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排序方式: 共有306条查询结果,搜索用时 15 毫秒
301.
Tiziana Genovese Marika Cordaro Rosalba Siracusa Daniela Impellizzeri Sebastiano Caudullo Emanuela Raffone Francesco Macrí Livia Interdonato Enrico Gugliandolo Claudia Interlandi Rosalia Crupi Ramona DAmico Roberta Fusco Salvatore Cuzzocrea Rosanna Di Paola 《International journal of molecular sciences》2022,23(10)
Endometriosis is usually associated with inflammation and chronic pelvic pain. This paper focuses the attention on the anti-inflammatory, anti-oxidant and analgesic effects of cannabidiol (CBD) and on its potential role in endometriosis. We employed an in vivo model of endometriosis and administered CBD daily by gavage. CBD administration strongly reduced lesions diameter, volume and area. In particular, it was able to modify lesion morphology, reducing epithelial glands and stroma. CBD showed anti-oxidant effects reducing lipid peroxidation, the expression of Nox-1 and Nox-4 enzymes. CBD restored the oxidative equilibrium of the endogenous cellular defense as showed by the SOD activity and the GSH levels in the lesions. CBD also showed important antifibrotic effects as showed by the Masson trichrome staining and by downregulated expression of MMP-9, iNOS and TGF-β. CBD was able to reduce inflammation both in the harvested lesions, as showed by the increased Ikb-α and reduced COX2 cytosolic expressions and reduced NFkB nuclear localization, and in the peritoneal fluids as showed by the decreased TNF-α, PGE2 and IL-1α levels. CBD has important analgesic effects as showed by the reduced mast cells recruitment in the spinal cord and the reduced release of neuro-sensitizing and pro-inflammatory mediators. In conclusion, the collected data showed that CBD has an effective and coordinated effects in endometriosis suppression. 相似文献
302.
There are two common approaches for the detection of Genetically Modified Organisms (GMOs): DNA based methods, mainly founded on the Polymerase Chain Reaction (PCR), which detect genetically modified DNA sequences, and protein based methods, relying on immune assays (e. g. Enzyme‐Linked Immunosorbent Assay, ELISA). The latter detect and measure levels of proteins expressed by transgenic genes. Official standard tests, yet to come, will be based on these two methodologies. DNA based tests are now preferred for their sensitivity and their capability to detect a wider range of constructs. Protein‐based immune assay tests, although less sensitive, are quicker and require less lab skills. Collaborative study results put in evidence that PCR tests are generally well suited for detecting the presence of GMOs on a qualitative basis (yes/no). Difficulties arise when GMOs have to be quantitatively identified in food ingredients. Real‐Time, or kinetic PCR, points out quantification and interpretation limits when quantification has to be done on a very small total DNA amount. An essential requirement for PCR‐based techniques is the knowledge of the GMO‐specific DNA sequence target. Many labs find it difficult to keep up with the rate at which life science companies are creating new GMOs and the finding of adequate reference standards to be used as positive analytical controls. 相似文献
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Carla Orlando Dr. Mario Prejanò Prof. Nino Russo Prof. Dr. Tiziana Marino 《Chembiochem : a European journal of chemical biology》2023,24(20):e202300412
Enzyme FAST-PETase, recently obtained by a machine learning approach, can depolymerize poly(ethylene terephthalate) (PET), a synthetic resin employed in plastics and in clothing fibers. Therefore it represents a promising solution for the recycling of PET-based materials. In this study, a model of PET was adopted to describe the substrate, and all-atoms classical molecular dynamics (MD) simulations on apo- and substrate-bound FAST-PETase were carried out at 30 and 50 °C to provide atomistic details on the binding step of the catalytic cycle. Comparative analysis shed light on the interactions occurring between the FAST-PETase and 4PET at 50 °C, the optimal working conditions of the enzyme. Pre-organization of the enzyme active and binding sites has been highlighted, while MD simulations of FAST-PETase:4PET pointed out the occurrence of solvent-inaccessible conformations of the substrate promoted by the enzyme. Indeed, neither of these conformations was observed during MD simulations of the substrate alone in solution performed at 30, 50 and 150 °C. The analysis led us to propose that, at 50 °C, the FAST-PETase is pre-organized to bind the PET and that the interactions occurring in the binding site can promote a more reactive conformation of PET substrate, thus enhancing the catalytic activity of the enzyme. 相似文献
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