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61.
Background
Myeloid-derived suppressor cells (MDSCs) function in immunosuppression and tumor development by induction of angiogenesis in a STAT3-dependent manner. Knowledge of MDSC biology is mainly limited to mice studies, and more clinical investigations using spontaneous tumor models are required. Here we performed in vitro experiments and clinical data analysis obtained from canine patients.Methods
Using microarrays we examined changes in gene expression in canine mammary cancer cells due to their co-culture with MDSCs. Further, using Real-time rt-PCR, Western blot, IHC, siRNA, angiogenesis assay and migration/invasion tests we examined a role of the most important signaling pathway.Results
In dogs with mammary cancer, the number of circulating MDSCs increases with tumor clinical stage. Microarray analysis revealed that MDSCs had significantly altered molecular pathways in tumor cells in vitro. Particularly important was the detected increased activation of IL-28/IL-28RA (IFN-λ) signaling. The highest expression of IL-28 was observed in stage III/IV mammary tumor-bearing dogs. IL-28 secreted by MDSCs stimulates STAT3 in tumor cells, which results in increased expression of angiogenic factors and subsequent induction of angiogenesis by endothelial cells, epithelial-mesenchymal transition (EMT) and increased migration of tumor cells in vitro. Knockdown of IL-28RA decreased angiogenesis, tumor cell invasion and migration.Conclusions
We showed for the first time that MDSCs secrete IL-28 (IFN-λ), which promotes angiogenesis, EMT, invasion and migration of tumor cells. Thus, IL-28 may constitute an interesting target for further therapies. Moreover, the similarity in circulating MDSC levels at various tumor clinical stages between canine and human patients indicates canines as a good model for clinical trials of drugs targeting MDSCs. 相似文献62.
Beata Chmielewska Agnieszka Janiak Jagna Karcz Justyna Guzy-Wrobelska Brian P. Forster Malgorzata Nawrot Anna Rusek Paulina Smyda Piotr Kedziorski Miroslaw Maluszynski Iwona Szarejko 《Journal of applied genetics》2014,55(4):433-447
Root hairs are tubular outgrowths of specialized epidermal cells called trichoblasts. They affect anchoring plants in soil, the uptake of water and nutrients and are the sites of the interaction between plants and microorganisms. Nineteen root hair mutants of barley representing different stages of root hair development were subjected to detailed morphological and genetic analyses. Each mutant was monogenic and recessive. An allelism test revealed that nine loci were responsible for the mutated root hair phenotypes in the collection and 1–4 mutated allelic forms were identified at each locus. Genetic relationships between the genes responsible for different stages of root hair formation were established. The linkage groups of four loci rhl1, rhp1, rhi1 and rhs1, which had previously been mapped on chromosomes 7H, 1H, 6H and 5H, respectively, were enriched with new markers that flank the genes at a distance of 0.16 cM to 4.6 cM. The chromosomal position of three new genes – two that are responsible for the development of short root hairs (rhs2 and rhs3) and the gene that controls an irregular root hair pattern (rhi2) – were mapped on chromosomes 6H, 2H and 1H, respectively. A comparative analysis of the agrobotanical parameters between some mutants and their respective parental lines showed that mutations in genes responsible for root hair development had no effect on the agrobotanical performance of plants that were grown under controlled conditions. The presented mutant collection is a valuable tool for further identification of genes controlling root hair development in barley. 相似文献
63.
Alicja M. Chmielewska Mariarosaria Naddeo Stefania Capone Virginia Ammendola Ke Hu Luke Meredith Lieven Verhoye Malgorzata Rychlowska Rino Rappuoli Jeffrey B. Ulmer Stefano Colloca Alfredo Nicosia Riccardo Cortese Geert Leroux-Roels Peter Balfe Krystyna Bienkowska-Szewczyk Philip Meuleman Jane A. McKeating Antonella Folgori 《Journal of virology》2014,88(10):5502-5510
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Krystyna Janowicz Kinga Mazurkiewicz‐Zapałowicz Helena Wronkowska 《Archives Of Phytopathology And Plant Protection》2013,46(1):55-65
The aim of two‐year‐long pot experiments was to investigate the influence of P. frequentans on the growth of over‐ground parts, the intensity of assimilation and transpiration of plants, as well as ths influence on the yield of potato bulbs. It was determined how the above fungus influenced the populaüon of G rostochiensis, the influence being characterized by the density change of cysts, eggs, and larvae in the soil. Experiments in vitro allowed to determine the wholesomeness of cysts, eggs, and larvae (J2) that were in direct contact with the mycelium ofP. frequentans. It was stated that presence of P. frequentans intensified the development of plants and relevantly stimulated their growth, especially in the initial vegetation phase, as compared with the remaining combinations (Fig. 1). Positive effect of P. frequentans on the growth of potato yield was proved, in comparison with the control, and by co‐occurrence of the fungus with G. rostochiensis, also in comparison to the combination with nematodes only (Fig. 2). Pot experiments confirmed the antagonistic effect of P. frequentans on the population of G. rostochiensis. Presence of P. frequentans in the ground caused namely a relevant diminution of density of cysts, eggs and larvae (Tab. II), as well as morphological changes by females, which was connected with size reduction of the cysts (Tab. III). Experiments in vitro confirmed the destructive effect of P. frequentans on the cysts of G. rostochiensis (Tab. IV). 相似文献
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68.
T-DNA insertional mutagenesis in Arabidopsis 总被引:10,自引:0,他引:10
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Joanna Cymerys A. Słońska A. Tucholska A. Golke A. Chmielewska M. W. Bańbura 《Folia microbiologica》2018,63(1):1-11
Equine herpesvirus 1 (EHV-1), like other members of the Alphaherpesvirinae subfamily, is a neurotropic virus causing latent infections in the nervous system of the natural host. In the present study, we have investigated EHV-1 replication (wild-type Jan-E strain and Rac-H laboratory strain) during long-term infection and during the passages of the virus in cultured neurons. The studies were performed on primary murine neurons, which are an excellent in vitro model for studying neurotropism and neurovirulence of EHV-1. Using real-time cell growth analysis, we have demonstrated for the first time that primary murine neurons are able to survive long-term EHV-1 infection. Positive results of real-time PCR test indicated a high level of virus DNA in cultured neurons, and during long-term infection, these neurons were still able to transmit the virus to the other cells. We also compared the neurovirulence of Rac-H and Jan-E EHV-1 strains after multiple passages of these strains in neuron cell culture. The results showed that multiple passages of EHV-1 in neurons lead to the inhibition of viral replication as early as in the third passage. Interestingly, the inhibition of the EHV-1 replication occurred exclusively in neurons, because the equine dermal (ED) cells co-cultivated with neuroculture medium from the third passage showed the presence of large amount of viral DNA. In conclusion, our results showed that certain balance between EHV-1 and neurons has been established during in vitro infection allowing neurons to survive long-term infection. 相似文献