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    Dissertation/ Thesis
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    المساهمون: Castellanos, Jaime 0000-0003-1596-8383, Velandia-Romero, Myriam Lucía 0000-0002-3340-7304, Chaparro-Olaya, Jacqueline 0000-0001-9815-3459

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    Relation: Biomédica : Revista del Instituto Nacional de Salud, 0120-4157, Vol.37, Nro.1, 2017, p. 131-140; https://doi.org/10.7705/biomedica.v37i1.3249; http://hdl.handle.net/20.500.12495/1482; instname:Universidad El Bosque; reponame: Repositorio Institucional Universidad El Bosque; repourl:https://repositorio.unbosque.edu.co

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    المصدر: Salud Pública de México; Vol. 19 No. 2 (1977); 295_300 ; Salud Pública de México; Vol. 19 Núm. 2 (1977); 295_300 ; 1606-7916 ; 0036-3634

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    المصدر: Clinical Infectious Diseases: An Official Publication of the Infectious Diseases Society of America
    Clinical Infectious Diseases

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    المصدر: Revista de la Facultad de Medicina; Vol. 55 Núm. 4 (2007); 224-239 ; Revista de la Facultad de Medicina; Vol. 55 No. 4 (2007); 224-239 ; Revista de la Facultad de Medicina; v. 55 n. 4 (2007); 224-239 ; 2357-3848 ; 0120-0011

