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1.
Org Lett ; 24(14): 2750-2755, 2022 04 15.
Artigo em Inglês | MEDLINE | ID: mdl-35377671

RESUMO

We report here the application of silyl enol ether moieties as efficient alkene coupling partners within cobalt-mediated intramolecular Pauson-Khand reactions. This cyclization strategy delivers synthetically valuable oxygenated cyclopentenone products in yields of ≤93% from both ketone- and aldehyde-derived silyl enol ethers, incorporates both terminal and internal alkyne partners, and delivers a variety of decorated systems, including more complex tricyclic structures. Facile removal of the silyl protecting group reveals oxygenated sites for potential further elaboration.


Assuntos
Éter , Éteres , Álcoois , Ciclização , Ciclopentanos , Éteres/química , Estrutura Molecular
2.
Int J Mol Sci ; 23(2)2022 Jan 14.
Artigo em Inglês | MEDLINE | ID: mdl-35055062

RESUMO

Theoretical evaluations indicate the radiation weighting factor for thermal neutrons differs from the current International Commission on Radiological Protection (ICRP) recommended value of 2.5, which has radiation protection implications for high-energy radiotherapy, inside spacecraft, on the lunar or Martian surface, and in nuclear reactor workplaces. We examined the relative biological effectiveness (RBE) of DNA damage generated by thermal neutrons compared to gamma radiation. Whole blood was irradiated by 64 meV thermal neutrons from the National Research Universal reactor. DNA damage and erroneous DNA double-strand break repair was evaluated by dicentric chromosome assay (DCA) and cytokinesis-block micronucleus (CBMN) assay with low doses ranging 6-85 mGy. Linear dose responses were observed. Significant DNA aberration clustering was found indicative of high ionizing density radiation. When the dose contribution of both the 14N(n,p)14C and 1H(n,γ)2H capture reactions were considered, the DCA and the CBMN assays generated similar maximum RBE values of 11.3 ± 1.6 and 9.0 ± 1.1, respectively. Consequently, thermal neutron RBE is approximately four times higher than the current ICRP radiation weighting factor value of 2.5. This lends support to bimodal peaks in the quality factor for RBE neutron energy response, underlining the importance of radiological protection against thermal neutron exposures.


Assuntos
Modelos Teóricos , Nêutrons , Eficiência Biológica Relativa , Aberrações Cromossômicas/efeitos da radiação , Dano ao DNA/efeitos da radiação , Relação Dose-Resposta à Radiação , Humanos , Linfócitos/metabolismo , Linfócitos/efeitos da radiação , Testes para Micronúcleos/métodos
3.
Int J Radiat Biol ; 95(10): 1361-1371, 2019 10.
Artigo em Inglês | MEDLINE | ID: mdl-30582711

RESUMO

Health risks associated with the exposure of humans to low-dose ionizing radiation are currently estimated using the Linear-No-Threshold model. Over the last few decades, however, this model has been widely criticized for inconsistency with a large body of experimental evidence. Substantial efforts have been made to delineate biological mechanisms and health-related outcomes of low-dose radiation. These include a large DOE-funded Low Dose program operated in the 2000s, as well as the EU funded programs, previously NOTE and DOREMI and currently MELODI. Although not as widely known, the Atomic Energy of Canada Limited (AECL) in Chalk River, operated a low-dose radiobiology program since as early as 1948. The Canadian Nuclear Laboratories (CNL), the successor to AECL since 2015, has expanded this program into new areas making it the world's most robust, centrally coordinated and long-lived research efforts to delineate the biological effects of low-dose radiation. The purpose of this review is to provide a high-level overview of the low-dose radiobiology program maintained at CNL while capturing the historical perspectives. Past studies carried out at CNL have substantially influenced the area of low-dose radiobiology, exemplified by highly cited papers showing delays in spontaneous tumorigenesis in low-dose irradiated mice. The current low-dose research program at CNL is not only addressing a wide range of mechanistic questions about the biological effects of low doses - from genetic to epigenetic to immunological questions - but also moving toward novel areas, such as the dosimetry and health consequences of space radiation and the use of low-dose radiation in cancer therapy and regenerative medicine.


Assuntos
Energia Nuclear , Radiobiologia/tendências , Pesquisa/tendências , Algoritmos , Animais , Canadá , Reparo do DNA , Modelos Animais de Doenças , Humanos , Sistema Imunitário , Cooperação Internacional , Modelos Lineares , Camundongos , Mitocôndrias/efeitos da radiação , Neoplasias/radioterapia , Neoplasias Induzidas por Radiação/epidemiologia , Neoplasias Induzidas por Radiação/prevenção & controle , Nêutrons , Radiometria , Espécies Reativas de Oxigênio , Células-Tronco
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