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1.
利用植物激素调控嫁接形成的初步研究   总被引:27,自引:0,他引:27  
利用黄瓜(Cucum issativus)试管苗进行离体茎段自体嫁接,研究IBA 和6-BA 对嫁接形成的影响时发现:进行离体茎段嫁接时,用试管苗茎段可简化嫁接过程,减少污染。嫁接茎段的颜色变化、不定根发生和愈伤组织形成与激素浓度有关。植物激素通过影响砧木和接穗间维管束桥形成的时间和数目调控嫁接组合的发育。在作者的实验中,最佳的激素条件是:在接穗培养基中加IBA 1.2 m g/L,在接穗和砧木培养基中加6-BA 0.3 m g/L。  相似文献   
2.
摘要 目的:分析血清生长分化因子15(GDF-15)、高敏心肌肌钙蛋白T(hs-cTnT)对冠状动脉旁路移植术后新发心房颤动(房颤)及近期主要心血管事件的预测效能。方法:选择自2020年1月至2022年1月在我院行冠状动脉旁路移植术的140例冠心病患者作为研究对象,根据术后是否新发房颤,分为房颤组(46例)和非房颤组(94例)。检测两组术前血清GDF-15、hs-cTnT水平,使用多因素Logistic回归分析血清GDF-15、hs-cTnT与术后新发房颤的关系;随访6个月,观察主要心血管事件发生情况,通过受试者工作特征曲线下面积(AUC)评价血清GDF-15、hs-cTnT对术后新发房颤及近期主要心血管事件的预测效能。结果:两组患者年龄、性别、体重指数等一般资料比较无差异(P>0.05);房颤组SYNTAX积分高于非房颤组,差异有统计学意义(P<0.05);房颤组血清GDF-15、hs-cTnT水平均高于非房颤组(P<0.05);经多因素Logistic回归分析,SYNTAX积分、血清GDF-15、hs-cTnT均是冠状动脉旁路移植术后新发房颤的独立预测因素(P<0.05);经ROC曲线分析,血清GDF-15联合hs-cTnT预测冠状动脉旁路移植术后新发房颤的AUC为0.933,大于SYNTAX积分的0.790,预测近期主要心血管事件的AUC为0.925,大于SYNTAX积分的0.750(P<0.05)。结论:血清GDF-15联合hs-cTnT对冠状动脉旁路移植术后新发房颤及近期主要心血管事件均具有良好的预测效能,值得临床予以重视。  相似文献   
3.
目的:探讨乌司他丁对非停跳冠脉搭桥术患者的心肺保护作用。方法:选取2017年12月-2019年4月我院收治的非停跳冠脉搭桥术患者76例,根据使用的药物不同分为两组,对照组应用常规方法,研究组应用乌司他丁,在麻醉之后切皮之前为T1,旁路血管开放时时间点为T2,手术结束为T3,手术之后的8 h为T4。比较两组治疗前后的心肺功能指标、动脉血气分析及血浆炎症因子、氧合指数术后恢复。结果:和T1进行对比时,两组T3、T4中的气道阻力(Air way Resistance,Raw)、呼吸指数(Respiratory Index,RI)、肺泡-动脉血氧分压差P(A-a)DO2均有所升高,在T2、T4中(PVR)有所升高,在T2、T3、T4中肺顺应性(Compliance of Lung,CL)有所降低。和对照组进行对比时,研究组在T3、T4中肺循环阻力(pulmonary vascular resistance, PVR)、RI、P(A-a)DO2有所降低,在T2、T3、T4中通气死腔百分比(VD/VT)有所降低(P0.05),在T2中CL有所升高(P0.05);治疗前,两组BNP、TNF-α、IL-6、IL-8无统计学意义(P0.05),治疗后BNP、肿瘤坏死因子(tumor necrosis factor-α,TNF-α)、白细胞介素-6 (Interleukin-6,IL-6)、白细胞介素-8 (Interleukin-8,IL-8)在T1、T2、T3、T4中低于对照组(P0.05),肌钙蛋白(cardiac troponin,cTnI)在T1中和对照组没有明显差异(P0.05),T2、T3、T4中研究组明显低于对照组(P0.05),研究组氧合指数高于对照组(P0.05);研究组T1、T2、T3、T4时平均动脉压(mean artery pressure,MBP)均高于对照组(P0.05),T1、T2、T3、T4时心率均低于对照组(P0.05);研究组ICU停留时间、ICU带气管插管时间、ICU机械通气时间、肺部并发症均低于对照组(P0.05)。结论:乌司他丁用于非停跳冠脉搭桥术的效果较好,可以保护患者的心肺功能。  相似文献   
4.
