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251.
HBIG,无环鸟苷,干扰素联合对慢性乙型肝炎抗病毒效应观察   总被引:1,自引:0,他引:1  
本文报道血清HBV复制标志阳性的慢乙肝54例,随机分为治疗组及对照组各27例进行HBIG、无环鸟苷、干扰素联合近、远期抗病毒效应观察。治疗组为无环鸟苷第一周按25~20mg/kg/d计后改17~15mg/kg/d×53天,共60天;人白细胞干扰素1×106U肌注每周3次×4周,后改1.0×106U肌注每周2次×6周,共10周;HBIG400U肌注隔日1次,共10周,对照组仅给予一般“保肝”药物。其中治疗组18例,对照组19例进行治后半年到2年追踪观察,结果近、远期HBcAg、DNAP、HBV-DNA阴转率治疗组均高于对照组,其中治疗组近、远期HBcAg,HBV-DNA阴转率均达40%以上,明显高于对照组(P<0.05~0.01),治疗组近、远期各有4例及2例HBsAg阴转,而对照组则无一例阴转,从近、远期综合抗病毒效应观察,治疗组全阴率分别为33.3%、44.4%,而对照组分别为3.79%及0%,P<0.01,治疗组无明显毒副反应。对比单用无环鸟苷,全阴率31.8%;无环鸟苷加干扰素两药联合全阴率37.5%,均有所提高,达到44.4%,值得进一步研究。  相似文献   
252.
本实验用平截末端连接法把卡那霉素抗性基因插入到大豆根瘤菌(Brahyrh;zobiumjaponicum)110的苹果酸脱氢酶(mdh)基因中,致使mdh基因失活,再通过电激法把这一重组基因转入大豆根瘤菌(Brahyrhizobiumjaponicum)2143中,进而探讨mdh基因失活对大豆固氮作用的影响。  相似文献   
253.
果树介壳虫寄生蜂资源的研究   总被引:4,自引:0,他引:4  
介壳虫是果树的重要害虫,研究利用寄生蜂的自然控制作用是果树介壳虫生物防治和综合治理的重要途径。本论述了果树介壳虫寄生蜂资源的研究,报道了小蜂总科寄生蜂5科25属63种。  相似文献   
254.
 人红细胞NADH-细胞色素b5还原酶的分离纯化与鉴定黄长晖,朱忠勇,唐玉钗(南京军区福州总院全军医学检验中心实验科,福州350001)NADH细胞色素b5还原酶(Cytb5R,E.C.1.6.2.2.)是红细胞内催化高铁血红蛋白还原为血红蛋白的关键酶...  相似文献   
255.
莱氏衣原体膜上Mg~(2+)-ATPase用DOC溶解后,经Sepharose-6B和DEAE-CelluloseDE-52离子交换柱,得到了部分纯化的Mg~(2+)ATPase,并将此ATPase与不同极性头部的磷脂和膜糖脂重组,研究了不同的极性头部的磷脂和膜糖脂对ATPase活性的影响。此酶的活性不依赖酸性磷脂,PG、DPG、大豆磷脂等明显抑制酶活性,中性磷脂DMPC、PE、PC则能增加酶活性,其中尤以非双层脂PE的作用最为明显。从莱氏衣原体膜上提取的糖脂(MGDG,DGDG)单独和ATPase重组时,酶活性增加并不明显,当MGDG和DGDG以等比例混合时,能大大地增加酶活性。这表明Mg~(2+)-ATPase的活性很大程度上与磷脂的表面电荷及磷脂的组成相关。  相似文献   
256.