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    Relation: https://revistas.unal.edu.co/index.php/revfacmed/article/view/23082/23855; https://revistas.unal.edu.co/index.php/revfacmed/article/view/23082/63907; Arias CF, López S, Espejo RT. Gene protein product of SA11 simian Rotavirus genoma. J. Virol. 1982; 41: 42-50.; Méndez E, López S, Cuadras MA, Romero P, Arias CF. Entry of rotaviruses is a multistep process. Virology. 1999; 263:450-459.; Desselberger U. Genome rearrangements of rotaviruses. Advances in virus research 1996; 46: 69 – 95; Guerrero CA, Mendez E, Zarate S, Pavel I, López S, Arias A. Integrin alpha V Beta-3 mediates rotavirus cell entry. Proc. Natl. Acad. Sci. USA. 2000; 97: 14644-14649.; Guerrero CA. Tesis para optar el titulo de Doctor en Ciencias. Identificación y caracterización de receptores celulares para rotavirus Universidad Nacional Autónoma de México 2000.; Zarate S, Romero P, Espinosa R, Arias CF, López S. VP7 mediates the interaction of rotaviruses with integrin ?vâ3 through a novel integrin-binding site. J. Virol. 2004; 78: 10839-10847.; Ciarlet M, Crawford SE, Cheng E., Blut S, Rice D, Bergelson J, Estes M. VLA-2 (a2b1) integrin promotes rotavirus entry into cells but is not necessary for rotavirus attachment. J. Virol. 2002; 76:1109-1123.; Coulson BS, Londrigan SH, Lee DJ. Rotavirus contains intergrin ligand sequences and a disintegrin-like domain implicated in virus entry into cells. Proc. Natl. Acad. Sci. USA. 1997; 94:5389-5394.; Graham K, Zeng W, Takada Y, Jackson DC, Coulson BS. Effects on rotavirus cell binding and infection of monomeric and polymeric peptides containing ?2â1 and ?xâ2 integrin ligand sequences. J. Virol. 2004; 78:11786-11797.; Zárate S, Espinosa R, Romero P, Méndez E, Arias CF, López S. The VP5 domain of VP4 can mediate the attachment of rotaviruses to cells. J. Virol. 2000; 74:593-599; Zárate S, Espinosa R, Romero P, Guerrero CA, Arias CF, López S. Integrin alpha 2 Beta 1 mediates the cell attachment of the rotavirus neuraminidase-resistant variant nar3. Virology. 2000; 278: 50-54.; Guerrero CA, Bouyssounade D, Zarate S, Pavel I, López T, Espinosa R, Romero P, et al. The Heat Shock Cognate Protein 70 Is Involved in Rotavirus Cell Entry. J. Virol. 2001;76:4096-4102.; Pérez-Vargas J, Romero P, López S, Arias CF. The Peptide-Binding and ATPase domains of recombinant hsc70 Are Required to interact with rotavirus and reduce its infectivity. J. Virol. 2006; 80: 3322-3331.; Varon Carlos. Tesis de grado Pontificia Universidad Javeriana. Análisis de la relación entre la HSC70 y la integrina B3 en la membrana citoplasmática de células MA104 2005.; Zárate S, Arias CF, López S. Interaction of rotavirus with HSC70 during cell entry is mediated by VP5. J. Virol. 2003; 77: 7254-7260; Haus U, Trommeler FP, Hartmann H, Lottspeich F, Noegel AA, Schleicher M. The heat shock cognate protein from Dictyostelium afect actin polimerization through interaction with the actin-binding protein cap32/34. J EMBO 1993; 12:3763-3771.; Hirai I, Noriyuki Sato WQ, Seiji O, Toshihiko T, and kokichi k. Localization of pNT22 70 kDa heat shock cognate-like protein in the plasma membrane. Cell Structure and function. 1998;23:153-158.; Jindal S, Malkovsky M. Stress responses to viral infection. Trends in Microbiology. 1994; 2:89-91.; Ohgitani E, Kobayashi K, Takeshita K, Imanishi J. Biphasic translocation of 70 kDa heat shock protein in human cytomegalovirus-infected cells. J.Gen.Vir. 1999; 80: 63-68.; Arias C, Guerrero CA, Mendez E, Zarate S, Pavel I, López S. Early events of rotavirus infection: The search for the receptor(s). Gastroenteritis virus. Novartis Foundation. Inglaterra. 2000.; Cuadras MA, Greenberg HB. Rotavirus infectious particles use lipid rafts during replication for transport to the cell surface in vitro and in vivo. Virology. 2003; 313: 1: 308-21.; Guerrero CA, Zarate S, Corkidi G, López S, Arias CF. Biochemical characterization of rotavirus receptor in MA104 cells. J Virol 2000; Vol 74: 9362-9371.; Harlow E, Lane D. Antibodies A laboratory Manual. Edited by Cold Spring Harbor Laboratory 1988:298 - 299.; Ausubel FM, Brent R, Kingston RE, Moore DD, Seidman JD, Smith AJ. & Struhl K. eds Current Protocols in Molecular Biology. New York: Wiley; 1990: 10.10.; Laemmmli UK. Cleavage of stuctural proteins during the assembly of the head of bacteriophage T4. Nature 1970; 680: 227.; Cely Castro R, Diaz J, Pulido D, Acosta O, Guerrero CA. Producción de la proteína de choque térmico HSC70 recombinante en Escherichia Coli BL21(DE3) para generar anticuerpos policlonales. Revista de la Facultad de Medicina 2006; 54 : 156-168.; Estes, M K, Cohen J. Rotavirus gene structure and function. Microbiol Rev. 1989; 53:410-49.; Cuadras MA, Feigelstock DA, Sungwhan A, and Greenberg HB. Expression in CaCo-2 infectec rotavirus Gene Expression Pattern in Caco-2 Cells following Rotavirus Infection. J Virol, 2002; 76: 4467-4482.; Chaibi C, Cotte-Laffitte J, Sandre C, Esclatine A, Servin AL, Quero AM, Geniteau-Legendre M. Rotavirus induces apoptosis in fully differentiated human intestinal Caco-2 cells. Virology. 2005;332:480-90.; Fields BN. Reoviridae. Virology. Edited by Fields BN, Knipe DN, Howley P M, Chanock R M, Melnick JL, Monath TP, Roizman B. & S.E. Straus. New York Raven Press 2001; 1553-1555.; Hay S, Kannourakis G. A time to kill: viral manipulation of the cell death program. J Gen Virol. 2002; 83(Pt 7):1547-64.; Gualtero D F, Guzmán F, Acosta O, Guerrero C A. Amino acid domains 280-297 of VP6 and 531-554 of VP4 are implicated in heat shock cognate protein hsc70-mediated rotavirus infection. Arch VIROL Manuscript Number: -D-07-00145R1 (en prensa).; Isa P, Realpe M, Romero P, Lopez S, Arias CF. Rotavirus RRV associates with lipid membrane microdomains during cell entry. Virology 2004; 322:370-81.; https://revistas.unal.edu.co/index.php/revfacmed/article/view/23082

