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Employment of encapsulation-dehydration method for liquid nitrogen cryopreservation of ornamental plant explants propagated in vitro

study using Ribes L. Biodiversity and Conservation 10(6): 939-949. REED B.M., DENOMA J.M., LUO J., CHANG Y., TOWILL L., 1998. Cryopreservation and long term storage of pear germplasm. In Vitro Cell. Dev. Biol. - Plant 34: 256-260. TALAGI H., 2000. Cryopreservation of tropical plant germplasm. Engelmann F., Takagi H. (eds). Current Research Progress and Apliction, IPGRI Rome, Italy: 178-193. WANG Q.C., TANNE E., ARAV A., GAFNY R., 2000. Cryopreservation of in vitrogrown shoot tips of grapevine by encapsulation

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Cryopreservation of in vitro-grown shoot tips of chrysanthemum by encapsulation-dehydration

References Antony J.J.J., Sinniah U.R., Keng C.L., Pobathy R., Khoddamzadeh A.A., Subramaniam S., 2011. Selected potential encapsulation-dehydration parameters on Dendrobium ‘Bobby Messina’ protocorm-like bodies using TTC analysis. Aust. J. Crop. Sci. 5(13): 1817-1822. Engelmann F., 2008. The development of encapsulation dehydration. In: Plant Cryopreservation: A practical guide. B.M. Reed (ed.), Springer, Corvallis. Engelmann F., 2011. Use of biotechnology for conservation of plant biodiversity. In

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The influence of Pseudomonas aeruginosa secreted virulence factors on hemocyte-mediated immune response of Galleria mellonella

The influence of Pseudomonas aeruginosa secreted virulence factors on hemocyte-mediated immune response of Galleria mellonella

The influence of secreted virulence factors (SVF) of entomopathogenic strain of Pseudomonas aeruginosa on Galleria mellonella hemocytes-mediated immune response mechanisms was examined. The obtained results indicated that larvae injection with SVF adversely affected the morphology and consequently viability of hemocytes. Moreover, factors presented in culture supernatant lead to aberrant organization of the actin cytoskeleton. Within the time of SVF action, hemocytes preserved only the ability to adhere to the foreign surfaces in comparison to cells collected from naïve larvae, which formed pseudopodia and extensively spread. It seemed probable that cytoskeleton disruption led to overcoming hemocytes-mediated immune response mechanisms by entomopathogen. The phagocytosis in treated with SVF larvae was observed but hemocytes which engulfed bacteria became dead. Moreover, hemocytes ability to capsule formation was strongly inhibited in SVF-treated larvae.

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Germination behavior of the extremely rare Hladnikia pastinacifolia Rchb. (Apiaceae) – a Pleistocene in situ survivor

Anthriscus sylvestris (Apiaceae). Flora 195, 245–251. Černý, T., Petřík, P., Boublík, K., Kolbek, J., 2006: Habitat requirements of Cardaminopsis petraea – rare and relict species of the Czech Republic. Biologia 61, 51–61. Ciringer, T., Martín, C., Sajna, N., Kaligarič, M., Ambrožič-Dolinšek, J., 2018: Cryopreservation of an endangered Hladnikia pastinacifolia Rchb. by shoot tip encapsulation-dehydration and encapsulation-vitrification. In Vitro Cellular and Developmental Biology – Plant, 1–11.Čušin, B., 2004: Hladnikia pastinacifolia Rchb. In: Čušin, B

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Artificial cell microcapsules containing live bacterial cells and activated charcoal for managing renal failure creatinine: preparation and in-vitro analysis

. D. Othman, H. Hasbullah, M. S. Abdullah, B. C. Ng, S. H. S. A. Kadir, and F. Kamal. 2018. Highly adsorptive oxidized starch nanoparticles for efficient urea removal. Carbohydrate Polymers 201: 257-263. 15. Chandy, T., and C. P. Sharma. 1998. Activated charcoal microcapsules and their applications. Journal of biomaterials applications 13: 128-157. 16. Sparks, R. E., N. S. Mason, P. M. Meier, M. H. Litt, and O. Lindan. 1971. Removal of uremic waste metabolites from the intestinal tract by encapsulated carbon and oxidized starch. Transactions

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Changes in the apolipophorin-III level in the hemolymph of Galleria mellonella larvae after bacterial infection

into the immune activation process directed by this protein. J. Insect Physiol. 47, 789-797. Dubovsky I. M., Krukova N. A., Glupov V. V. 2008. Phagocytic activity and encapsulation rate of Galleria mellonella larval haemocytes during bacterial infection by Bacillus thuringiensis . J. Invertebr. Pathol. 98, 360-362. Dunphy G., Halwani A., 1997. Haemolymph proteins of larvae of Galleria mellonella detoxify endotoxins of the insect pathogenic bacteria Xenorhabdus nematophilus (Enterobacteriaceae). J. Insect

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Filter paper inhibits in vitro protocorm-like body formation in hybrid Cymbidium and reduces synseed germination, but buffers the negative impact of antibiotics

Biotech. 7: 1–52. T eixeira da S ilva J. A. 2013b. The role of thin cell layers in regeneration and transformation in orchids. Plant Cell Tissue Organ Cult. 113: 149–161. T eixeira da S ilva J. A. 2013c. Impact of paper bridges, activated charcoal, and antioxidants on growth and development of protocorm-like bodies of hybrid Cymbidium . In Vitro Cell. Dev. Biol. – Plant 49: 414–420. T eixeira da S ilva J. A. 2013d. Cryopreservation of hybrid Cymbidium protocorm-like bodies by encapsulation-dehydration and vitrification. In Vitro Cell. Dev

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Forestry Studies
Metsanduslikud Uurimused; The Journal of Estonian University of Life Sciences
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Clinical and etiological study of a small familiar outbreak of trichinellosis in Tibet, China

encapsulating larvae. Clin. Infect. Dis., 32: 638 - 642. DOI: 10.1086/318707 POZIO, E. (2007): World distribution of Trichinella spp. infections in animals and humans. Vet. Parasitol., 149: 3 - 21. DOI: 10.1016/j. vetpar.2007.07.002 TAYLOR, W.R., TRAN, G.V., NGUYEN, T.Q., DANG, D.V., NGUYEN, V.K., NGUYEN, C.T., NGUYEN, L. T., et al., (2009): Acute febrile myalgia in Vietnam due to trichinellosis following the consumption of raw pork. Clin. Infect. Dis., 49: e79 - 83. DOI: 10.1086/605533 WANG, Z.Q., CUI, J., SHEN, L.J. (2007

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Production of Synseed for Hybrid Cymbidium Using Protocorm-Like Bodies
Short communication

-100. Chand S., Singh AK. 2004. Plant regeneration from encapsulated nodal segments of Dalbergia sissoo Roxb. - a timber yielding leguminous tree. J. PLANT PHYSIOL. 161: 237-243. Chetia S., Deka P.C., Devi J. 1998. Germination of fresh and stored encapsulated protocorms of orchids. INDIAN J. EXP. BIOL. 36: 108-111. Corrie S., Tandon P. 1993. Propagation of Cymbidium giganteum Wall. through high frequency conversion of encapsulated protocorms under in vitro and in vivo conditions. INDIAN J. EXP. BIOL. 31: 61-64. Deb C

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