2-甲基呋喃-宏业控股集团有限公司-二氧化硫脲 (CAS 534-22-5)

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2-甲基呋喃-宏业控股集团有限公司-二氧化硫脲. CAS 534-22-5.

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Przegląd chemiczny: 2-甲基呋喃-宏业控股集团有限公司-二氧化硫脲 (CAS 534-22-5) — Hongye
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BADANIA NAUKOWE

[1]Semantic Scholar2026
K. Condon, John Schieffelin, Margarita Silio. (2026). "P-534. Comparison of Concurrent (Same or Next-Day) Conventional Microbial Testing to Next Generation Sequencing (NGS) Results: Review of Pediatri
[2]PubMed2025
Bohlen D, Appel J, Eichel L et al.. (2025). "New insights into methylfuran metabolism.". Toxicology letters. https://doi.org/10.1016/j.toxlet.2025.05.006
[3]PubMed2024
Schäfer V, Stegmüller S, Becker H et al.. (2024). "Reactivity of the 2-Methylfuran Phase I Metabolite 3-Acetylacrolein Toward DNA.". Journal of agricultural and food chemistry. https://doi.org/10.1021
[4]PubMed2024
Bohlen D, Karlstetter D, Leidner J et al.. (2024). "Dosimetry of human exposure to furan and 2-methylfuran by monitoring urinary biomarkers.". Food and chemical toxicology : an international journal p
[5]PubMed2024
Schäfer V, Stegmüller S, Becker H et al.. (2024). "Metabolic Activation of 2-Methylfuran to Acetylacrolein and Its Reactivity toward Cellular Proteins.". Chemical research in toxicology. https://doi.o
[6]PubMed2024
Han Y, Cheng S, Guo F et al.. (2024). "Mechanistic and predictive studies on the oxidation of furans by cytochrome P450: A DFT study.". Ecotoxicology and environmental safety. https://doi.org/10.1016/
[7]PubMed2024
Cao L, Miao Y, Liu Y et al.. (2024). "Genotoxic mode of action and threshold exploration of 2-methyl furan under 120-day sub-chronic exposure in male Sprague-Dawley rats.". Ecotoxicology and environme
[8]PubMed2024
Sandjong Sayon DR, Fakih A, Mercier F et al.. (2024). "Home practices can mitigate furan and derivatives in vegetable-based infant meals.". Food research international (Ottawa, Ont.). https://doi.org/
📚 Naukowe referencje (Chicago Author-Date) 20 refs · 3 baz

MOLECULE Bibliografia per-CAS (live z 13+ baz)

Źródła: db:semantic_scholar (6) · db:pubmed (12) · db:crossref (2)

