• Non ci sono risultati.

BBIIBBLLIIOOGGRRAAFFIIAA Capitolo 4

N/A
N/A
Protected

Academic year: 2021

Condividi "BBIIBBLLIIOOGGRRAAFFIIAA Capitolo 4"

Copied!
11
0
0

Testo completo

(1)

Capitolo 4

B

(2)

Abramoff M. D., Magelhaes P. J., Ram S. J. (2004). Image processing with ImageJ.

Biophotonics International 11, 36-42.

Agata K., Nakajima E., Funayama N., Shibata N., Saito Y., Umesono Y. (2006). Two different evolutionary origins of stem cell systems and their molecular basis. Semin

Cell Dev Biol. 17, 503-509.

Agata K., Soejima Y., Kato K., Kobayashi C., Umesono Y., Watanabe K. (1998). Structure of the planarian central nervous system (CNS) revealed by neuronal cell markers. Zoolog Sci. 15, 433-440.

Azuara V., Perry P., Sauer S., Spivakov M., Jørgensen H. F., John R. M., Gouti M., Casanova M., Warnes G., Merkenschlager M., Fisher A. G. (2006). Chromatin signatures of pluripotent cell lines. Nat. Cell Biol. 8, 532-538.

Baguñà J. (1974). Dramatic mitotic response in planarians after feeding, and a hypothesis for the control mechanism. J Exp Zool. 190, 117-122.

Baguña J., Salò E., Auladell C. (1989). Regeneration and pattern formation in planarians: III. Evidence that neoblasts are totipotent stem cells and the source of blastema cells. Development 107, 77-86.

Baguñà J., Saló E., Romero R. (1989). Effects of activators and antagonists of the neuropeptides substance P and substance K on cell proliferation in planarians. Int. J.

Dev. Biol. 33, 261-266.

Bar-Sagi D., Hall A. (2000). Ras and Rho GTPases: a family reunion. Cell 103, 227-238.

Bautz A., Schilt J. (1986). Somatostatin-like peptide and regeneration capacities in planarians. Gen. Comp. Endocrinol. 64, 267-272.

Bernstein B. E, Mikkelsen T. S., Xie X., Kamal M., Huebert D. J, Cuff J., Fry B., Meissner A., Wernig M., Plath K., Jaenisch R., Wagschal A., Feil R., Schreiber S. L., Lander E. S. (2006). A bivalent chromatin structure marks key developmental genes in embryonic stem cells. Cell 125, 315-326.

Bode A., Salvenmoser W., Nimeth K., Mahlknecht M., Adamski Z., Rieger R. M., Peter R., Ladurner P. (2006). Immunogold-labeled S-phase neoblasts, total neoblast number, their distribution, and evidence for arrested neoblasts in Macrostomum lignano (Platyhelminthes, Rhabditophora). Cell Tissue Res. 325, 577-587.

Boyer L. A., Mathur D., Jaenisch R. (2006a). Molecular control of pluripotency.

(3)

Boyer, L. A., Plath, K., Zeitlinger, J., Brambrink, T., Medeiros, L. A., Lee, T. I., Levine, S. S., Wernig, M., Tajonar, A., Ray, M. K., Bell, G. W., Otte, A. P., Vidal, M., Gifford, D. K., Young, R. A., Jaenisch, R. (2006b). Polycomb complexes repress developmental regulators in murine embryonic stem cells. Nature 441, 349-353.

Brawley C., Matunis, E. (2004). Regeneration of male germline stem cells by spermatogonial dedifferentiation in vivo. Science 304, 1331-1334.

Cao R., Wang L., Wang H., Xia L., Erdjument-Bromage H., Tempst P., Jones R. S., Zhang Y. (2002). Role of histone H3 lysine 27 methylation in Polycomb-group silencing. Science 298, 1033-1043.

Cebrià F. (2007). Regenerating the central nervous system: how easy for planarians!

Dev. Genes Evol. 217, 733-748.

Cebrià F., Kobayashi C., Umesono Y., Nakazawa M., Mineta K., Ikeo K., Gojobori T., Itoh M., Taira M., Sánchez Alvarado A., Agata K. (2002). FGFR-related gene

nou-darake restricts brain tissues to the head region of planarians. Nature 419, 620-624.

Cebrià F., Newmark P.A., 2005. Planarian homolog of netrin and netrin receptor are required for proper regeneration of the central nervous system and the maintenance of nervous system architecture. Development 132, 3691-3703.

