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Minaxi  Jyoti Saxena 《BioControl》2010,55(6):799-810
Pseudomonas fluorescens BAM-4, Burkholderia cepacia BAM-6 and B. cepacia BAM-12 isolated from the rhizosphere of moong bean (Vigna radiata L.) showed significant growth-inhibitory activity against a range of phytopathogenic fungi. Light and scanning electron microscopic (SEM) studies showed morphological abnormalities such as fragmentation, swelling, perforation and lysis of hyphae of pathogens by Pseudomonas and Burkholderia. Two of the strains (BAM-4 and BAM-6) produced siderophore in CAS agar plates, whereas all three strains produced chitinase. Bacterization of seeds of moong bean with pseudomonads has been reported as a potential method for enhancing plant growth and yield, and for providing protection against Macrophomina phaseolina. Seed bacterization with these plant growth-promoting rhizobacteria (PGPR) showed a significant increase in seed germination, shoot length, shoot fresh and dry weight, root length, root fresh and dry weight, leaf area and rhizosphere colonization. Yield parameters such as pods, number of seeds, and grain yield per plant also enhanced significantly in comparison to control. The disease suppression and plant growth enhancement along with the positive rhizosphere colonization by these strains indicate their possible use as PGPR/biocontrol agents against charcoal rot.  相似文献   
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Background

Cervical cancer is the most common female malignancy in the developing nations and the third most common cancer in women globally. An effective, inexpensive and self-applied topical treatment would be an ideal solution for treatment of screen-detected, pre-invasive cervical disease in low resource settings.

Methods

Between 01/03/2013 and 01/08/2013, women attending Kenyatta National Hospital''s Family Planning and Gynaecology Outpatients clinics were tested for HIV, HPV (Cervista®) and liquid based cervical cytology (LBC -ThinPrep®). HIV negative women diagnosed as high-risk HPV positive with high grade squamous intraepithelial lesions (HSIL) were examined by colposcopy and given a 2 week course of 1 capsule of Lopimune (CIPLA) twice daily, to be self-applied as a vaginal pessary. Colposcopy, HPV testing and LBC were repeated at 4 and 12 weeks post-start of treatment with a final punch biopsy at 3 months for histology. Primary outcome measures were acceptability of treatment with efficacy as a secondary consideration.

Results

A total of 23 women with HSIL were treated with Lopimune during which time no adverse reactions were reported. A maximum concentration of 10 ng/ml of lopinavir was detected in patient plasma 1 week after starting treatment. HPV was no longer detected in 12/23 (52.2%, 95%CI: 30.6–73.2%). Post-treatment cytology at 12 weeks on women with HSIL, showed 14/22 (63.6%, 95%CI: 40.6–82.8%) had no dysplasia and 4/22 (18.2%, 95%CI: 9.9–65.1%) were now low grade demonstrating a combined positive response in 81.8% of women of which 77.8% was confirmed by histology. These data are supported by colposcopic images, which show regression of cervical lesions.

Conclusions

These results demonstrate the potential of Lopimune as a self-applied therapy for HPV infection and related cervical lesions. Since there were no serious adverse events or detectable post-treatment morbidity, this study indicates that further trials are clearly justified to define optimal regimes and the overall benefit of this therapy.