繁殖是植物种群更新与维持的重要环节。包括极小种群野生植物在内的受威胁物种, 其濒危原因是在长期演化过程中自身繁育力的衰退、生活力的下降等内在因素和人类的过度采挖和生境的破坏等外在因素共同作用的结果。对极小种群野生植物进行高效的人工繁殖, 能扩大种群数量并应用于迁地保护、自然回归和满足商品市场的需求, 有利于其种质资源的保护和可持续利用。为了保持物种的遗传多样性, 采用种子繁殖育苗是有效的方法, 扦插、嫁接和组织培养技术等无性繁殖方法则可用于对难以用种子繁殖的种类进行快速繁殖。本文对14种中国典型极小种群野生植物的繁殖特性和已有的人工繁殖方法进行了综述, 并简要介绍在其种苗繁殖研究方面取得的进展。其中利用播种繁殖成功的物种有12种, 共繁殖230,000株种苗; 利用扦插繁殖成功的物种有5种, 共繁殖33,100株种苗; 华盖木(Manglietiastrum sinicum)、河北梨(Pyrus hopeiensis)和黄梅秤锤树(Sinojackia huangmeiensis)采用嫁接繁殖出了2,415株种苗; 9个物种的组织培养技术获得成功, 共繁殖了24,850株种苗。这些种苗有些已应用于迁地保护和自然回归。上述研究结果为这14种极小种群野生植物的保护和利用提供了理论和技术基础, 也能为其他极小种群野生植物的保护和利用提供参考。  相似文献   
5.
Aim: To find out risk factors for postoperative cognitive dysfunction (POCD) after coronary artery bypass grafting (CABG), and to provide basis for clinical prevention of POCD. A total of 88 patients who underwent CABG were surveyed with Telephone Questionnaire (TICS-M) for their cognitive impairment after 3, 7, 21, 90, 180 days post-surgery. The occurrence of POCD was diagnosed by Neuropsychological Battery which included Vocabular Learning Test (VLT), Wisconsin Card Sorting Test (WCST), Trail Making Test (TMT) and Symbol Digit Modalities Test (SDMT). The preoperative, intraoperative and postoperative risk factors were assessed by the χ2 or t test. Multivariate analysis was used to study the correlation between the risk factors and the occurrence of POCD. Age, aortic plaque, carotid artery stenosis, cerebrovascular disease, anesthesia time, the rate of decline in intraoperative hemoglobin concentration (ΔHb) and systemic inflammatory response syndrome (SIRS) score on postoperative day 2 had statistically significant (P<0.05) influence on the occurrence of POCD. Aortic plaque, carotid artery stenosis, anesthesia time and SIRS score (odds ratio (OR) value > 1, P<0.05) are the risk factors for POCD. The incidence of day-21 and -180 POCD was approximately 26.1 and 22.7%, respectively.  相似文献   
6.