Chamberlain S. J., Yee D., Magnuson T. (2008). Polycomb repressive complex 2 is dispensable for maintenance of embryonic stem cell pluripotency. Stem Cells 26, 1496-1505.

Cox A. D., Der C. J. (2003). The dark side of Ras: regulation of apoptosis. Oncogene 22, 8999–9006.

Cremer T., Cremer C. (2001). Chromosome territories, nuclear architecture and gene regulation in mammalian cells. Nat. Rev. Genet. 2, 292-301.

Cress W. D., Seto E. (2000). Histone deacetylases, transcriptional control, and cancer. J Cell Physiol. 184, 1-16.

Czermin B., Melfi R., McCabe D., Seitz V., Imhof A., Pirrotta V. (2002). Drosophila enhancer of Zeste/ESC complexes have a histone H3 methyltransferase activity that marks chromosomal polycomb sites. Cell 111, 185-196.

Davie J. R. (2003). Inhibition of histone deacetylase activity by butyrate. J. Nutr. 133, 2485-2493.

Downward J. (2003). Targeting RAS signalling pathways in cancer therapy. Nat. Rev.

(4)

Gremigni V., Miceli C., (1980). Cytophotometric evidence for cell ‘transdifferentiation’ in planarian regeneration. Wilhelm Roux’s Arch. 188, 107-113.

Guo T., Peters A. H. and Newmark P. A. (2006). A bruno-like gene is required for stem cell maintenance. Dev. Cell 11, 159-169.

Hancock J. F. (2003). Ras proteins: different signals from different locations. Nat. Rev.

Mol. Cell Biol. 4, 373-384.

Handberg-Thorsager M., Saló E., (2007). The planarian nanos-like gene Smednos is expressed in germline and eye precursor cells during development and regeneration.

Dev. Genes Evol. 217, 403-411.

Hayashi T., Asami M., Higuchi S., Shibata N., Agata, K. (2006). Isolation of planarian Xray-sensitive stem cells by fluorescence-activated cell sorting. Dev. Growth

Differ. 48, 371-380.

Hennig L., Taranto P., Walser M., Schönrock N., Gruissem, W. (2003). Arabidopsis MSI1 is required for epigenetic maintenance of reproductive development. Development 130, 2555-2565.

Higuchi S., Hayashi T., Hori I., Shibata N., Sakamoto H., Agata K. (2007). Characterization and categorization of fluorescence activated cell sorted planarian stem cells by ultrastructural analysis. Dev. Growth Differ. 49, 571-581.

Hong Y., Stambrook P. J., (2004). Restoration of an absent G1 arrest and protection

from apoptosis in embryonic stem cells after ionizing radiation. Proc. Natl. Acad. Sci.

U. S. A. 101, 14443-14448.

Jupe E. R., Liu X. T., Kiehlbauch J. L., McClung J. K., Dell’Orco R. T. (1996). The 3’ untranslated region of prohibitin and cellular immortalization. Exp Cell Res. 224, 128-35.

Kai T., Spradling A., (2004). Differentiating germ cells can revert into functional stem cells in Drosophila melanogaster ovaries. Nature 428, 564-569.

Kamminga L. M., Bystrykh L. V., de Boer A., Houwer S., Douma J., Weersing E., Dontje B., de Haan G. (2006). The Polycomb group gene Ezh2 prevents hematopoietic stem cell exhaustion. Blood 107, 2170-2179.

Kato K., Orii H., Watanabe K., Agata K. (2001). Dorsal and ventral positional cues required for the onset of planarian regeneration may reside in differentiated cells. Dev.

(5)

Kitajima T. S., Hauf S., Ohsugi M., Yamamoto T., Watanabe Y. (2005). Human Bub1 defines the persistent cohesion site along the mitotic chromosome by affecting Shugoshin localization. Curr. Biol. 15, 353-359.

Kobayashi C., Kobayashi S., Orii H., Watanabe K., Agata, K. (1998). Identification of two distinct muscles in the planarian Dugesia japonica by their expression of myosin heavy chain genes. Zool. Sci. 15, 861-869.

Köhler C., Hennig L., Bouveret R., Gheyselinck J., Grossniklaus U., Gruissem W. (2003). Arabidopsis MSI1 is a component of the MEA/FIE Polycomb group complex and required for seed development. EMBO J. 22, 4804-4814.