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    Academic Journal

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    Relation: http://revistas.unal.edu.co/index.php/revfacmed/article/view/23082; Universidad Nacional de Colombia Revistas electrónicas UN Revista de la Facultad de Medicina; Revista de la Facultad de Medicina; Revista de la Facultad de Medicina; Vol. 55, núm. 4 (2007); 224-239 2357-3848 0120-0011; Pulido Morera, Diana Rocio and Acosta Losada, Orlando and Guerrero Fonseca, Carlos Arturo (2007) Acumulación de la proteína de choque térmico, hsc70, en células ma104 después de la infección con rotavirus. Revista de la Facultad de Medicina; Vol. 55, núm. 4 (2007); 224-239 2357-3848 0120-0011 .; https://repositorio.unal.edu.co/handle/unal/35563; http://bdigital.unal.edu.co/25644/

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    Academic Journal

    المصدر: Revista de la Facultad de Medicina; Vol. 54 Núm. 3 (2006); 156-168 ; Revista de la Facultad de Medicina; Vol. 54 No. 3 (2006); 156-168 ; Revista de la Facultad de Medicina; v. 54 n. 3 (2006); 156-168 ; 2357-3848 ; 0120-0011

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    Relation: https://revistas.unal.edu.co/index.php/revfacmed/article/view/43859/45105; https://revistas.unal.edu.co/index.php/revfacmed/article/view/43859/63832; Srivastava PK, Ménoret A, Basu S, Binder R, Mcquade KL. Heat shock proteins come of age : Primitive function acquire new roles in an adaptive world. Immunity 1998; 8: 657 – 665; Becker F, Craig E. Heat shock proteins as molecular chaperones. Eur J Biochem 1994; 219: 11-23; Wilbanks SM, Chen L, Tsuruta H, Hodgson KO, Mckay DB. Solution small - angle X – ray scattering study of the molecular chaperone HSC70 and its subfragments. Biochemistry 1995; 34: 12095-12106; Snoeckx LH, Cornelussen RN, Van Nieuwenhoven FA, Reneman RS, Van Der Vusse GJ. 2001 Heat Shock Proteins and Cardiovascular Pathophysiology. Physiol Rev 2001; 81: 1461-1497; Lindquist S. The heat- shock proteins. Annu Rev Gent 1988; 22: 631- 677.; Frydman J, Hartl FU. Molecular chaperone functions of hsp70 and hsp60 in protein folding. In: The Biology of Heat Shock Proteins and Molecular Chaperones. Cold Spring Harbor Laboratory Preuss, Cold Spring , New York , NY. 1994; 251-283.; Haus U, Trommeler P, Hartmann H, Lottpeich F, Noegel A, Schleicher M. The heat shock cognate protein from Dictyostelium affect actin polimerization through interaction with the actin-binding protein cap32/34. J Embo 1993; 12: 3763-3771.; Chouchane L, Bowers S, Sawasdirosol S, Simpson RM, Kindt TJ. Heat-schock proteins expressed on the surface of human T cell leukemia virus type-I-infected cell lines induce autoantibodies in rabbits. J infect Dis. 1994; 169: 253-259.; Flaherty KM, Mckay DB, Kabsch W, Holmes KC. Similarity of the tree-dimensional structures of actin and the ATPase fragment of a 70-kDa heat shock cognate protein. Pro. Natl. Acad. USA 1999; 88: 5041 - 5045.; Wu SJ, Liu FH, Hu SM, Wang C. Different combination of the hsc70 C-terminal functional groups are utilized to interact with distinct tetraticopeptide – containing proteins. Biochem J 2001; 359: 419-426; Moffatt BA, Studier FW. Use of Bacteriophage T-7 RNA Polymerase to Direct Selective High-Level Expression of Cloned Genes. J Mol Biol 1986; 189:113-130.; Tabor S, Richardson CC. A bacteriophage T7 RNA polymerase/promoter system for controlled exclusive expression of specific genes. Biotechnology 1985. 1992; 24:280-4.; Maniatis T, Sambrook J, Fritsch EF. Molecular Cloning. Segunda edición. Editorial Cold Springs Harbor Laboratory Press , New York , United States . 1989; 15.109p.; Lane CL. A simple method for stabilizaing protein sulfhydryl groups during SDS-gel electroforesis. Analitycal Biochémistry 1978; 86:655; Kristine KM, Daniel CB, Simon RC, Jeffery OB , Paul AO. Ptimary Murine Small intestinal epithelial Cell, Maintained in long-term culture, are susceptible to rotavirus infection. J Vol 2000; 5597-5603.; Harlow E, Lane D. Antibodies A Laboratory Manual. Cold spring Harbor Laboratory 1998; 62; Gordon AH. Electrophoresis of proteins in polyacrylamide and starch gels. Laboratory Techniques biochemistry and molecular Biology. 1985; 1:75; Guerrero CA, Zárate S, Corkidi G, López S, Arias C. Biochemical characterization of rotavirus receptor in MA104 cells. J Virol. 2000;15:93-102.; Ochoa F, Trujillo G. Metodología sencilla para la obtención antisuero al virus de la tristeza de los cítricos. Fitopatol Venez. 1994; 7:1-2; Fouchaq B, Benaroudj N, Ebel C, Ladjimi MM. Oligomerization of the 17–Kda peptide–binding domain of the molecular chaperone Hsc 70. Eur J Biochem. 1999; 259: 379-384.; Arias C, Guerrero CA, Méndez E, Zárate S, Isa P, López S. Early events of rotavirus infection: The search for the receptor(s). Gastroenteritis virus. Novartis Foundation. Inglanterra . 2000.; Guerrero CA, Méndez E, Zárate S, Isa P, López S. Arias C. Integrin alpha V Beta-3 mediates rotavirus cell entry Pro Natl Acad USA 2000; 97: 14644- 14649; Zárate S, Espinosa R, Romero P, Guerrero CA, Arias C, López S. Integrin alpha 2 Beta 1 mediates the cell attachment of the rotavirus neuraminidase-resistant variant nar3. Virology. Vol 278. 2000; 50 - 54; Guerrero CA, Bouyssounade D, Zárate S, Isa P, López T, Espinosa R, Romero P, Méndez E, López S, Arias C. The Heat Shock Cognate Protein 70 Is Involved in Rotavirus Cell Entry. J Virol 2002; 76: 4096-4102.; Guerrero CA, Bouysspimade D, Zárate S, Isa P, López T, Espinosa R, Romero P, Méndez E, López S, Arias C. Heat Shock Cognate Protein 70 is Involved in Rotavirus Cell Entry. J Virol 2002; 76:4096-102; Guerrero C. Identificación y caracterización de receptores celulares para Rotavirus. Cuernavaca: México D.F., Tesis (Doctorado en Bioquímica). Universidad Nacional Autónoma de México. Instituto de Biotecnología. Departamento de genética y fisiología molecular. 2000.; Zugel U, Kaufmann S. Role of heat shock protein in protection from in pathogenesis of infectious diseases. Clinical Microbiology Reviews 1999;12:19 -39; https://revistas.unal.edu.co/index.php/revfacmed/article/view/43859