  1. db:semantic_scholar K. Condon, John Schieffelin, Margarita Silio. (2026). "P-534. Comparison of Concurrent (Same or Next-Day) Conventional Microbial Testing to Next Generation Sequencing (NGS) Results: Review of Pediatric Samples over 4-Years (2020-2024)". Open Forum Infectious Diseases. https://doi.org/10.1093/ofid/ofaf695.749
  2. db:pubmed Bohlen D, Appel J, Eichel L et al.. (2025). "New insights into methylfuran metabolism.". Toxicology letters. https://doi.org/10.1016/j.toxlet.2025.05.006
  3. db:pubmed Schäfer V, Stegmüller S, Becker H et al.. (2024). "Reactivity of the 2-Methylfuran Phase I Metabolite 3-Acetylacrolein Toward DNA.". Journal of agricultural and food chemistry. https://doi.org/10.1021/acs.jafc.4c07280
  4. db:pubmed Bohlen D, Karlstetter D, Leidner J et al.. (2024). "Dosimetry of human exposure to furan and 2-methylfuran by monitoring urinary biomarkers.". Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association. https://doi.org/10.1016/j.fct.2024.114774
  5. db:pubmed Schäfer V, Stegmüller S, Becker H et al.. (2024). "Metabolic Activation of 2-Methylfuran to Acetylacrolein and Its Reactivity toward Cellular Proteins.". Chemical research in toxicology. https://doi.org/10.1021/acs.chemrestox.4c00083
  6. db:pubmed Han Y, Cheng S, Guo F et al.. (2024). "Mechanistic and predictive studies on the oxidation of furans by cytochrome P450: A DFT study.". Ecotoxicology and environmental safety. https://doi.org/10.1016/j.ecoenv.2024.116460
  7. db:pubmed Cao L, Miao Y, Liu Y et al.. (2024). "Genotoxic mode of action and threshold exploration of 2-methyl furan under 120-day sub-chronic exposure in male Sprague-Dawley rats.". Ecotoxicology and environmental safety. https://doi.org/10.1016/j.ecoenv.2024.116125
  8. db:pubmed Sandjong Sayon DR, Fakih A, Mercier F et al.. (2024). "Home practices can mitigate furan and derivatives in vegetable-based infant meals.". Food research international (Ottawa, Ont.). https://doi.org/10.1016/j.foodres.2024.114916
  9. db:pubmed Sandjong Sayon DR, Fakih A, Mercier F et al.. (2024). "Impact of formulation and home storage conditions on the content of furan and derivatives in powdered infant formula.". Food research international (Ottawa, Ont.). https://doi.org/10.1016/j.foodres.2024.115263
  10. db:pubmed Roline Sandjong Sayon D, Fakih A, Mercier F et al.. (2024). "Targeted quantification and untargeted exploration of furan and derivatives in infant food by headspace extraction-gas chromatography-Q Exactive Orbitrap mass spectrometry.". Food research international (Ottawa, Ont.). https://doi.org/10.1016/j.foodres.2024.114614
  11. db:semantic_scholar Ivonne Lozano-Muñoz, S. Muñoz, N. F. Díaz et al.. (2020). "Nutritional Enhancement of Farmed Salmon Meat via Non-GMO Nannochloropsis Gaditana: Eicosapentaenoic Acid (EPA, 20:5 n-3), Docosapentaenoic Acid (DPA, 22:5 n-3) and Vitamin D3 for Human Health". Molecules. https://doi.org/10.3390/molecules25204615
  12. db:pubmed Sheu R, Stönner C, Ditto JC et al.. (2020). "Human transport of thirdhand tobacco smoke: A prominent source of hazardous air pollutants into indoor nonsmoking environments.". Science advances. https://doi.org/10.1126/sciadv.aay4109
  13. db:pubmed Huo J, Liu Y, Zhu X et al.. (2020). "2-Methylfuran: Toxicity and genotoxicity in male Sprague-Dawley rats.". Mutation research. Genetic toxicology and environmental mutagenesis. https://doi.org/10.1016/j.mrgentox.2020.503209
  14. db:crossref (2018). "Corrigendum". Hemodialysis International. https://doi.org/10.1111/hdi.12711
  15. db:pubmed Condurso C, Cincotta F, Verzera A. (2018). "Determination of furan and furan derivatives in baby food.". Food chemistry. https://doi.org/10.1016/j.foodchem.2017.12.091
  16. db:semantic_scholar Luís Pimentel, M. Major. (2016). "Key success factors for quality management implementation: evidence from the public sector". https://doi.org/10.1080/14783363.2015.1055239
  17. db:semantic_scholar M. Rakowski, M. Pantouvaki, P. Heyn et al.. (2015). "International Solid-State Circuits Conference ISSCC 2015 / SESSION 22 / HIGH-SPEED OPTICAL LINKS / 22 . 5 22 . 5 A 4 × 20 Gb / s WDM Ring-Based Hybrid CMOS Silicon Photonics Transceiver".
  18. db:crossref (2013). "Getting serious about TB". Veterinary Record. https://doi.org/10.1136/vr.f7270
  19. db:semantic_scholar M. Tsuji, S. Murota, I. Morita. (2003). "Docosapentaenoic acid (22:5, n-3) suppressed tube-forming activity in endothelial cells induced by vascular endothelial growth factor.". Prostaglandins, Leukotrienes and Essential Fatty Acids. https://doi.org/10.1016/S0952-3278(03)00025-5
  20. db:semantic_scholar T. Kanayasu‐Toyoda, I. Morita, S. Murota. (1996). "Docosapentaenoic acid (22:5, n-3), an elongation metabolite of eicosapentaenoic acid (20:5, n-3), is a potent stimulator of endothelial cell migration on pretreatment in vitro.". Prostaglandins, Leukotrienes and Essential Fatty Acids. https://doi.org/10.1016/S0952-3278(96)90045-9
Status regulacyjny substancji
Brak wpisów dla tego CAS w sprawdzonych wykazach ograniczeń (lista kandydacka SVHC, REACH Załącznik XVII; zbiory niepełne - nie jest to potwierdzenie zgodności). Klasyfikacja CLP i status transportowy (ADR): patrz sekcja GHS oraz karta charakterystyki (SDS).
🧪 Dane chemiczne
Numer CAS
534-22-5
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2-甲基呋喃-宏业控股集团有限公司-二氧化硫脲 — CAS 534-22-5. Listed by Hongye. Prepared from the supplier’s public catalogue; not verified against their internal data.

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