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This review describes the kinetics at play in Cucurbituril (CB[n])/guest recognition within a very wide time frame, from picoseconds to days. We cover the kinetics of (1) radiative and non-radiative decays of fluorophores inside and outside CB[n]s, (2) guest motions in the CB[n] cavity, and (3) ingression, egression and threading mechanisms into, out of and through the macrocycles. We then show that the kinetics of guest release or capture can be controlled using CB[n]-capped mesoporous systems and micelles, or by coupling those processes to the kinetics of ancillary reactions. The last section is devoted to the latest examples of reactions catalyzed and inhibited by CB[n]s.  相似文献   
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The main goal of this research was the preparation and evaluation of the mechanical properties, in vitro biodegradability and cytocompatibility, of natural chitosan/hydroxyapatite/nano magnetite (nano-Fe3O4) composite. Different ratios of these components were investigated, including chitosan/hydroxyapatite: 4/4 (S1), chitosan/hydroxyapatite: 4/6 (S2), and chitosan/hydroxyapatite: 6/4 (S3). Mechanical properties of fabricated composites were examined using bending and compression tests before immersion, and after 2 and 9 weeks of immersion in the Ringer's solution. Scanning electron microscope (SEM) was employed for observing the bending fracture surface and analyzing the degradation morphology. Human mesenchymal stem cells (hMSC) were also cultured on the samples in order to assess the cytocompatibility. The obtained results revealed that S1 had the highest bending strength before immersion, while S3 had the highest bending strength after 9 weeks immersion. Compressive strength of S2 was greater than that of S1 and S3 not only before immersion, but also after 9 weeks immersion. Although the bio-minerals were deposited on the surface of all samples during the immersion in Ringer's solution, S2 appeared to have the highest quantity of bio-minerals. According to the weight loss percentage (ΔW(%)), the biodegradation resistance of S1 was the lowest. Finally, the cytocompatibility of S1 was greater than that of S2 and S3.  相似文献   
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We have determined the in vitro DNA damage distribution induced by 254 mm UV in the human hprt gene. The sequence-specific nature of the DNA damage for both main classes of UV-induced photoproducts, i.e., cyclobutane pyrimidine dimers (CPDs) and the pyrimidine <6-4> pyrimidone photoproducts (64PyPy), was evaluated. Utilizing an automated DNA sequencer plus auxiliary software, semi-automated analyses were performed for peak quantitation and retention-time to sequence-position correlation. 64PyPy were predominantly formed at 5'-YTC-3' sites (p < 0.02; where Y = C,T). The effect of the 3'flanking nucleotide on the 64PyPy formation at 5'-TC-3' sites was 64PyPy at 5'-TCT-3' sites were induced at lower frequencies compared to 5'-TCM-3' sites (where M = A or C; p < 0.03). No effect of flanking nucleotides was detected for CPDs recovered at 5'-TT-3' sites. Sites of mutations in the hprt gene were compared to the sites of DNA damage. Two regions of frequently mutated nucleotides corresponded to sites of high deposition of damage. The two sites either had a high frequency of CPDs or 64PyPy, which implicated both types of photoproducts as premutagenic lesions.  相似文献   
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