nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
A chemiluminescent platform for smartphone monitoring of H2O2 in human exhaled breath condensates
|
Quimbar, Miguel E. |
|
2016 |
109 |
C |
p. 123-130 8 p. |
artikel |
2 |
A microdialysis method to measure in vivo hydrogen peroxide and superoxide in various rodent tissues
|
La Favor, Justin D. |
|
2016 |
109 |
C |
p. 131-140 10 p. |
artikel |
3 |
Anthracene-based fluorescent nanoprobes for singlet oxygen detection in biological media
|
Bresolí-Obach, Roger |
|
2016 |
109 |
C |
p. 64-72 9 p. |
artikel |
4 |
Approaches to unravel pathways of reactive oxygen species in the photoinactivation of bacteria induced by a dicationic fulleropyrrolidinium derivative
|
Gsponer, Natalia S. |
|
2016 |
109 |
C |
p. 167-174 8 p. |
artikel |
5 |
Automated image analysis for quantification of reactive oxygen species in plant leaves
|
Sekulska-Nalewajko, Joanna |
|
2016 |
109 |
C |
p. 114-122 9 p. |
artikel |
6 |
Comparison of different methods to study effects of silver nanoparticles on the pro- and antioxidant status of human keratinocytes and fibroblasts
|
Ahlberg, Sebastian |
|
2016 |
109 |
C |
p. 55-63 9 p. |
artikel |
7 |
Corrigendum to “Measuring the micromechanical properties of embryonic tissues” [Methods 94 (2016) 120–128]
|
Chevalier, Nicolas R. |
|
2016 |
109 |
C |
p. 203- 1 p. |
artikel |
8 |
Cover 1
|
|
|
2016 |
109 |
C |
p. OFC- 1 p. |
artikel |
9 |
Current methods to unravel ROS biology
|
Espada, Jesús |
|
2016 |
109 |
C |
p. 1-2 2 p. |
artikel |
10 |
Detection and characterisation of radicals using electron paramagnetic resonance (EPR) spin trapping and related methods
|
Davies, Michael J. |
|
2016 |
109 |
C |
p. 21-30 10 p. |
artikel |
11 |
Editorial Board
|
|
|
2016 |
109 |
C |
p. IFC- 1 p. |
artikel |
12 |
Effects on detection of radical formation in skin due to solar irradiation measured by EPR spectroscopy
|
Albrecht, Stephanie |
|
2016 |
109 |
C |
p. 44-54 11 p. |
artikel |
13 |
Establishing the subcellular localization of photodynamically-induced ROS using 3,3′-diaminobenzidine: A methodological proposal, with a proof-of-concept demonstration
|
Stockert, Juan C. |
|
2016 |
109 |
C |
p. 175-179 5 p. |
artikel |
14 |
Exerting better control and specificity with singlet oxygen experiments in live mammalian cells
|
Westberg, Michael |
|
2016 |
109 |
C |
p. 81-91 11 p. |
artikel |
15 |
Generation of ROS mediated by mechanical waves (ultrasound) and its possible applications
|
Duco, Walter |
|
2016 |
109 |
C |
p. 141-148 8 p. |
artikel |
16 |
In situ production of ROS in the skin by photodynamic therapy as a powerful tool in clinical dermatology
|
Fonda-Pascual, Pablo |
|
2016 |
109 |
C |
p. 190-202 13 p. |
artikel |
17 |
In vivo ROS and redox potential fluorescent detection in plants: Present approaches and future perspectives
|
Ortega-Villasante, Cristina |
|
2016 |
109 |
C |
p. 92-104 13 p. |
artikel |
18 |
Methods for the detection of reactive oxygen species employed in the identification of plant photosensitizers
|
Mamone, Leandro |
|
2016 |
109 |
C |
p. 73-80 8 p. |
artikel |
19 |
Mitochondrial flashes: From indicator characterization to in vivo imaging
|
Wang, Wang |
|
2016 |
109 |
C |
p. 12-20 9 p. |
artikel |
20 |
Practical guide for dynamic monitoring of protein oxidation using genetically encoded ratiometric fluorescent biosensors of methionine sulfoxide
|
Péterfi, Zalán |
|
2016 |
109 |
C |
p. 149-157 9 p. |
artikel |
21 |
Quantification of hydrogen peroxide in plant tissues using Amplex Red
|
Chakraborty, Sourav |
|
2016 |
109 |
C |
p. 105-113 9 p. |
artikel |
22 |
Quantifying ROS levels using CM-H2DCFDA and HyPer
|
Oparka, Monika |
|
2016 |
109 |
C |
p. 3-11 9 p. |
artikel |
23 |
Switching on a transient endogenous ROS production in mammalian cells and tissues
|
Carrasco, Elisa |
|
2016 |
109 |
C |
p. 180-189 10 p. |
artikel |
24 |
Use of fluorescent probes for ROS to tease apart Type I and Type II photochemical pathways in photodynamic therapy
|
Garcia-Diaz, Maria |
|
2016 |
109 |
C |
p. 158-166 9 p. |
artikel |
25 |
Use of spin traps to detect superoxide production in living cells by electron paramagnetic resonance (EPR) spectroscopy
|
Abbas, Kahina |
|
2016 |
109 |
C |
p. 31-43 13 p. |
artikel |