Kurtev V., Margueron R., Kroboth K., Ogris E., Cavailles V., Seiser C. (2004). Transcriptional Regulation by the Repressor of Estrogen Receptor Activity via Recruitment of Histone Deacetylases. J. Biol. Chem. 279, 24834-24843.

Kuzmichev A., Nishioka K., Erdjument-Bromage H., Tempst P., Reinberg D. (2002). Histone methyltransferase activity associated with a human multiprotein complex containing the Enhancer of Zeste protein. Genes Dev. 16, 2893-2905.

Ladurner P., Rieger R., Baguña, J., (2000). Spatial distribution and differentiation potential of stem cells in hatchlings and adults in the marine platyhelminth

Macrostomum sp.: a bromodeoxyuridine analysis. Dev. Biol. 226, 231-241.

Lange C. S. (1968a). An outline of studies on the cellular basis of planarian radiation lethality. J. Physiol. 197, 54-55.

Lange C. S. (1968b). Studies on the cellular basis of radiation lethality. I. The pattern of mortality in the whole-body irradiated planarian (Tricladida, Paludicola). Int. J.

Radiat. Biol. Relat. Stud. Phys. Chem. Med. 13, 511-530.

Lange C. S. (1968c). Studies on the cellular basis of radiation lethality. II. Survival-curve parameters for standardized planarian populations. Int. J. Radiat. Biol. Rela. Stud.

Phys. Chem. Med. 14, 119-132.

Larsson D. E., Gustavsson S., Hultborn R., Nygren J., Delle U. Elmroth, K. (2007). Chromosomal damage in two X-ray irradiated cell lines: influence of cell cycle stage and irradiation temperature. Anticancer Res. 27, 749-753.

Lee T. I., Jenner R. G., Boyer L. A., Guenther M. G., Levine S. S., Kumar R. M., Chevalier B., Johnstone S. E., Cole M. F., Isono K., Koseki H., Fuchikami T., Abe K., Murray H. L., Zucker J. P., Yuan B., Bell G. W., Herbolsheimer E., Hannett N. M., Sun K., Odom D. T., Otte A. P., Volkert T. L., Bartel D. P., Melton D. A., Gifford D. K., Jaenisch R., Young R. A. (2006). Control of developmental regulators by Polycomb in human embryonic stem cells. Cell 125, 301-313.

(6)

Li D., Roberts R. (2001). WD-repeat proteins: structure characteristics, biological function, and their involvement in human diseases. Cell Mol. Life Sci. 58, 2085-2097.

Loyola A., Almouzni, G. (2004). Histone chaperones, a supporting role in the limelight. Biochim. Biophys. Acta. 1677, 3-11.

Lu X., Horvitz, H. R. (1998). lin-35 and lin-53, two genes that antagonize a C. elegans Ras pathway, encode proteins similar to Rb and its binding protein RbAp48. Cell 95, 981-991.

Luo W., Sharif T. R., Sharif M. (1996). Substance P-induced mitogenesis in human astrocytoma cells correlates with activation of the mitogen-activated protein kinase signaling pathway. Cancer Res. 56, 4983-4991.

Martinez-Balbas M. A, Tsukiyama T., Gdula D., Wu C. (1998). Drosophila NURF-55, a WD repeat protein involved in histone metabolism. Proc. Natl. Acad. Sci. USA 95, 132-137.

Molkentin J. D., Olson E. N. (1996). Defining the regulatory networks for muscle development. Curr. Opin. Genet. Dev. 6, 445-453.

Narlikar G. J, Fan H. Y, Kingston R. E. (2002). Cooperation between complexes that regulate chromatin structure and transcription. Cell 108, 475-487.

Neer E. J., Schmidt C.J., Nambudripad R., Smith T. F. (1994). The ancient regulatoryprotein family of WD-repeat proteins. Nature 371, 297-300.

Newmark P. A., Sánchez Alvarado A. (2000). Bromodeoxyuridine specifically labels the regenerative stem cells of planarians. Dev. Biol. 220, 142-153.

Newmark P. A., Sanchez Alvarado A. (2002). Not your father's planarian: a classic model enters the era of functional genomics. Nat. Rev. Genet. 3, 210-219.

Ng H. H., Bird A. (2000). Histone deacetylases: silencers for hire. Trends Biochem.

Sci. 25, 121-126.

Nicolas E., Morales V., Magnaghi-Jaulin L., Harel-Bellan A., Richard-Foy H., Trouche, D. (2000). RbAp48 belongs to the histone deacetylase complex that associates with the retinoblastoma protein. J. Biol. Chem. 275, 9797-9804.

