| Literature DB >> 21943045 |
Tono Djuwantono1, Firman F Wirakusumah, Tri H Achmad, Ferry Sandra, Danny Halim, Ahmad Faried.
Abstract
BACKGROUND: The finding of human umbilical cord blood as one of the most likely sources of hematopoietic stem cells offers a less invasive alternative for the need of hematopoietic stem cell transplantation. Due to the once-in-a-life time chance of collecting it, an optimum cryopreservation method that can preserve the life and function of the cells contained is critically needed.Entities:
Year: 2011 PMID: 21943045 PMCID: PMC3196719 DOI: 10.1186/1756-0500-4-371
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
The evaluation results of mononucleated cell viability on samples that were cryopreserved by using slow-cooling and rapid-cooling method
| Viability | Slow-Cooling | Rapid-Cooling | |
|---|---|---|---|
| (in percentage %) | |||
| Mean (SD) | 75.50 (17.53) | 91.92 (7.50) | 0.003 |
| Median | 80.20 | 94.30 | |
| Range | 32.70-93.80 | 77.80-98.93 |
*: p value was calculated by using Wilcoxon signed-rank test
Figure 1The viability of mononucleated cells was evaluated with Trypan blue. The bright round cells (noted by a red arrow) are viable mononucleated cells, whereas the round blue cells (noted by a black arrow) are non-viable mononucleated cells (100× magnification).
Figure 2The MDA standard curve. This curve was then determined by measuring the absorbance of the cell at 586 nm.
The evaluation results of malondialdehyde (MDA) in mononucleated cell populations that were cryopreserved by using slow-cooling and rapid-cooling method
| Variable | Slow-Cooling | Rapid-Cooling | |
|---|---|---|---|
| MDA (in μM) | |||
| Mean (SD) | 33.25 (10.67) | 56.45 (9.68) | < 0.001 |
| Median | 35.11 | 57.92 | |
| Range | 18.96-51.24 | 39.27-74.48 |
*: p value was calculated by using dependent t-test
Figure 3One result of the TUNEL assay on cells that were previously cryopreserved. The percentage of cells experiencing DNA fragmentation (M1) was ± 1.15%, while that of cells that did not experience DNA fragmentation was 98.85%.
The percentage of apoptosis in mononucleated cell populations that were cryopreserved by using slow-cooling and rapid-cooling method
| Variable | Slow-Cooling | Rapid-Cooling | |
|---|---|---|---|
| Apoptosis (%) | |||
| Mean (SD) | 3.80 (3.06) | 5.18 (3.55) | 0.138 |
| Median | 3.29 | 4.78 | |
| Range | 0.67-9.67 | 1.20-14.41 |
*: p value was calculated by using dependent t-test
Figure 4Analysis of CD34. The results of the CD34+ cell enumeration showed that the number of CD34+ cells in the samples that were previously cryopreserved by the slow-cooling method is 44.99 cell/μL.
The results of the CD34+ enumeration in mononucleated cell populations that were cryopreserved by using slow-cooling and rapid-cooling method
| Variable | Slow-Cooling | Rapid-Cooling | |
|---|---|---|---|
| Number of CD34+ cells (cell/μL) | |||
| Rerata (SD) | 23.32 (12.23) | 2.47 (3.74) | 0.001 |
| Median | 22.05 | 0.90 | |
| Rentang | 7.62-53.39 | 0.11-13.95 |
*: p value was calculated by using Wilcoxon signed-rank test