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Benzene carcinogenic ability has been reported, and chronic exposure to benzene can be one of the risk elements for solid cancers and hematological neoplasms. Benzene is acknowledged as a myelotoxin, and it is able to augment the risk for the onset of acute myeloid leukemia, myelodysplastic syndromes, aplastic anemia, and lymphomas. Possible mechanisms of benzene initiation of hematological tumors have been identified, as a genotoxic effect, an action on oxidative stress and inflammation and the provocation of immunosuppression. However, it is becoming evident that genetic alterations and the other causes are insufficient to fully justify several phenomena that influence the onset of hematologic malignancies. Acquired epigenetic alterations may participate with benzene leukemogenesis, as benzene may affect nuclear receptors, and provoke post-translational alterations at the protein level, thereby touching the function of regulatory proteins, comprising oncoproteins and tumor suppressor proteins. DNA hypomethylation correlates with stimulation of oncogenes, while the hypermethylation of CpG islands in promoter regions of specific tumor suppressor genes inhibits their transcription and stimulates the onset of tumors. The discovery of the systems of epigenetic induction of benzene-caused hematological tumors has allowed the possibility to operate with pharmacological interventions able of stopping or overturning the negative effects of benzene.
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http://dx.doi.org/10.3390/cancers13102392 | DOI Listing |
Chem Sci
August 2025
Inorganic and Organometallic Chemistry, Friedrich-Alexander-Universität Erlangen-Nürnberg Egerlandstraße 1 91058 Erlangen Germany
Mechanochemical reduction of β-diketiminate (BDI) barium iodide precursors with K/KI resulted in the first barium inverse sandwich complexes containing the benzene dianion in yields of up to 54%. This most challenging isolation of highly reactive (BDI)Ba-(CH)-Ba(BDI) complexes, completes the family of heavier benzene inverse sandwich complexes and allows for a comparison of trends in the series from Mg, Ca, Sr to Ba. Syntheses, stabilities, structures, electronic states and reactivities of the full range are compared.
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August 2025
Department of Chemistry, University of Houston Houston Texas 77204 USA
Quantum mechanical tunnelling significantly influences the reactivity of strained ring systems, yet strategies for controlling such reactivity remain largely unexplored. Here, we identify geminal hyperconjugation, , electron delocalization between σ-bonds attached to a common atom, as a decisive electronic factor in governing heavy-atom tunnelling reactions involving three-membered rings. We illustrate this through a case study of the oxepin (1') ⇌ benzene oxide (1) equilibrium, recently shown to undergo solvent-controlled tunnelling at 3 K (, 2020, , 20318).
View Article and Find Full Text PDFActa Crystallogr E Crystallogr Commun
September 2025
Chemistry and Biochemistry Department Missouri State University,Springfield MO 65897 USA.
The structure of the 1:1 cocrystal formed between 1-bromo-3,5-di-nitro-benzene and ,-di-methyl-pyridin-4-amine that features a C-Br⋯N halogen bond is reported. The cocrystal, CHBrNO·CHN, crystalizes in the monoclinic space group 2/ with = 4. Hirshfeld surface analysis and inter-molecular inter-action energies within the cocrystal structure are reported.
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September 2025
Department of Organic Chemistry University of Madras, Guindy Campus Chennai-600 025 Tamilnadu India.
Two new benzene-sulfonyl derivatives, -(2-iodo-phen-yl)benzene-sulfonamide, CHINO, (), and -(4,5-di-fluoro-2-iodo-phen-yl)benzene-sulfonamide, CHFINOS, () were synthesized and structurally characterized. In both mol-ecular structures, the conformation of the N-C bond in the -SO-NH-C segment is relative to the S=O bond. For (), the crystal packing is dominated by N-H⋯O hydrogen-bonding inter-actions that link the mol-ecules into chains extending parallel to [010].
View Article and Find Full Text PDFIUCrdata
August 2025
University Mainz, Duesbergweg 10-14, 55099 Mainz, Germany.
The crystal structure of an ,-dialkynyl-tosyl-aniline, CHNOS, is presented. Two essentially planar and nearly parallel branches are connected to the aniline unit and the angle between the alkynes amounts to 26 (4)°. Weak intra-molecular aromatic π-π stacking occurs.
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