Cellular transformation in vitro induced by herpes simplex virus. II. Transformation of hamster embryo cells. 1974

N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan

UI MeSH Term Description Entries
D002460 Cell Line Established cell cultures that have the potential to propagate indefinitely. Cell Lines,Line, Cell,Lines, Cell
D002471 Cell Transformation, Neoplastic Cell changes manifested by escape from control mechanisms, increased growth potential, alterations in the cell surface, karyotypic abnormalities, morphological and biochemical deviations from the norm, and other attributes conferring the ability to invade, metastasize, and kill. Neoplastic Transformation, Cell,Neoplastic Cell Transformation,Transformation, Neoplastic Cell,Tumorigenic Transformation,Cell Neoplastic Transformation,Cell Neoplastic Transformations,Cell Transformations, Neoplastic,Neoplastic Cell Transformations,Neoplastic Transformations, Cell,Transformation, Cell Neoplastic,Transformation, Tumorigenic,Transformations, Cell Neoplastic,Transformations, Neoplastic Cell,Transformations, Tumorigenic,Tumorigenic Transformations
D006224 Cricetinae A subfamily in the family MURIDAE, comprising the hamsters. Four of the more common genera are Cricetus, CRICETULUS; MESOCRICETUS; and PHODOPUS. Cricetus,Hamsters,Hamster
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D014466 Ultraviolet Rays That portion of the electromagnetic spectrum immediately below the visible range and extending into the x-ray frequencies. The longer wavelengths (near-UV or biotic or vital rays) are necessary for the endogenous synthesis of vitamin D and are also called antirachitic rays; the shorter, ionizing wavelengths (far-UV or abiotic or extravital rays) are viricidal, bactericidal, mutagenic, and carcinogenic and are used as disinfectants. Actinic Rays,Black Light, Ultraviolet,UV Light,UV Radiation,Ultra-Violet Rays,Ultraviolet Light,Ultraviolet Radiation,Actinic Ray,Light, UV,Light, Ultraviolet,Radiation, UV,Radiation, Ultraviolet,Ray, Actinic,Ray, Ultra-Violet,Ray, Ultraviolet,Ultra Violet Rays,Ultra-Violet Ray,Ultraviolet Black Light,Ultraviolet Black Lights,Ultraviolet Radiations,Ultraviolet Ray
D014776 Virus Cultivation Process of growing viruses in live animals, plants, or cultured cells. Viral Cultivation,Cultivation, Viral,Cultivation, Virus,Cultivations, Viral,Cultivations, Virus,Viral Cultivations,Virus Cultivations
D018139 Simplexvirus A genus of the family HERPESVIRIDAE, subfamily ALPHAHERPESVIRINAE, consisting of herpes simplex-like viruses. The type species is HERPESVIRUS 1, HUMAN. Herpes Simplex Virus,Herpesvirus 1, Saimiriine,Herpesvirus 1, Saimirine,Herpesvirus 16, Cercopithecine,Marmoset Virus,Cercopithecine Herpesvirus 16,Herpes Labialis Virus,Herpes-T Virus,Herpesvirus 1 (alpha), Saimirine,Herpesvirus Hominis,Herpesvirus Papio 2,Herpesvirus Platyrhinae,Marmoset Herpesvirus,Saimiriine Herpesvirus 1,Herpes Labialis Viruses,Herpes Simplex Viruses,Herpes T Virus,Herpes-T Viruses,Herpesvirus Homini,Herpesvirus, Marmoset,Herpesviruses, Marmoset,Homini, Herpesvirus,Hominis, Herpesvirus,Labialis Virus, Herpes,Labialis Viruses, Herpes,Marmoset Herpesviruses,Marmoset Viruses,Platyrhinae, Herpesvirus,Saimirine Herpesvirus 1,Simplexviruses,Virus, Herpes Labialis,Viruses, Herpes Labialis
D066298 In Vitro Techniques Methods to study reactions or processes taking place in an artificial environment outside the living organism. In Vitro Test,In Vitro Testing,In Vitro Tests,In Vitro as Topic,In Vitro,In Vitro Technique,In Vitro Testings,Technique, In Vitro,Techniques, In Vitro,Test, In Vitro,Testing, In Vitro,Testings, In Vitro,Tests, In Vitro,Vitro Testing, In

Related Publications

N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan
November 1983, Investigative ophthalmology & visual science,
N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan
December 1973, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine (New York, N.Y.),
N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan
September 1974, Virology,
N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan
April 1979, Journal of virology,
N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan
July 1975, Cancer research,
N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan
August 1973, Journal of virology,
N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan
January 1981, Voprosy virusologii,
N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan
July 1983, International journal of cancer,
N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan
November 1978, Cell,
N Sahnazarov, and A Muţiu, and P Athanasiu, and M Gruia, and N Cajal, and R Gologan
October 1976, International journal of cancer,
Copied contents to your clipboard!