Optimization of Cryopreservation Process Using Response Surface Methodology for Chlorella saccharophila and Chlorella zofingiensis
Öz
The preservation of microalgae
in a stable state is a fundamental requirement in pharmaceutical, agricultural,
environmental sciences and different industries. Cryopreservation is widely
stabilized for achieving long-term storage and has been applied to an
increasingly diverse range of microalgae and cell cultures. The continuous storage
of actively growing microalgae strains by routine serial subculture is
relatively time-consuming and this technique has possible contamination risks.
In this study, the optimization of cryopreservation process was carried out for
two different Chlorella strains
using response surface methodology (RSM) with three factors (cryoprotectant
concentration, incubation time and cryopreservation time) including 19 runs. The
optimal cell viability of C. zofingiensis
was found at the dimethyl sulfoxide (DMSO) concentration of 12.89% at the incubation
time of 8.14 min and with the cryopreservation time of 93.45 day, while C.
saccharophila was found at the
DMSO concentration of 12.86 % at the incubation time of 7.99 min and at
cryopreservation time of 95.17 day.
Anahtar Kelimeler
Kaynakça
- 1. Ravindran, B, Gupta, S.K, Cho, W.M, Kim, J.K, Lee, S.R, Jeong, K.H, Lee, D.J, Choi, H-C, Microalgae Potential and Multiple Roles-Current Progress and Future Prospects-An Overview, Sustainability, 2016, 8(1215), 1-16.
- 2. Demirel, Z, Demirkaya, C, Imamoglu, E, Dalay, M.C, Diatom cultivation and lipid productivity for non-cryopreserved and cryopreserved cells, Agronomy Research, 2016, 14(4), 1266-1273.
- 3. Nakanishi, K, Deuchi, K, Kuwano, K, Cryopreservation of four valuable strains of microalgae, including viability and characteristics during 15 years of cryostorage, Journal of Applied Phycology, 2012, 24(6), 1381-1385.
- 4. Kumari, N, Gupta, M.K, Singh, R.K, Open encapsulation-vitrification for cryopreservation of algae, Cryobiology, 2016, 73(2), 232-239. 5. Kaur, R, Pramanik, K, Sarangi, S.K, Cryopreservation-induced stress on long-term preserved articular cartilage, ISRN Tissue Engineering, 2013, 2013, 1-10.
- 6. Day, J.G, Fleck, R.A, Benson, E.E, Cryopreservation-recalcitrance in microalgae: novel approaches to identify and avoid cryo-injury, Journal of Applied Phycology, 2000, 12(3-5), 369-377.
- 7. Imamoglu, E, Simulation design for microalgal protein optimization, Bioengineered, 2015, 6(6), 342-346.
- 8. Day, J.G, Brand, J.J, Cryopreservation methods for maintaining microalgal cultures. In: Andersen R.A (ed). Algal culturing techniques, Elsevier Academic Press, London, 2005, pp 165-187.
- 9. Gaget, V, Chiu, Y.T, Lau, M, Humpage, A.R, From an environmental sample to a long-lasting culture: the steps to better isolate and preserve cyanobacterial strains, Journal of Applied Phycology, 2017, 29(1), 309-321.
Ayrıntılar
Birincil Dil
İngilizce
Konular
Mühendislik
Bölüm
Araştırma Makalesi
Yazarlar
Zeliha Demirel
*
Türkiye
Esra Imamoglu
Türkiye
İrem Deniz
Türkiye
Meltem Conk Dalay
Türkiye
Yayımlanma Tarihi
28 Aralık 2018
Gönderilme Tarihi
23 Mayıs 2018
Kabul Tarihi
10 Aralık 2018
Yayımlandığı Sayı
Yıl 2018 Cilt: 14 Sayı: 4