Nijtmans L. G., Artal S. M., Grivell L. A., Coates P. J. (2002). The mitochondrial PHB complex: roles in mitochondrial respiratory complex assembly, aging and degenerative disease. Cell. Mol. Life Sci. 59, 143-155.

(7)

Nuell M. J., Stewart D. A., Walker L., Friedman V., Wood C. M., Owens G. A., Smith J. R., Schneider E. L., Dell’ Orco R., Lumpkin C. K., et al. (1991). Prohibitin, an evolutionarily conserved intracellular protein that blocks DNA synthesis in normal fibroblasts and HeLa cells. Mol. Cell Biol. 11, 1372-1381.

Ogawa K., Kobayashi C., Hayashi T., Orii H., Watanabe K., Agata, K. (2002). Planarian fibroblast growth factor receptor homologs expressed in stem cells and cephalic ganglions. Dev. Growth Differ. 44, 191-204.

Orii H., Agata K., Watanabe K. (1993). POU-domain genes in planarian Dugesia

japonica: the structure and expression. Biochem. Biophys. Res. Commun. 192,

1395-1402.

Orii H., Sakurai T., Watanabe K. (2005). Distribution of the stem cells (neoblasts) in the planarian Dugesia japonica. Dev. Genes Evol. 215, 143-157.

Oviedo N. J., Levin M. (2007). smedinx-11 is a planarian stem cell gap junction gene required for regeneration and homeostasis. Development 134, 3121-3131.

Parthun M. R., Widom J., Gottschling D. E. (1996). The major cytoplasmic histone acetyltransferase in yeast: links to chromatin replication and histone metabolism. Cell 87, 85-94.

Pawlik T. M., Keyomarsi K. (2004). Role of cell cycle in mediating sensitivity to radiotherapy. Int. J. Radiat. Oncol. Biol. Phys. 59, 928-942.

Pearson H. (2001). The regeneration gap. Nature 414, 388-390.

Pereira F. A., Tsai M. J., Tsai S. Y. (2000). COUP-TF orphan nuclear receptors in development and differentiation. Cell Mol. Life Sci. 57,1388-1398.

Philpott A., Krude T., Laskey R. (2000). Nuclear chaperones. Semin. Cell Dev. Biol. 11, 7-14.

Potten C. S. (1977). Extreme sensitivity of some intestinal crypt cells to X and gamma irradiation. Nature 269, 518-521.

Potten C. S. (2004). Radiation, the ideal cytotoxic agent for studying the cell biology of tissues such as the small intestine. Radiat. Res. 161, 123-136.

Potten C. S., Ellis J. R., (2006). Adult small intestinal stem cells: identification, location, characteristics, and clinical applications. Ernst. Schering Res. Found.

(8)

Puri P. L., Sartorelli, V. (2000). Regulation of muscle regulatory factors by DNA-binding, interacting proteins, and post-transcriptional modifications. J. Cell. Physiol. 185, 155-173.

Qian Y. W., Lee E. Y., H. P. (1995). Dual retinoblastoma-binding proteins with properties related to a negative regulator of Ras in yeast. J. Biol. Chem. 270, 25507– 25513.

Qian Y. W., Wang Y. C., Hollingsworth R. E., Jr Jones D., Ling N., Lee E. Y. (1993). A retinoblastoma-binding protein related to a negative regulator of Ras in yeast.

Nature 364, 648-652.

Reddien P. W., Bermange A. L., Murfitt K. J., Jennings J. R., Sánchez Alvarado A. (2005a). Identification of genes needed for regeneration, stem cell function, and tissue homeostasis by systematic gene perturbation in planaria. Dev. Cell 8, 635-649.

Reddien P. W., Oviedo N. J., Jennings J. R., Jenkin J. C., Sanchez Alvarado A. (2005b). SMEDWI-2 is a PIWI-like protein that regulates planarian stem cells. Science 310, 1327-1330.

Ringrose L., Paro R. (2004). Epigenetic regulation of cellular memory by the Polycomb and Trithorax group proteins. Annu. Rev. Genet. 38,413-443.

Robb S. M., Ross E., Sánchez Alvarado A. (2008). SmedGD: the Schmidtea mediterranea genome database. Nucleic Acids Res. 36, 599-606.

