Fetal bovine serum (FBS) is a gold standard as a supplement to cell and tissue culture media. This is due to a large number of Growth Factor (GF) contained in FBS. However, the use of FBS is at risk of transferring endotoxins, prions, bacteria and viruses from animals to humans, so it is risky to be used on cell therapy. Human Platelet Lysate (HPL) is a medium that can be developed as an alternative cell growth medium. The advantage of HPL is that it does not contain aggregate platelets so it does not cause the cells to clot. This condition causes HPL to be used as a substitute medium replacing FBS for cell propagation. The use of HPL for cell propagation has been widely reported. However, the use of HPL in cancer cells has not been found. Thus, this study aims to see the effectiveness of HPL as a T47D cell culture medium. The study began with donor selection with criteria for the male sex, the blood type O, the age ≤35 years. Furthermore, the Platelet Concentrate (PC) was processed into HPL then measured pH, total protein and albumin levels. The cell viability was measured using the MTT assay to determine the ability of cell proliferation when propagation using HPL. The doubling time test was carried out as in the cell proliferation test. However, the incubation was carried out for 24 h, 48 h and 72 h and the HPL concentration used was 5%. The result shows that HPL 10% and 20% ability to increase proliferation better than the FBS 10%. HPL with a 5% concentration ability to shortens the doubling time than FBS 10% (doubling time is less than 19.94 h). It this study, cell proliferation is influenced by the pH of HPL and total protein but not by the amount albumin.Keywords: Human Platelet Lysate, Proliferation, T47D cell line, total protein, albumin.
Background: Platelet concentrate (PC) has a short shelf life (5 days). Expired PC cannot be used for clinical purposes. PC is used for human platelet lysate (HPL) production, which was found to be more effective than FBS at increasing T47D cell proliferation. HPL production using expired PC has not been reported. This study aimed to investigate whether the use of HPL produced from expired PC (storage duration >5 days) can increase the proliferation of T47D cells in vitro.Materials and methods: Expired PC samples with a shelf life of 7 and 11 days were used to produce HPL via freeze/thaw method. pH, total protein content, glucose and albumin levels were measured. The 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay was used to measure proliferation rate and doubling time of HPL-treated T47D cells.Results: After HPL production, the glucose level was influenced by the pH (p=0.003), and albumin level was influenced by total protein content (p=0.030). HPL stored for 7 and 11 days increased cell proliferation rate by 1.41 and 1.80 times higher than 10% FBS, respectively. HPL produced from expired PC did not cause morphological abnormality of the cells. In this study, the glucose levels affected cell proliferation (p=0.030). High glucose levels inhibited T47D cell proliferation.Conclusion: Expired PC can be used as a potential material for HPL production, since HPL produced from expired PC increases cell proliferation rate and shortens cell doubling time.Keywords: cell proliferation, human platelet lysate, platelet concentrate, thrombocyte, T47D
Human identification is the recognition of individuals based on some physical characteristics that are unique to individuals. Fingerprints are constant, individuality and form the most reliable criteria for identification. ABO-Rhesus Blood group is also one method used to identify someone, because blood type is inheritance. This research was conducted to see the description of ABO-Rhesus blood group and fingerprint patterns students D-3 Teknologi Transfusi Darah STIKES Guna Bangsa Yogyakarta. In this study using quantitative cross sectional descriptive research and blood group samples were taken using the slide method and fingerprint patterns were taken using the fingerprint method. In this study there were 78 samples, 58 females (74.36%) and 20 males (25.64%). The ABO blood group that is dominant is blood type O(35.90%), followed by blood group A(29.49%), B(28.21%), and AB(6.41%). The dominant Rhesus blood type is the positive Rhesus blood group. The percentage of fingerprint patterns in this study was loop 61.03%, whorl 37.56%, and arch 1.41%. The characteristics of the right and left hand fingerprint patterns have the same percentage of arch fingerprint patterns found on the index finger. Whorl fingerprint patterns are found on the ring finger. Loop fingerprint patterns are found on the little finger.
Streptomyces sp. GMR22 is local isolate from Wanagama 1 Forest in Yogyakarta. They have the potential to be developed to produce active compounds because have PKS and NRPS genes.The active compounds from isolation are strongly influenced by various factors, one of them is extraction techniques. Effect difference of extraction technique will be affected by the quality of secondary metabolites produced.The purpose of this study was to compare the cytotoxicity effects of secondary metabolites of Streptomyces sp. GMR22 which have extracted with different stages from previous studies. The extraction technique was carried out by multilevel separatory funnel extraction methods, which was first extracted using non-polar solvent (n-hexane) and then extracted using semi-polar solvent (ethyl acetate). This research is important because in previous studies (separatory funnel only extracted using ethyl acetate) with the use of the lowest concentration in the dengue virus antiviral test (further test) caused 100% of deaths in BHK-21 cells.This study indicate that multilevel extraction result in lower CC50 value than previous studies. There are 49.160 µl/ml (n-hexane extract) and 284.56 µl/ml (ethyl acetate extract) while water extract is 464,38 µl/ml. FTIR compound analysis show that the three extracts produced have different spectrum patterns, especially in the n-hexane and ethyl acetate extract. Value of CC50 is not too high, it is expected that the secondary metabolites contained in the extracts can be used for further analysis such as antiviral testing because it is safe for normal host cells such as BHK-21 cells
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