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991.
Mechanisms of photophysical, photobiological, and therapeutic action of light on blood in vivo are discussed based on results
of spectral and clinical studies of blood, plasma, and erythrocytes. Spectral manifestations of photochemical reactions initiated
in blood by therapeutic doses of radiation in vivo with light of different wavelengths are considered. Spectral and clinical
results of blood investigations are compared for patients whose complex treatment included intravenous blood irradiation and
magnetotherapy. Mechanisms for secondary (dark) reactions induced by the action of light on blood in vivo are discussed. The
radiation of laser and non-laser light sources used at present for intravenous blood irradiation (365, 405, 450, 530, 632,
635, 808 nm) is shown to fall within hemoglobin absorption bands. The conclusion is made that blood absorption of laser and
non-laser light radiation results in functional alteration of hemoglobin as a possible primary photoacceptor absorbing light
radiation of the above wavelengths. The therapeutic effect of intravenous blood irradiation is initiated by hemoglobin functional
activity modulation. Phototherapy is a means to correct it. Intravenous phototherapy should be considered as a therapeutic
method that changes (provided that the dosage is correct) the balance of active oxygen species production and their inhibition
by antioxidants.
Translated from Zhurnal Prikladnoi Spektroskopii, Vol. 76, No. 1, pp. 51–75, January–February, 2009. 相似文献
992.
C. Albano N. Camacho M. Hernández A. Matheus A. Gutiérrez 《Macromolecular Symposia》2009,286(1):195-202
Lightweight aggregate is an important material in reducing the unit weight of concrete and it is essential in the construction of high-rise buildings; besides, the use of recycled PET bottles as lightweight aggregate in concrete is an effective contribution for environmental preservation. So, the objective of the present work is to study the flexural strength of PET-concrete and PET thermal degradation in the concrete, when the blends with 10 and 20 vol% of PET are exposed to different temperatures (200, 400, 600 °C). The flexural strength of PET-concrete exposed to a heat source is strongly dependent on the temperature, the water/cement ratio, as well as on the content and particle size of PET. Furthermore, the activation energy for PET degradation is affected by temperature, location of PET particles on the slabs and the water/cement ratio. A higher content of water gives rise to hydrolytic degradation on PET and a higher vapor pressure that increases the formation of cracks on the concrete. The values of activation energy are higher on the center of the slabs than on the surface, due to the poor heat conduction of concrete. 相似文献
993.
研究了以Pd(OAc)2为催化剂,H3PMo12O40为助催化剂,空气为氧化剂,在乙酸溶液中于373 K条件下,在500 ml高压釜中由苯液相氧化偶联合成联苯. 结果表明,反应产物中联苯的选择性高达92%以上,并且只有少量的三联苯副产物生成. 分别考察了H3PMo12O40的加入量和O2分压对以空气或纯O2为氧化剂时Pd/HPMo/AcOH催化苯液相氧化偶联合成联苯反应催化性能的影响. 根据反应液颜色的变化以及文献结果推测,在反应过程中通过钯和钼物种的氧化和还原作用使苯氧化生成联苯. 相似文献
994.
正丁烷在金属钼酸盐催化剂上的氧化脱氢 总被引:5,自引:0,他引:5
用柠檬酸盐法合成了第一系列过渡金属(Cr,Mn,Fe,Co,Ni,Cu和Zn)及Mg的钼酸盐催化剂,研究
了它们对正丁烷氧化脱氢反应的催化作用. 结果表明,这些钼酸盐催化剂的催化性能受阳离子的影响较大. CoMoO4催化剂具有最高的催化活性和较高的选择性,其催化性能与文献报道的对正丁烷氧化脱氢反应催化性能最好的ZrP2O7和Mg3V2O8催化剂大致相当; MgMoO4催化剂虽然选择性较高,但活性较低; Cr2(MoO4)3上基本没有C4烯烃生成; 其它钼酸盐催化剂对正丁烷氧化脱氢反应的催化活性和对烯烃的选择性都较低. XRD,NH3-TPD和H2-TPR的研究结果表明,催化剂为单一的钼酸盐晶相,催化剂的性能由其氧化还原性决定而与其表面酸量没有直接关系. 通过对产物分布的分析,提出了正丁烷在CoMoO4催化剂上的氧化脱氢反应途径. 在558 ℃,正丁烷发生氧化脱氢生成正丁烯和丁二烯以及氧化燃烧生成CO2三个平行竞争反应的竞争分率分别约为75%,10%和15%. 在正丁烷转化率较高的条件下,产物中的CO2主要来自C4烯烃的再氧化反应,而CO则完全来自C4烯烃的再氧化. 相似文献
995.
