit lin-:将获取的lin-细胞悬液8℃条件下1500r/min离心10min,弃上清,按80μL/107加入Buffer重悬细胞。按20μL/107加生物素抗体磁珠,混匀,4℃冰箱孵育15min,按1mL/107加入Buffer洗细胞1次,8℃条件下1500r/min离心10min,弃上清,按500μL/108加入Buffer重悬细胞。Buffer500μL润MS柱,悬液过柱后,Buffer500μL/次洗柱3次,柱子脱离磁场,加1mLBuffer,用配套柱塞推出柱中的c-Kit lin-细胞,收集到c-kit lin-细胞,细胞计数。取2.0×106个细胞分成10等份,流式细胞仪分析c-Kit lin-细胞纯度,计算回收率,评估纯化效率,苔盼兰染色检测纯化前后的细胞活力。计算活细胞的百分率。细胞纯度和细胞回收率的计算:细胞纯度=分离产物中的阳性细胞数/分离细胞的总细胞数×100%,细胞回收率=分离产物中的阳性细胞数/起始标本阳性细胞总数×100%。结果:10只小鼠均进入结果分析。利用免疫磁性细胞分选系统分选出的骨髓衍生肝干细胞亚群c-Kit lin-细胞纯度和回收率分别为(77.98±2.34)%,75.40%,纯化前后细胞活力不受影响。结论:免疫磁性细胞分选系统能有效分选骨髓衍生肝干细胞亚群c-Kit lin-,纯度和回收率高,且不影响细胞活力。  相似文献   
59.
目的:观察白藜芦醇对一次性力竭游泳大鼠肝脏组织的作用及发挥作用的最佳口服剂量。方法:实验于2006-05/07在成都体育学院运动医学系动物实验室完成。①实验分组:选取雄性SD大鼠70只,随机分为7组,每组10只,分别为安静对照组,运动对照组,运动 15mg/kg白藜芦醇组,运动 50mg/kg白藜芦醇组,运动 100mg/kg白藜芦醇组,运动 200mg/kg白藜芦醇组,运动 300mg/kg白藜芦醇组。②实验干预:不同剂量白藜芦醇组每天灌胃15,50,100,200,300mg/kg白藜芦醇,安静对照组和运动对照组分别灌胃相同体积的溶媒(二甲亚砜 生理盐水),连续5周。末次给予实验用样品1h后,各运动组每只鼠尾跟部负荷3%体质量铅皮,置于水深50cm、水温(31±1)℃游泳槽中游泳。游泳力竭后即刻,股动脉取血并迅速取出肝组织。③指标检测:赖氏比色法测定血清中谷丙转氨酶活性;邻苯三酚自氧化法测定肝组织超氧化物歧化酶活性;硫代巴比妥酸法测定肝组织丙二醛含量。结果:纳入动物70只,均进入结果分析。①血清谷丙转氨酶活性和肝组织中丙二醛含量:运动对照组显著高于安静对照组,不同剂量白藜芦醇组低于运动对照组(P<0.05或P<0.01)。运动 100,200,300mg/kg白藜芦醇组低于运动 15,50mg/kg白藜芦醇组[谷丙转氨酶活性:(972.36±121.86),(944.36±105.35),(888.34±88.68),(1773.52±89.35),(1377.78±27.01)nkat/L,P<0.01;丙二醛含量:(7.90±2.56),(7.69±3.69),(7.13±2.62),(19.90±2.21),(12.16±1.78)μmol/g,P<0.05]。100,200,300mg/kg白藜芦醇组间差异无显著性。②肝脏组织中超氧化物歧化酶活性:运动对照组显著低于安静对照组,不同剂量白藜芦醇组高于运动对照组(P<0.05或P<0.01)。运动 100,200,300mg/kg白藜芦醇组高于15,50mg/kg白藜芦醇组[(2325.80±163.37),(2379.14±121.86),(2447.16±89.18),(1096.05±120.19),(1514.64±28.17)μkat/g,P<0.01]。结论:①白藜芦醇对力竭性运动大鼠肝脏组织具有保护作用。②100,200,300mg/kg白藜芦醇对肝脏组织发挥保护作用效果优于15,50mg/kg,建议使用100mg/kg白藜芦醇就能达到理想效果。  相似文献   
60.
StudyonliverinjurymodelsinducedbyCCl4DGalandANITinmiceYANGXinBo1,HUANGZhengMing1,CAOWenBin1,ZHENGMing1,CHENHongYan1,ZHAN...  相似文献   
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