通过野外小区实验,从8个大豆品种中筛选出2个低镉富集品种作为砧木,2个高镉富集品种作为接穗植物,研究嫁接当代以及接穗子代镉富集性状的变化,探明嫁接诱导镉富集性状变异的机制及其遗传稳定性。结果表明:大豆的镉富集性状表现出显著的品种间差异,以低镉富集品种(铁丰29和东鲜1号)作砧木,可以使接穗大豆植株(青仁黑1号和中黄38)地上部分镉含量降低50%~70%;高通量测序和qRT-PCR分析显示,嫁接诱导了相关硫代谢基因的差异表达,与自根植株相比,嫁接植株的APX2、PAPRa、SAM1a和ATPs基因表达水平均显著下调,分别达72.53%、67.62%、42.37%和75.78%,APK4表达量则显著上调2.83倍;以阻控效果最好的青仁黑1号-东鲜1号为例,接穗子代遗传了接穗当代的低镉富集性状,对照亲本,子代籽粒镉含量的降低率仍有30%~50%。研究证明:嫁接可以通过调控含硫化合物的合成与代谢,影响作物地上部分的Cd富集性状,且这种性状可以在子代中稳定遗传。  相似文献   
7.
Netherlands Heart Journal - After coronary artery bypass grafting (CABG), healthcare utilisation is high and is partly unplanned. eHealth applications have been proposed to reduce healthcare...  相似文献   
8.
The relationship between serum anti-heat shock protein (Hsp)27 antibody and high sensitive C-reactive protein (hs-CRP) levels and indices of cardiac function were investigated in patients undergoing coronary artery bypass grafting (CABG) or heart valve replacement. The changes in anti-Hsp27 antibody titers and hs-CRP levels were compared among patients undergoing off-pump and on-pump CABG or valvular heart replacement. Fifty-three patients underwent off-pump, on-pump CABG, and heart valvular replacement in each group. Serum anti-Hsp27 titers and hs-CRP values were measured 24 h before and after the operation and at discharge. Echocardiography was performed before surgery and before discharge. The results were compared with values from 83 healthy controls. hs-CRP levels increased and anti-Hsp27 antibody decreased following surgery (P < 0.001 and P < 0.05, respectively), although these changes were independent of operative procedure (P = 0.361 and P = 0.120, respectively). Anti-Hsp27 antibody levels were higher at the time of discharge (P = 0.016). Only in coronary patients were anti-Hsp27 antibody levels negatively associated with E/E′ (r = −0.268, P = 0.022), a marker of pulmonary capillary wedge pressure. In conclusions, anti-Hsp27 antibody levels are associated with indices of cardiac function in coronary patients. Cardiopulmonary bypass had no significant effect on the induction of changes in anti-Hsp27 levels. Moreover, anti-Hsp27 antibody levels fell in all groups postoperatively; this may be due to the formation of immune complexes of antigen–antibody, and antibody levels were higher at the time of discharge.

Electronic supplementary material

The online version of this article (doi:10.1007/s12192-012-0358-y) contains supplementary material, which is available to authorized users.  相似文献   
9.
The treatment of osteochondral articular defects has been challenging physicians for many years. The better understanding of interactions of articular cartilage and subchondral bone in recent years led to increased attention to restoration of the entire osteochondral unit. In comparison to chondral lesions the regeneration of osteochondral defects is much more complex and a far greater surgical and therapeutic challenge. The damaged tissue does not only include the superficial cartilage layer but also the subchondral bone. For deep, osteochondral damage, as it occurs for example with osteochondrosis dissecans, the full thickness of the defect needs to be replaced to restore the joint surface 1. Eligible therapeutic procedures have to consider these two different tissues with their different intrinsic healing potential 2. In the last decades, several surgical treatment options have emerged and have already been clinically established 3-6.Autologous or allogeneic osteochondral transplants consist of articular cartilage and subchondral bone and allow the replacement of the entire osteochondral unit. The defects are filled with cylindrical osteochondral grafts that aim to provide a congruent hyaline cartilage covered surface 3,7,8. Disadvantages are the limited amount of available grafts, donor site morbidity (for autologous transplants) and the incongruence of the surface; thereby the application of this method is especially limited for large defects.New approaches in the field of tissue engineering opened up promising possibilities for regenerative osteochondral therapy. The implantation of autologous chondrocytes marked the first cell based biological approach for the treatment of full-thickness cartilage lesions and is now worldwide established with good clinical results even 10 to 20 years after implantation 9,10. However, to date, this technique is not suitable for the treatment of all types of lesions such as deep defects involving the subchondral bone 11.The sandwich-technique combines bone grafting with current approaches in Tissue Engineering 5,6. This combination seems