多金属氧酸盐杂化催化剂光催化降解有机杀虫剂六氯苯 总被引:12,自引:0,他引:12
通过自组装技术制备了一系列多金属氧酸盐-有机胺-分子筛杂化催化剂K5[M(H2O)PW11O39]-(EtO)3Si(CH2)3NH2-MCM-48,用XRD,ICP-AES,UV/DRS,FT-IR,31P MAS NMR和N2吸附等手段对其组成和结构进行了表征,并以有机杀虫剂六氯苯为探针分子考察了其光催化活性. 结果表明,多金属氧酸盐杂化催化剂的光催化降解活性高于直接光解,能有效地降解污水中的六氯苯,且易分离,可循环使用. 相似文献
996.
SAPO-34和SAPO-44分子筛上吸附甲醇的TPSR-MS研究 总被引:5,自引:0,他引:5
采用程序升温表面反应-质谱(TPSR-MS)和程序升温脱附(TPD)技术考察了SAPO-34和SAPO-44分子筛表面的酸性与其催化甲醇转化为低碳烯烃性能的关系. 结果表明,SAPO分子筛表面存在两种活性中心,这两种活性中心与分子筛表面不同的酸性中心相对应. 表面吸附的甲醇在不同强度的酸性中心上进行不同的反应,在弱酸中心上主要进行甲醇脱水生成二甲醚的反应,在强酸中心上主要进行二甲醚进一步转化为低碳烯烃的反应. 同时,探讨了SAPO分子筛表面的酸强度对低碳烯烃生成温度的影响. 相似文献
997.
998.
Luyang Jian Ying Xue Yuefeng Gao Bo Wang Yanghua Qu Shuanghong Li Heqiong Li Zhen Li Bing Wang Hailing Luo 《Molecules (Basel, Switzerland)》2021,26(15)
(1) Background: the current research was conducted to investigate the potential non-antioxidant roles of vitamin E in the protection of hepatocysts from oxidative damage. (2) Methods: primary sheep hepatocytes were cultured and exposed to 200, 400, 600, or 800 μmol/L hydrogen peroxide, while their viability was assessed using a CCK-8 kit. Then, cells were treated with 400 μmol/L hydrogen peroxide following a pretreatment with 50, 100, 200, 400, and 800 μmol/L vitamin E and their intracellular ROS levels were determined by means of the DCF-DA assay. RNA-seq, verified by qRT-PCR, was conducted thereafter: non-treated control (C1); cells treated with 400 μmol/L hydrogen peroxide (C2); and C2 plus a pretreatment with 100 μmol/L vitamin E (T1). (3) Results: the 200–800 μmol/L hydrogen peroxide caused significant cell death, while 50, 100, and 200 μmol/L vitamin E pretreatment significantly improved the survival rate of hepatocytes. ROS content in the cells pretreated with vitamin E was significantly lower than that in the control group and hydrogen-peroxide-treated group, especially in those pretreated with 100 μmol/L vitamin E. The differentially expressed genes (DEGs) concerning cell death involved in apoptosis (RIPK1, TLR7, CASP8, and CASP8AP2), pyroptosis (NLRP3, IL-1β, and IRAK2), and ferroptosis (TFRC and PTGS2). The abundances of IL-1β, IRAK2, NLRP3, CASP8, CASP8AP2, RIPK1, and TLR7 were significantly increased in the C1 group and decreased in T1 group, while TFRC and PTGS2 were increased in T1 group. (4) Conclusions: oxidative stress induced by hydrogen peroxide caused cellular damage and death in sheep hepatocytes. Pretreatment with vitamin E effectively reduced intracellular ROS levels and protected the hepatocytes from cell death by regulating gene expression associated with apoptosis (RIPK1, TLR7, CASP8, and CASP8AP2) and pyroptosis (NLRP3, IL-1β, and IRAK2), but not ferroptosis (TFRC and PTGS2). 相似文献
999.
纳米银催化氧化偶联硫醇制二硫化物 总被引:3,自引:0,他引:3
采用多元醇为溶剂和还原剂制备了聚乙烯吡咯烷酮(PVP)保护的纳米银,并将其用于催化正十二烷基硫醇氧化偶联反应.质谱、红外光谱、拉曼光谱和核磁共振氢谱表征结果表明所得产物为二硫化物.考察了反应时间、反应温度、催化剂和水的用量等对正十二烷基硫醇氧化偶联反应的影响,从而得出优化的反应条件:0.157mmolPVP保护的纳米银,20μl水,100℃下反应3h.此外,进一步将PVP保护的纳米银用于正丁硫醇和正辛硫醇的氧化偶联反应,也得到了相应的二硫化物. 相似文献
1000.