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    Academic Journal

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    Relation: http://revistas.unal.edu.co/index.php/revfacmed/article/view/43859; Universidad Nacional de Colombia Revistas electrónicas UN Revista de la Facultad de Medicina; Revista de la Facultad de Medicina; Revista de la Facultad de Medicina; Vol. 54, núm. 3 (2006); 156-168 2357-3848 0120-0011; Cely Castro, Rocio and Diaz Gómez, Julia and Pulido, Diana and Acosta L., Orlando and Guerrero F, Carlos A. (2006) Producción de la proteína de choque térmico hsc70 recombinante en escherichia coli bl21 (de3) para generar anticuerpos policlonales. Revista de la Facultad de Medicina; Vol. 54, núm. 3 (2006); 156-168 2357-3848 0120-0011 .; https://repositorio.unal.edu.co/handle/unal/74809; http://bdigital.unal.edu.co/39286/

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    المصدر: Revista de Salud Pública; Vol. 6 No. SUPLEMENTO 1 (2004): Enfermedades infecciosas en Colombia : Malaria, lepra y absceso hepático amebiano; 80-96 ; Revista de Salud Pública; Vol. 6 Núm. SUPLEMENTO 1 (2004): Enfermedades infecciosas en Colombia : Malaria, lepra y absceso hepático amebiano; 80-96 ; 2539-3596 ; 0124-0064

