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AT-308 (AT 308)

structure
Also Known As:
AT 308; 3-(4-(1-ethoxycarbonyl)-1-(methylethoxy)phenyl)-5-(3-pyridyl)-1,2,4-oxadiazole; 2-methyl-2-(4-(5-(3-pyridinyl)-1,2,4-oxadiazol-3-yl)phenoxy)propanoic acid, ethyl ester
Networked: 43 relevant articles (4 outcomes, 10 trials/studies)

Relationship Network

Bio-Agent Context: Research Results

Experts

1. Michael, J V: 7 articles (04/2009 - 03/2005)
2. Srinivasan, N K: 6 articles (01/2008 - 03/2005)
3. Su, M-C: 6 articles (01/2008 - 03/2005)
4. Hsueh, K-C: 2 articles (05/2010 - 10/2009)
5. Tsai, F-J: 2 articles (05/2010 - 10/2009)
6. Chen, S-Y: 2 articles (05/2010 - 10/2009)
7. Huang, C-M: 2 articles (05/2010 - 10/2009)
8. Lin, T-H: 2 articles (05/2010 - 10/2009)
9. Chen, D-Y: 2 articles (05/2010 - 10/2009)
10. Harding, L B: 2 articles (01/2008 - 07/2007)

Related Diseases

1. Psoriasis (Pustulosis Palmaris et Plantaris)
2. Shock
01/10/2008 - "The reflected shock tube technique with multipass absorption spectrometric detection (at a total path length of approximately 1.75 m) of OH-radicals at 308 nm has been used to study the dissociation of CF3-radicals [CF3 + Kr --> CF2 + F + Kr (a)] between 1,803 and 2,204 K at three pressures between approximately 230 and 680 Torr. "
08/21/2007 - "The reflected shock tube technique with multi-pass absorption spectrometric detection of OH-radicals at 308 nm (corresponding to a total path length of approximately 4.9 m) has been used to study the reactions, OH + C(2)H(2)--> products (1) and OH + C(2)H(4)--> C(2)H(3) + H(2)O (2). "
07/26/2007 - "The reflected shock tube technique with multipass absorption spectrometric detection of OH radicals at 308 nm, using either 36 or 60 optical passes corresponding to total path lengths of 3.25 or 5.25 m, respectively, has been used to study the bimolecular reactions, OH+CF3H-->CF3+H2O (1) and CF3+H2O-->OH+CF3H (-1), between 995 and 1663 K. "
09/08/2005 - "The reflected shock tube technique with multipass absorption spectrometric detection of OH-radicals at 308 nm, corresponding to a total path length of approximately 2.8 m, has been used to study the reaction CH3 + O2 CH2O + OH. "
03/10/2005 - "The reflected shock tube technique with multipass absorption spectrometric detection of OH radicals at 308 nm has been used to study the reactions OH + CH(4) --> CH(3) + H(2)O and CH(3) + NO(2) --> CH(3)O + NO. Over the temperature range 840-2025 K, the rate constants for the first reaction can be represented by the Arrhenius expression k = (9.52 +/- 1.62) x 10(-11) exp[(-4134 +/- 222 K)/T] cm(3) molecule(-1) s(-1). "
3. Skin Diseases
4. Prostatic Neoplasms (Prostate Cancer)
5. Necrosis

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2. hydroxide ion
3. Tumor Necrosis Factor-alpha (Tumor Necrosis Factor)
4. Interleukin-1beta (Interleukin 1 beta)
5. Beryllium
6. Methanol (Carbinol)
7. 5' Untranslated Regions (5' UTR)
8. DNA Adducts
9. Quartz
10. Psoralens

Related Therapies and Procedures

1. Excimer Lasers
2. Dye Lasers
3. Lasers (Laser)
4. Solid-State Lasers
5. Thrombectomy