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1.
Conclusion The mechanisms that regulate regeneration of kidney epithelial cells after acute tubular necrosis are poorly understood. Repair of the nephron can take place in the adverse systemic metabolic setting caused by failure of renal function. This clinical observation suggests that factors released at the site of the tubular insult can mediate repair. Studies carried out in this and other laboratories show that kidney epithelial cells can release and respond to polypeptide growth factors which may thereby contribute to renal regeneration by autocrine and paracrine mechanisms. Specific growth factors secreted by cells and deposited in the tubular basement membrane prior to injury may subsequently participate in nephron repair. In addition, adenine nucleotides released from injured or dying cells at the injury site or provided exogenously could stimulate surviving renal epithelial cells at the edges of the wound to migrate along the basement membrane to rapidly reepithelialize the nephron and subsequently initiate mitogenesis to replace cells lost by necrosis.The nephrotoxic effect of many agents used in cancer chemotherapy and the older age of patients undergoing complicated surgical procedures has increased the incidence of ARF, whereas the mortality rate has not changed since the early 1950s [22]. Thus there is considerable need for innovative therapeutic strategies. An important goal of future research efforts is to identify new growth factors that facilitate migration, differentiation, and proliferation of renal epithelial cells at sites of tubular necrosis. Isolation and use of these agents in combination with dialysis and nutritional support could speed renal regeneration and thereby improve the outcome in patients with this condition.Abbreviations ARF acute renal failure - ECM extracellular matrix - EGF epidermal growth factor - FGF fibroblast growth factor - IGF insulin-like growth factor - MGSA melanocyte growth-stimulating activity - PDGF platelet-derived growth factor - IGF transforming growth factor  相似文献   
2.
杭涛  江时森 《医学研究生学报》2002,15(5):456-457,461
腺嘌呤核苷酸载体(ANT)是一种位于线粒体内膜上的转运蛋白,它在组织细胞能量产生和消耗的耦联中起关键性作用。作者就ANT的功能和表达情况及其与心力衰竭之间的关系作一综述。  相似文献   
3.
本文以腺苷酸为测定物,探讨了以国产自动平衡记录仪为高效液相色谱记录并定量分析结果的方法。结果表明,从自动平衡记录上得到峰形、计算结果均与原机所带积分仪的一致。其稳定性、灵敏度和线性响应均能达到高效液相色谱检测器的要求,是一种可以代替积分仪分析结果的经济、可靠的方法。  相似文献   
4.
合成了6个6-氨基-9-(N~4′-芳香基取代乙醛缩氨基硫脲)嘌呤衍生物,并进行了抗核型多角体病毒(NPV)活性实验。结果显示该类化合物对NPV的抑制活性可达67%。  相似文献   
5.
Sixty-eight primary liver grafts were analyzed to see whether adenine nucleotides (AN: ATP, ADP, and AMP) or purine catabolites (PC: adenosine, inosine, hypoxanthine, and xanthine) of tissue or effluent can predict primary graft nonfunction. AN, PC, and nicotinamide adenine dinucleotide, oxidized form (NAD+) of the tissue before (pretransplant) and after graft reperfusion (post-transplant) and of the effluent were analyzed. The graft outcome was classified into two groups (group A: successful, n=64; group B: primary nonfunctioning, n=4). No significant differences were observed in pretransplant measurements between groups A and B, whereas ATP, ADP, total AN, total AN+total PC (T) and NAD+, in post-transplant tissues, were significantly higher in group A. Xanthine in the effluent was significantly higher in group B than in group A. ATP, ADP, total AN, T, and NAD+ in post-transplant tissue were significantly associated with primary graft nonfunction by logistic regression analysis.  相似文献   
6.
The independent release of adenosine and adenine nucleotides upon electrical stimulation was studied in the innervated sartorius muscle of the frog after blockade of the extracellular catabolism of adenosine monophosphate (AMP) through exo-AMP deaminase and ecto-5-nucleotidase. Nerve stimulation (30 min, 0.2Hz) induced the release of both adenosine (19±3 pmol) and adenine nucleotides (101±7 pmol). Experiments performed in the presence of tubocurarine (5 M) to prevent purine release due to nerve-evoked muscle twitching, or under direct stimulation of the muscle in low calcium solutions to prevent pre-synaptic release of purines, showed that there was an evoked release of adenosine and adenine nucleotides both from the nerve endings and from the twitching muscle fibres. Removal of ecto-5-nucleotidase inhibition shows that the catabolism of adenine nucleotides released during stimulation contributes in about 50% to the amount of endogenous extracellular adenosine. When only one of the enzymes catabolizing AMP (ecto-5-nucleotidase or exo-AMP deaminase) was inhibited, the evoked release of adenine nucleotides was undetectable, suggesting that each enzyme is able to catabolize all the AMP formed from adenine nucleotides released upon stimulation. It is concluded that the concentration of endogenous extracellular adenosine is under the control of the relative activities of exo-AMP deaminase and ecto-5-nucleotidase.Brief accounts of some of the results in this study have been published previously (refs. [6, 7]).  相似文献   
7.
