distilled water (in the case of blank sample) and 1 mL
BioMaxima-glucose reagent, and immediately vortex it.
2. Next, incubate all samples for 20 min at 25 C.
3. Measure absorbance of all samples using UV-VIS spectropho-
tometer at 500 nm.
4. Calculate the values of specific glucose consumption rate
according to following equation:
r∗
glc=cell ¼ Cglc1 Cglc2
X∙Δt
g h1 cell1
where r*
glc/cell is the specific glucose consumption rate, Cglc1,
Cglc2 is the glucose concentration in the culture medium, and
Δt is the time interval between two consecutive measurements
of Cglc.
3.4.5
Activity of Lactate
Dehydrogenase
1. Mix 1 mL of BioMaxima-LDH reagent and 20 μL of filtered
culture medium harvested daily from cultures (in the case of
test samples) or 20 μL of double-distilled water (in the case of
blank sample) in directly in the disposable UV-Vis measuring
cuvette, and vortex it shortly.
2. Next, as soon as it only possible, read the absorbance in 1-min
intervals using UV-Vis spectrophotometer at 340 nm.
3. Calculate the values of activity of lactate dehydrogenase accord-
ing to the following equation:
aLDH ¼ 267:2 ΔA μkat L1
where aLDH is the activity of lactate dehydrogenase, and ΔA is
the absorbance change per minute.
3.4.6
DO and pH Level
Measurement
1. DO and pH level can be automatically measured by miniatur-
ized spot-like sensors built-in inside the bottom of Cellbag
container. The correctness of both values is verified and
certified by the manufacturer of the culture bag according to
setting the blank data for both sensors, which is printed indi-
vidually on each applied Cellbag container, fixed to WAVE
25 system.
4
Notes
1. The most suitable way to transfer suspension of conditioned
microcarriers from Falcon centrifuge tube into Cellbag con-
tainer is manually pipetting them via Screwcap port.
2. Small volume (i.e., ca. 60 mL) of cell–microcarrier suspension
introduced into Cellbag container provides proper conditions
for contact between CP5 cells and beads of microcarrier which
154
Kamil Wierzchowski and Maciej Pilarek