to be able to overcome the limitations seen in osteochondral grafts alone. After autologous bone grafting to the subchondral defect area, a membrane seeded with autologous chondrocytes is sutured above and facilitates to match the topology of the graft with the injured site. Of course, the previous bone reconstruction needs additional surgical time and often even an additional surgery. Moreover, to date, long-term data is missing 12.Tissue Engineering without additional bone grafting aims to restore the complex structure and properties of native articular cartilage by chondrogenic and osteogenic potential of the transplanted cells. However, again, it is usually only the cartilage tissue that is more or less regenerated. Additional osteochondral damage needs a specific further treatment. In order to achieve a regeneration of the multilayered structure of osteochondral defects, three-dimensional tissue engineered products seeded with autologous/allogeneic cells might provide a good regeneration capacity 11.Beside autologous chondrocytes, mesenchymal stem cells (MSC) seem to be an attractive alternative for the development of a full-thickness cartilage tissue. In numerous preclinical in vitro and in vivo studies, mesenchymal stem cells have displayed excellent tissue regeneration potential 13,14. The important advantage of mesenchymal stem cells especially for the treatment of osteochondral defects is that they have the capacity to differentiate in osteocytes as well as chondrocytes. Therefore, they potentially allow a multilayered regeneration of the defect.In recent years, several scaffolds with osteochondral regenerative potential have therefore been developed and evaluated with promising preliminary results 1,15-18. Furthermore, fibrin glue as a cell carrier became one of the preferred techniques in experimental cartilage repair and has already successfully been used in several animal studies 19-21 and even first human trials 22.The following protocol will demonstrate an experimental technique for isolating mesenchymal stem cells from a rabbit''s bone marrow, for subsequent proliferation in cell culture and for preparing a standardized in vitro-model for fibrin-cell-clots. Finally, a technique for the implantation of pre-established fibrin-cell-clots into artificial osteochondral defects of the rabbit''s knee joint will be described.  相似文献   
10.
Abstract

From the measurements of the profiles of hydraulic conductance and water potential from soil through to the leaf system in fully established melon plants, the limits to water flow set by coupling of hydraulic conductance (k) with water relation parameters was evaluated in the laboratory using high pressure flow device (HPFM) and evaporative flux method (EF). The rootstock Arava was grafted onto self, and onto two genotypes (AR57 and AR82) using side and V graft types, and there was an ungrafted control. Hydraulic transport efficiency was estimated from measurements of evaporative flux (transpiration rate) and leaf water potential (ψL) measured between pre-dawn and sunset during the growth cycle. Measured parameters to characterize the hydraulic efficiency (architecture) of the vascular system of melon were normalized to areas of leaves and stem cross section; this enabled the examination of their physiological and ecological functions. The effects of rootstock genotype were more marked on graft union and scion water relations. Differences in the magnitudes of water relation parameters of hydraulic conductance, water potential (lwp) and evaporative water loss (EF) were detected. AR/RS82 side grafted exhibited high EF and Kh despite its lower leaf water potential compared to AR/RS57 V grafted. Self grafting (Arava/Arava grafts) in melon seems to improve water relations and xylem water transport efficiency. Parameters describing the hydraulic efficiency (architecture) of vascular system of melon plants were described in relation to plant attributes. The expression of hydraulic conductance of the root and shoot system relative to plant attributes did not eliminate differences in the magnitudes of conductance elements in tomato and melon. Differences obtained among the different melon grafts in whole plant leaf and stem area specific hydraulic conductance (Kl) indicate the carbon efficiency and hence the cost of resource allocation to areas of root surface and leaves. The role of plant water relations in root-shoot communications and whole plant regulation of water flux are inferred from this study.  相似文献   
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