Robert J. S. (2004). Model systems in stem biology. BioEssays 26, 1005-1012.

Rossi L., Salvetti A., Marincola F. M., Lena A., Deri P., Mannini L., Batistoni R., Wang E., Gremigni V. (2007). Deciphering the molecular machinery of stem cells: a look at the neoblast gene expression profile. Genome Biol. 8, R62.

Rossi L., Salvetti A., Lena A., Batistoni R., Deri P., Pugliesi C., Loreti E., Gremigni V. (2006). DjPiwi-1, a member of the PAZ-Piwi gene family, defines a subpopulation of planarian stem cells. Dev. Genes Evol. 216, 335-346.

Ruggieri R., Tanaka K., Nakafuku M., Kaziro Y., Toh-e A., Matsumoto, K. (1989). MSI1, a negative regulator of the RAS-cAMP pathway in Saccharomyces cerevisiae.

Proc. Natl. Acad. Sci. USA 86, 8778–8782.

Saheki T., Ito H., Sekiguchi A., Nishina A., Sugiyama T., Izumi T., Kojima I. (2008). Proteomic analysis identifies proteins that continue to grow hepatic stem-like cells without differentiation. Cytotechnology. 57, 137-143.

(9)

Salvetti A., Rossi L., Bonuccelli L., Lena A., Pugliesi C., Rainaldi G., Evangelista M., Gremigni V. (2009). Adult stem cell plasticity: neoblast repopulation in non-lethally irradiated planarians. Dev. Biol. 328, 305-314.

Salvetti A., Rossi L., Deri P., Batistoni R. (2000). An MCM2-related gene is expressed in proliferating cells of intact and regenerating planarians. Dev. Dyn. 218, 603-614.

Salvetti, A., Rossi, L., Lena, A., Batistoni, R., Deri, P., Rainaldi, G., Locci, M. T., Evangelista, M. and Gremigni, V. (2005). DjPum, a homologue of Drosophila Pumilio, is essential to planarian stem cell maintenance. Development 132, 1863-1874.

Sánchez Alvarado A., Newmark P. A. (1999). Double-stranded RNA specifically disrupts gene expression during planarian regeneration. Proc. Natl. Acad. Sci. USA. 96, 5049-5054.

Sato K., Shibata N., Orii H., Amikura R., Sakurai T., Agata K., Kobayashi S., Watanabe K. (2006). Identification and origin of the germline stem cells as revealed by the expression of nanos-related gene in planarians. Dev. Growth Differ. 48, 615-628.

Scuto A., Zhang H., Zhao H., Rivera M., Yeatman T. J., Jove R., Torres-Roca, J. F. (2007). RbAp48 regulates cytoskeletal organization and morphology by increasing K-Ras activity and signaling through mitogen-activated protein kinase. Cancer Res. 67, 10317-10324.

Sharif T. R., Luo W., Houghton P. J., Sharif M. (1996). Substance K peptide induces mitogenesis by activating the mitogen-activated protein kinase signaling pathway through the substance P receptor (NK-1 subtype) in human astrocytoma cells. Cell.

Pharmacol. 3, 441-449.

Shields J. M., Pruitt K., McFall A., Shaub A. and Der C. J. (2000). Understanding Ras: "it ain't over 'til it's over." Trends Cell Biol. 10, 147-154.

Singh N. P. (2000). A simple method for accurate estimation of apoptotic cells. Exp.

Cell Res. 256, 328-337.

Singh N. P. (2005). Apoptosis assessment by the DNA diffusion assay. Methods in

Molecular Medicine 111, 55-67.

Smirnov D. A., Hou S., Ricciardi R. P. (2000). Association of histone deacetylase with COUP-TF in tumorigenic Ad12-transformed cells and its potential role in shut-off of MHC class I transcription. Virology 268, 319-328.

Sun L., Liu L., Yang X. J., Wu Z. (2004). Akt binds prohibitin 2 and relieves its repression of MyoD and muscle differentiation.Journal of Cell Science 117, 3021-3029.

(10)

Surani M. A, Hayashi K., Hajkova P. (2007). Genetic and epigenetic regulators of pluripotency. Cell. 128, 747-762.

Takata H., Matsunaga S., Morimoto A., Ma N., Kurihara D., Ono-Maniwa R., Nakagawa M., Azuma T., Uchiyama S., Fukui K. (2007). PHB2 Protects Sister-Chromatid Cohesion in Mitosis. Curr. Biol. 17, 1356-1361.