B Karunanandaa  S Huang    T Kao 《The Plant cell》1994,6(12):1933-1940
For Petunia inflata and Nicotiana alata, which display gametophytic self-incompatibility, S proteins (the products of the multiallelic S gene in the pistil) have been shown to control the pistil's ability to recognize and reject self-pollen. The biochemical mechanism for rejection of self-pollen by S proteins has been shown to involve their ribonuclease activity; however, the molecular basis for self/non-self recognition by S proteins is not yet understood. Here, we addressed whether the glycan chain of the S3 protein of P. inflata is involved in self/non-self recognition by producing a nonglycosylated S3 protein in transgenic plants and examining the effect of deglycosylation on the ability of the S3 protein to reject S3 pollen. The S3 gene was mutagenized by replacing the codon for Asn-29, which is the only potential N-glycosylation site of the S3 protein, with a codon for Asp, and the mutant S3 gene was introduced into P. inflata plants of the S1S2 genotype. Six transgenic plants that produced a normal level of the nonglycosylated S3 protein acquired the ability to reject S3 pollen completely. These results suggest that the carbohydrate moiety of the S3 protein does not play a role in recognition or rejection of self-pollen and that the S allele specificity determinant of the S3 protein and those S proteins that contain a single glycan chain at the same site as the S3 protein must reside in the amino acid sequence itself.  相似文献   
257.
The developmental stages of the maize embryo sac were correlated with the corresponding silk lengths of ear florets in the female inflorescence. The development of embryo sacs in the ovules of spikes occurs in a gradient pattern with the initiation of the embryo sac beginning at the base of the ear and progressing to the top. At the beginning of meiosis, the presence of conspicuous cortical microtubules coincides with the extensive elongation of the megasporocyte. The spindles at metaphase I and II align along the long axis of the megasporocyte leading to the linear alignment of the dyad and tetrad of megaspores. During megagametogenesis, micropylar and chalazal nuclei of the embryo sac undergo synchronized divisions and migration at the second and third mitosis. Radiate perinuclear microtubules are present during the interphase of the second and third mitosis, and inter-sister nuclear microtubules occur at the late four-nucleate embryo sac. The configuration and orientation of the spindles, phragmoplasts, and pairs of nuclei result in precise positioning of the nuclei. The fusion of the polar nuclei and the formation of a microtubule organizing center-like structure in the filiform apparatus occur right after the first division of the antipodal cells. The different patterns of organization of microtubules in the cells of the mature embryo sac reflect their structural adaptations for their future function.  相似文献   
258.
Inositol 1,4-bisphosphate (IP2), which rapidly accumulates during cell activation, strongly stimulates an increase in cytoskeletal actin in saponin-permeated platelets, and the effect is insensitive to 5′-Chloro-5′-deoxyadenosine. Within 10 s, the amount of cytoskeletal actin in platelets rapidly increases by 41%, and then slowly increases further. IP2 induces the increase in cytoskeletal actin in a dose-dependent manner. The half-maximal effect requires approximately 2 μM of IP2 Inositol 1,4,5- triphosphate, the messenger for Ca2+ release, causes the increase in cytoskeletal actin, but is less effective than IP2. Inositol 1-monophosphate and inositol 2-monophosphate have no effect on cytoskeletal actin. Phorbol 12-myristate 13-acetate, which has been shown to activate IP3 5′-phosphatase through protein kinase C, stimulates the increase in cytoskeletal actin. Spermine, an inhibitor of IP3 5′-phosphatase, inhibits the thrombin stimulated increase in cytoskeletal actin. These results suggest that IP2 may be a messenger that controls the organization of actin filaments during cell activation. This study presents the first evidence for IP2 as a messenger during cell activation.  相似文献   
259.
The febrile response and sympathetic nervous response to hypothalamic microinjections of prostaglandin E2 (PGE2) were investigated in anesthetized rabbits. Microninjection of PGE2 (500–1000 ng) caused an increase in rectal temperature of more than 0.3°C in 13 of 50 loci in the preoptic and anterior hypothalamic area (PO/AH). At 8 of these 13 loci, PGE2 elicited response patterns in the sympathetic nervous system, such as an increase in cutaneous sympathetic nervous activity and decrease in renal sympathetic nervous activity. This pattern of sympathetic nervous responses was induced with a simultaneous increase in rectal temperature of more than 0.5°C. The 8 loci were distributed in the preoptic area, especially in the vicinity of the supraoptic nucleus. Electrolytic lesions of this region were made bilaterally, and intracerebroventricular injection of PGE2 (8 µg/kg) was found to inhibit fever and sympathetic activity. The results demonstrate that the action of PGE2 is responsible for the response patterns of sympathetic twigs during fever. The preoptic area, especially in the vicinity of the supraoptic nucleus, is most sensitive to PGE2 for the patternized response of sympathetic neurons and fever.  相似文献   
260.
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