serum |
80 µM |
|
100 nM |
|
(4) |
|
130 nM |
|
(4) |
|
40 nM |
|
(4) |
|
|
|
130 nM |
|
(3) |
|
400 nM |
|
(3) |
|
50 nM |
|
(3) |
|
|
|
|
|
|
|
320 nM |
|
(1) |
|
35 nM |
|
(5) |
|
|
|
60 nM |
2.5 nM |
(8) |
|
4.0 nM |
|
(8) |
|
43 nM |
|
(8) |
cerebrospinal fluid |
|
180 nM |
|
(2) |
|
150 nM |
|
(2) |
|
90 nM |
|
(2) |
|
|
|
230 nM |
|
(6) |
|
120 nM |
|
(6) |
|
140 nM |
|
(6) |
brain extracellular space |
|
750 nM |
|
(5) |
|
420 nM |
|
(5) |
|
480 nM |
|
(5) |
cytoplasm (fibroblasts) |
|
29 µM |
|
(4) |
|
159 µM |
|
(4) |
|
635 µM |
|
(4) |
cytoplasm (ascites cells) |
|
43 µM |
|
(4) |
|
430 µM |
|
(4) |
|
602 µM |
|
(4) |
hepatocytes |
|
|
|
|
|
|
1150 µM |
|
(9) |
|
880 µM |
|
(9) |
brain (Müller cells) |
|
|
|
|
|
|
|
|
|
800 µM |
|
(7) |
urine |
|
|
60.2 nM |
2.5 nM |
(8) |
|
4.0 |
1.7 nM |
(8) |
|
43.1 nM |
1.3 nM |
(8) |
daily loss |
|
|
90.3 nmoles |
3.7 nmoles |
(8) |
|
6.0 nmoles |
2.5 nmoles |
(8) |
|
64.6 nmoles |
1.9 nmoles |
(8) |
References
|
(1) |
Marton, L.J.; Russell, D.H.; Levy, C.C. Clin. Chem.
1973, 9, 923–926 |
(2) |
Marton, L.J.; Heby, O.; Levin, V.A.; Lubich, W.P.; Crafts, D.C.; Wilson, C.B. Cancer Res.
1976, 36, 973–977 |
(3) |
Bartos, F.; Bartos, D.; Grettie, D.P.; Campbell, R.A. Biochem. Biophys. Res. Commun.
1977, 75, 4 |
|
Seiler, N.; Atanassov, C.L. Progr. Drug Res. 1994, 43, 87–141 |
(4) |
Morgan, D.M.L. Biochem. Soc. Trans. 1990, 18, 1080–1084 |
(5) |
Dot, J.; Lluch, M.; Blanco, I.; Rodríguez-Alvarez, J. J. Neurochem. 2000, 75, 1917–1926 |
|
Dot, J.; Danchev, N.; Blanco, I.; Rodríguez-Alvarez, J. Neuroreport 2002, 13, 1083–108 |
(6) |
Ekegrena, T.; Gomes-Trolin, C. Anal. Biochem.
2005, 338, 179–185 |
(7) |
Kucheryavykh, Y.V.; Shuba, Y.M.; Antonov, S.M.; Inyushin, M.Y.; Cubano, L.; Pearson, W.L.; Kurata, H.; Reichenbach, A.; Veh, R.W.; Nichols, C.G.; Eaton, M.J.; Skatchkov, S.N. Glia 2008, 56, 775–790 |
(8) |
Liu, R.; Li, Q.; Ma, R.; Lin, X.; Xu, H.; Bi, K. Anal. Chim. Acta 2013, 791, 36–45 |
(9) |
Igarashi, K.; Kashiwagi, K. Int. J. Biochem. Cell Biol.
2019, 107, 104–115 |