Muscle-type phosphofructokinase deficiency (PFKD) causes a hemolytic disorder and exertional myopathy in humans and dogs. In humans, PFKD is accompanied by a disturbed calcium homeostasis and associated adenine nucleotide dysregulation, which may potentiate the erythroenzymopathy associated with this inherited disorder. This study shows that canine PFKD also manifests these erythrocyte abnormalities. Compared to normal, healthy red cells, PFK-deficient erythrocytes contain lower concentrations of ATP and higher concentrations of IMP and calcium, the latter as per a calcium indicator dye. Adenosine monophosphate deaminase (AMPD) enriched 5000-fold from canine erythrocytes adsorbs to immobilized calcium–calmodulin and the interaction between these two proteins activates AMPD through a K mapp effect. This behavior is similar to that of the human erythrocyte enzyme and provides a potential contributing mechanism for accelerated adenine nucleotide turnover in canine PFKD. We propose that adenine nucleotide replacement strategies could benefit the erythroenzymopathy in human and canine PFKD and that the dog model of this disorder is an appropriate vehicle for further elucidating this hypothesis.  相似文献   
8.
The ability to resist transient ischemia was studied in isolated hearts of 18 months old spontaneously hypertensive (SHR) and Wistar-Kyoto (WKY) rats. Both types of hearts showed optimal performance during the preischemic period when perfused at a diastolic perfusion pressure of 8.0 (WKY) and 13.3 (SHR) kPa. Hemodynamic recovery of WKY hearts during reperfusion at 8.0 kPa, following 45 min global ischemia, was satisfactory. Coronary perfusion completely normalized, contractility (dP lv/dt max) was slightly depressed and cardiac output returned, on the average, to 40% of the preischemic values. In contrast, hemodynamic function of SHR hearts reperfused at 13.3 kPa was greatly depressed, as evidenced by almost complete abolition of cardiac output, severe reduction ofdP lv/dt max and persistent underperfusion of the endocardial layers. In addition, the postischemic release of lactate dehydrogenase was retarded and enhanced. The release patterns of degradation products of adenine nucleotides showed a shift to the endstage produets xanthine and uric acid. The enhanced vulnerability of the hypertrophied heart to ischemia was even more expressed when the SHR hearts were reperfused at 8.0 kPa. Postischemic function was characterized by electrical instability, loss of contractility and cardiac output, and noreflow in the endocardial layers. Persistent accumulation of lactate and degradation products of adenine nucleotides in the postischemic hearts are in line with the lack of reperfusion. The present results indicate that a detailed mechanistic explanation for the reduced ability to withstand ischemia of SHR cannot be based on differences in ATP content or an altered anaerobic glycolitic activity prior and during ischemia. It is suggested that a defect on the circulatory level, probably caused by enhanced reactivity of the coronary vessels towards ischemia-elicited factors, is responsible for the higher vulnerability of hypertrophied heart to an ischemia insult.Supported by Medigon/NWO (grant number 900516091)  相似文献   
9.
腺嘌呤核苷酸转位酶(ANT)是线粒体上的一类转运蛋白。它与癌细胞的代谢和凋亡过程相关,在恶性肿瘤的新型治疗方面有一定潜能。ANT的四种异构体作用不同,本文将分别阐述它们与癌细胞凋亡的关系。  相似文献   
10.
目的为筛选有效的抗RV药物。方法选用9种新合成的腺嘌呤衍生物、6种尿嘧啶衍生物及大黄醇提液,分别在BHK21、RNC和HNC细胞上进行了体外抗病毒试验。在BHK21上以CPE为观察指标,在RNC和HNC上因不出现明显的CPE,则将细胞培养物转种于BHK2l细胞并用间接免疫荧光和免疫酶技术检测药物的抗病毒效应。结果取代基为—CH2—C6H5、—(CH2)2OH、—C6H5—CH3的腺嘌呤衍生物及取代基为—CH3、—(CH2)2OH、—C6H5—CH3、—C6H5—Cl的尿嘧啶衍生物,对RVJR-23的最小抑毒剂量在78~625mg/L之间;大黄醇提液对RVJR-23的最小抑毒剂量为5000mg/L。结论上述药物均有抗RV作用,大黄醇提液的作用较新合成的部分腺嘌呤与尿嘧啶衍生物更为明显,且毒性小。  相似文献   
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