HPAA 2 (CAS 23783-26-8)
Hydroxyphosphonoacetic acid
CAS 23783-26-8 · C2H5O6P · MW 156.03 g/mol
Caricamento molecola...
Letteratura scientifica
Related literature
20 artykułów · 17 open access · Źródła: PubMed, OpenAlex, Semantic Scholar
📈 Timeline publikacji (20 artykułów)
Wysokość słupka = liczba artykułów w roku. Hover dla szczegółów.
Jianping Wang, Geling Yang, Keying Zhang et al. (2019) · Poultry Science
AI Summary
Under low temperature, DL‐HMTBA supplementation at 0.51% upregulated gene expression of GSH synthesis and Met transsulfuration pathway in liver and lung to increase the antioxidant capacity, and then mitigate the negative effects of cold stress for broilers.
Under low temperature, DL‐HMTBA supplementation at 0.51% upregulated gene expression of GSH synthesis and Met transsulfuration pathway in liver and lung to increase the antioxidant capacity, and then mitigate the negative effects of cold stress for broilers.
Chenxi Yi, Benfeng Zhu (2019) · International Journal of Electrochemical Science
M. Harnden, P. Wyatt, M. R. Boyd et al. (1990)
Yoshihiro Yajima, Akiko Tanaka, Meihan Nonoyama (1976) · Virology
Lei Li, Kelly M Murphy, Uliana Kanevets et al. (2005) · Genetics
Yechiel Becker, Yael Asher, Yaffa Cohen et al. (1977) · Antimicrobial Agents and Chemotherapy
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Jagoda Szyszkowiak, Paulina Majewska (2014) · BioTechnologia
Jesus A Acosta, A. Hintz, Bradley V Lawrence et al. (2025) · Journal of Animal Science
Jesus A Acosta Camargo, Ping Ren, Ashley Provin et al. (2023) · Journal of Animal Science
AI Summary
Zn-MHAC delivered more Zn to physiologically important tissues that support productivity and health of pigs than Zn-AAC, and no interactions between trace mineral source and isotope dose for any tested variables were observed.
Zn-MHAC delivered more Zn to physiologically important tissues that support productivity and health of pigs than Zn-AAC, and no interactions between trace mineral source and isotope dose for any tested variables were observed.
Samiha Sharlin, Harold W. Hatch, Daniel W. Siderius et al. (2026) · arXiv (2608.28516v1)
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Zacharias Liasi, Ridha Zerdoumi, Felix Thelen et al. (2026) · arXiv (2608.28347v1)
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Uddipta Sarma, Ganesh Madabattula (2026) · arXiv (2608.25492v1)
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Tingting Zhang, Jean-François Le Meins, Jean-Paul Chapel et al. (2026) · arXiv (2608.19810v1)
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Franziska Schölzel, Aybüke Gülkaya, Rico Ehrler et al. (2026) · arXiv (2608.17608v1)
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Arturo Ramírez-Porras, Isaac Prado-Bermúdez (2026) · arXiv (2608.13802v1)
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Gabriela B. Correa, Charlles R. A. Abreu, Nisanth N. Nair et al. (2026) · arXiv (2608.12691v1)
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Ian C. Bourg, Minh Thê Hoang Ngoc, Thomas R. Underwood et al. (2026) · arXiv (2608.12562v1)
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Roman Joeres, Ilya Senatorov, Anastasia Kolchina et al. (2026) · arXiv (2608.12090v2)
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Andrea J. Yool (2026) · arXiv (2608.10440v1)
Oksana A. Bondar, Thomas B. R. Robertson (2026) · arXiv (2608.10044v1)
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Dane z PubMed (NIH NLM), OpenAlex (CC0), Semantic Scholar (AI2). AI Summary wygenerowane przez Semantic Scholar TLDR. Artykuły z ikoną wymagają płatnego dostępu.