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    Relation: https://revistas.unal.edu.co/index.php/revsaludpublica/article/view/94611/78662; Walsh JA. Problems in recognition and diagnosis of Amebiosis: estimation of the global magnitude of morbidity and mortality. Rev Inf Dis. 1986; 8: 228-238. 2. Thompson JE, Fortalenza S, Verma R. Amebic liver abscess: a therapeutic approach. Rev Inf Dis. 1985; 7: 171-179. 3. Campbell D, Chadee K. Survival strategies of Entamoeba histolytica: Modulation of cell-mediated immune responses. Parasitol Today. 1997; 13:184-190. 4. Stanley, S. Protective immunity to amebiasis: new insights and new challenge. J Infect Dis. 2001; 184:504-506. 5. Salles J, Moraes L, Costa M. Hepatic amibiasis. Brazilian J Infect Dis. 2003; 7:96-110. 6. WHO Meeting. Amoebiasis and its control. Bull WHO 1985; 63: 417-426. 7. Cáceres E, Castaño de Romero L, Estupiñán D, López MC, Paez S, Pinilla CA, Santacruz MM. En: Corredor A, Arciniegas E, Hernández CA eds. Parasitismo intestinal. Ministerio de Salud, Instituto Nacional de Salud. Santafé de Bogotá: Instituto Nacional de Salud. 2000; 67-68. 8. Guzmán C, López M, Reyes P, Gómez J, Corredor A, Agudelo C. Diferenciación de Entamoeba histolytica y Entamoeba dispar en muestras de materia fecal por detección de adhesina de E. histolytica mediante ELISA. Biomédica. 2001; 21:167-171. 9. Hughes M, Petri W. Amebic liver abscess. Infect Dis Clin N A. 2000; 14:565-82. 10. Pinilla A, López M, Castillo BC, Murcia M, Nicholls R, Duque S, Orozco LC. Evaluación Clínica, Imaginológica e Inmunológica del Absceso Hepático. Acta Med Colomb. 2002; 27:15-25. 11. Rustgi AK, Richter JM. Abscesos hepáticos piógenos y amebianos. En: Clínicas Medicas de Traducción por Folch A. Clin Med N A. México, Interamericana, S. A. 1989; 4:921-935. 12. Gomersall L, Currie J, Jeffrey R. Amoebiasis: a rare cause of cardiac tamponade. Br Heart J. 1994; 71:368-369. 13. Cano F, Restrepo J. Absceso hepático roto a pericardio. Trib Med. 1977; 55:32-34. 14. Vargas R, Gutiérrez O, Arguello M. Análisis de 100 casos de amebiais fatal. Acta Med Colomb. 1986; 11(Suppl):173. 15. Zengzhun G, Bracha R, Nuchamowitz Y, Cheng-I W, Mirelwon D. Analysis by enzimed-linked in immunosorbent assay and PCR of human liver abscess aspirates from patients in China for Entamoeba histolytica. J Clin Microbiol. 1999; 37:3034-3036. 16. Bruchhaus I, Roeder T, Lotter H, Schwerdtfeger M, Tannich E. Differential gene expression in Entamoeba histolytica isolated from amoebic liver abscess. Mol Microbiol. 2002; 44(4):1063-1072. 17. Pinilla A. Absceso hepático. Trib Med. 1998; 98:151-160. 18. Trissl D. Immunology of Entamoeba histolytica in human and animal host. Rev Infect Dis. 1982; 4:1154-1184. 19. Ximenez C, Leyva O. Moran P, Ramos F, Melendro E. Entamoeba histolytica: antibody response to recent and past invasive events. Ann Trop Med Parasitol. 1993; 87:31-39. 20. Martinez-Palomo A. Amibiasis. Primera edición. Panamericana, México 1989. 21. Ravdin JI. State of the Art .Clinical Article. Clin Infect Dis. 1994; 20:1453-66. 22. Botero D, Restrepo M. Amebiasis. En: Parasitosis Humanas. Cuarta edición. Medellín: Corporación Investigaciones Biológicas; 2003. p. 30-58. 23. Knobloch J, Mannwailer E. Development and persistence of antibodies to Entamoeba histolytica in patients with amebic liver abscess. Am J Trop Med Hyg. 1983; 4:727-732. 24. Salata R, Ravdin J. Review of the human immune mechanisms direct against Entamoeba histolytica. Rev Infect Dis 1986; 8:261-268. 25. Abioye A, Lewis A, McFarlane H. Clinical evaluation of serum inmunoglobulins in amoebiasis. Immunol. 1972; 23:937-945. 26. Valenzuela O, Ramos F, Morán P, González E, Valadez A, Gomez A, Melendro EI, Ramiro M, Muñoz O, Ximenbez C. Persistence of secretory antiamoebic antibodies in patients with past invasive intestinal or hepatic amoebiasis. Parasitol Res. 2001; 87:849-852. 27. Abd-Alla M, Jackson T, Ravdin J. 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