Tanaka, E. M. (2003). Regeneration: if they can do it, why can't we? Cell 113, 559-562.

Tazaki A., Gaudieri S., Ikeo K., Gojobori T., Watanabe K., Agata K. (1999). Neural network in planarian revealed by an antibody against planarian synaptogamin homologue. Biochem. Biophys. Res. Commun. 260, 426-432.

Tazaki A., Kato K., Orii H., Agata K., Watanabe K. (2002). The body margin of the planarian Dugesia japonica: characterization by the expression of an intermediate filament gene. Dev. Genes Evol. 212, 365-373.

Terashima M., Kim K. M., Adachi T., Nielsen P. J., Reth M., Köhler G., Lamers M. C. (1994). The IgM antigen receptor of B lymphocytes is associated with prohibitin and a prohibitin-related protein. EMBO J. 13, 3782-3792.

Tsai R. Y., Kittappa R., McKay R. D. (2002). Plasticity, niches, and the use of stem cells. Dev. Cell 2, 707-712.

Verreault A., Kaufman P. D., Kobayashi R., Stillman B. (1996). Nucleosome assembly by a complex of CAF-1 and acetylated histones H3/H4. Cell 87, 95-104.

Wang S., Fusaro G., Padmanabhan J., Chellappan S. P. (2002). Prohibitin co-localizes with Rb in the nucleus and recruits N-CoR and HDAC1 for transcriptional repression. Oncogene 21, 8388-8396.

Wei Y., Mizzen C. A., Cook R. G., Gorovsky M. A., Allis C. D. (1998). Phosphorylation of histone H3 at serine 10 is correlated with chromosome condensation during mitosis and meiosis in Tetrahymena. Proc. Natl. Acad. Sci. USA 95, 7480-7484.

Weissman I. L. (2000). Stem cells: units of development, units of regeneration, and units in evolution. Cell 100, 157-168.

Wolff E., Dubois F. (1948). Sur la migration des cellules de régénération chez les planaires. Rev. Suisse Zool. 55, 218-227.

Xu Y. (2005). A new role for p53 in maintaining genetic stability in embryonic stem cells. Cell Cycle 4, 363-364.

(11)

Xue Y., Wong J., Moreno G. T., Young M. K., Cote J., Wang W. (1998). NURD, a novel complex with both ATP-dependent chromatin-remodeling and histone deacetylase activities. Mol. Cell 2, 851-861.

Yun K., Wold B. (1996). Skeletal muscle determination and differentiation: story of a core regulatory network and its context. Curr. Opin. Cell Biol. 8, 877-889.

Zandonella C. (2005). Stem cell therapies:the first wave. Nature 435, 877-878.

Zhang Y., LeRoy G., Seelig H. P., Lane W. S., Reinberg D. (1998). The dermatomyositis-specific autoantigen Mi2 is a component of a complex containing histone deactylase and nucleosome remodeling activities. Cell 95, 279-289.

Zhang Y., Ng H. H., Erdjument-Bromage H., Tempst P., Bird A., Reinberg D. (1999). Analysis of the NuRD subunits reveals a histone deacetylase core complex and a connection with DNA methylation. Genes Dev. 13, 1924-1935.

Riferimenti

Documenti correlati

A 42b-c, descrivendo la composizione e la 177 distribuzione delle anime individuali, Timeo afferma che l’anima di “colui il quale vive bene il tempo assegnatogli”

realtà e offrono conferme o spunti alle scelte esistenziali o elementi di disincanto consapevole, rispetto a una società che non è come dovrebbe essere, ma che potrebbe,

Even if vanillin permeates just by diffusion through a non-porous membrane and concentration polarization (as discussed below) affects the rate of permeation, the flux is more than

A measure of rotations in seismology is of fundamental interest for (a) the determination of all the six degrees of freedom that characterize a rigid body’s motion, and (b)

Gene expression changes monitored in GRSPaV- infected grapevines at different phenological stages Molecular responses to GRSPaV infection in grapevine were also analysed in

Analysing the mutual relationships between the view of math and the emotional disposition towards math and towards it’s teaching, it emerges that the

The evaluation of the impact of dental aesthetics on quality of life in children and adolescents is crucially important since the subjective perception of treatment need could

Keywords: Pericardium, decellularization, xenoantigen, valve interstitial cell, tissue engineered heart valve, bioreactor... Unità di Ingegneria Tissutale Cardiovascolare,