Trial Registration

ISRCTN Registry 48776874  相似文献   
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In males, females, and workers of the red wood ant, F. polyctena, changes in glucose, trehalose and total carbohydrates have been studied histologically, chromatographically and colorimetrically. On the basis of these changes, the metamorphic instars have been divided into eight different stages. Besides the identified sugars an unknown sugar, probably an oligosaccharide, has been demonstrated. The carbohydrate content of the workers is highest. All three castes store polysaccharides preponderantly in the larval stages; these are mobilised after spinning (cocoon formation). In all three castes the curve for trehalose shows two peaks with a minimum during the pupal moult. The trehalose level is significantly higher in the workers than in the sexuals. The glucose level in the sexuals reaches a maximum in the first half of the pupal phase, whereas in workers it falls gradually till the emergence of the adult. No definite correlation could be found between the glucose and trehalose curves. In the workers the increase of the total carbohydrate content after the pupal moult is caused by the increase of polysaccharides.
Zusammenfassung Bei Männchen, Weibchen und Arbeiterinnen der Roten Waldameise Formica polyctena wurden die Veränderungen im Gehalt an Glukose, Trehalose und Gesamtkohlenhydraten histologisch, chromatographisch und kolorimetrisch ermittelt. Hierzu wurden die Metamorphosestadien in acht verschiedene Entwicklungsstufen eingeteilt. Außer den identifizierten Zuckern wurde ein unbekanntes Oligosaccharid gefunden. Der relative Kohlenhydratgehalt ist bei Arbeiterinnen am höchsten. Alle drei Morphen speichern Polysaccharide vorwiegend in Larvenstadien, die nach dem Einspinnen mobilisiert werden. In allen drei Kasten zeigt die Trehalosekurve zwei Maxima und ein Minimum während der Puppenhäutung. Der Trehalosegehalt ist in Arbeiterinnen deutlich höher als in Geschlechtstieren. Der Glukosegehalt erreicht in Geschlechtstieren ein Maximum in der ersten Hälfte der Puppenphase, während er in Arbeiterinnen bis zur Imaginalhäutung allmählich absinkt. Zwischen dem Verlauf der Glukoseund Trehalosekurve konnte keine nähere Beziehung gefunden werden. Der beobachtete Anstieg der Gesamtkohlenhydrate nach der Puppenhäutung der Arbeiterinnen ist durch eine Erhöhung der Polysaccharide bedingt.


Supported by Deutsche Forschungsgemeinschaft  相似文献   
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Minaxi  Jyoti Saxena 《Mycopathologia》2010,170(3):181-193
Molecular characterization of rhizobacterial isolate RM-3, based on sequencing of a partial 1,313-bp fragment of 16S rDNA amplicon, validated the strain as Pseudomonas aeruginosa. The strain showed significant growth inhibition of different phytopathogenic fungi in dual plate and liquid culture assays. Maximum growth inhibition was found in case of Macrophomina phaseolina in plate assay (68%), whereas it was 93% in Dreschlera graminae in dual liquid assay. Microscopic studies (light and scanning electron) showed morphological abnormalities such as perforation, fragmentation, swelling, shriveling and lysis of hyphae of pathogenic fungi. The strain also exhibited production of siderophore and hydrogen cyanide (HCN) on chrome azurol S and King’s B media, respectively. Besides, this strain also produced extracellular chitinase enzyme and an important antibiotic, phenazine. Seed bacterization with RM-3 showed a significant (P < 0.05) increase in seed germination, shoot length, shoot fresh and dry weight, root length, root fresh and dry weight and leaf area. It was also able to colonize the rhizosphere of plants and reduced percent disease incidence in M. phaseolina-infested soil by 83%. Yield parameters such as pods, number of seeds and grain yield per plant also enhanced significantly (P < 0.05) in comparison to control. Thus, the secondary metabolites producing Pseudomonas aeruginosa strain RM-3 exhibited innate potential of plant growth promotion and biocontrol potential in vitro and in vivo.  相似文献   
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Gami MS  Wolkow CA 《Aging cell》2006,5(1):31-37
Much excitement has arisen from the observation that decrements in insulin‐like signaling can dramatically extend lifespan in the nematode, Caenorhabditis elegans, and fruitfly, Drosophila melanogaster. In addition, there are tantalizing hints that the IGF‐I pathway in mice may have similar effects. In addition to dramatic effects on lifespan, invertebrate insulin‐like signaling also promotes changes in stress resistance, metabolism and development. Which, if any, of the various phenotypes of insulin pathway mutants are relevant to longevity? What are the genes that function in collaboration with insulin to prolong lifespan? These questions are at the heart of current research in C. elegans longevity. Two main theories exist as to the mechanism behind insulin's effects on invertebrate longevity. One theory is that insulin programs metabolic parameters that prolong or reduce lifespan. The other theory is that insulin determines the cell's ability to endure oxidative stress from respiration, thereby determining the rate of aging. However, these mechanisms are not mutually exclusive and several studies seem to support a role for both. Here, we review recently published reports investigating the mechanisms behind insulin's dramatic effect on longevity. We also spotlight several C. elegans genes that are now known to interact with insulin signaling to determine lifespan. These insights into pathways affecting invertebrate lifespan may provide a basis for developing strategies for pharmacological manipulation of human lifespan.  相似文献   
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