Immunotherapy and Therapeutic antibodies

Mayank Gupta1, Mujapara A.K.2, Nikhil Gupta3, Soham Trivedi4, Prasad Patil5, Girish Gupta6, Bhrugesh Joshi7, Yogesh Khairnar8, Vamsi Krishna K9, Amol Boraste10, Jadhav Amol11
1Sindhu Mahavidyalaya Panchpaoli Nagpur
2Sir PP Institute of Science, Bhavnagar, Gujrat, Mail : adarshmujapara@gmail.com
3Sindhu Mahavidyalaya Panchpaoli Nagpur
4V.V.P. Engineering College, Rajkot, Gujrat
5Dr. D. Y. Patil ACS College, Pimpri, Pune
6S.D.S.M. College Palghar, Mumbai
7Rural College of Pharmacy, D.S Road, Bevanahalli, Banglore
8Padmashree Dr. D.Y. Patil University, Navi Mumbai, 400614, India
9Rai foundations College CBD Belapur Navi Mumbai
10Padmashree Dr. D.Y. Patil University, Navi Mumbai, 400614, India
11Padmashree Dr. D.Y. Patil University, Navi Mumbai, 400614, India

Received : -     Accepted : -     Published : 21-12-2009
Volume : 1     Issue : 2       Pages : 41 - 49
Int J Biotechnol Appl 1.2 (2009):41-49
DOI : http://dx.doi.org/10.9735/0975-2943.1.2.41-49

Keywords : Immunotherapy, Adjuvant, Interleukin, Monoclonal antibody, Interferon, Autoimmunity
Conflict of Interest : None declared

Cite - MLA : Mayank Gupta, et al "Immunotherapy and Therapeutic antibodies." International Journal of Biotechnology Applications 1.2 (2009):41-49. http://dx.doi.org/10.9735/0975-2943.1.2.41-49

Cite - APA : Mayank Gupta, Mujapara A.K., Nikhil Gupta, Soham Trivedi, Prasad Patil, Girish Gupta, Bhrugesh Joshi, Yogesh Khairnar, Vamsi Krishna K, Amol Boraste, Jadhav Amol (2009). Immunotherapy and Therapeutic antibodies. International Journal of Biotechnology Applications, 1 (2), 41-49. http://dx.doi.org/10.9735/0975-2943.1.2.41-49

Cite - Chicago : Mayank Gupta, Mujapara A.K., Nikhil Gupta, Soham Trivedi, Prasad Patil, Girish Gupta, Bhrugesh Joshi, Yogesh Khairnar, Vamsi Krishna K, Amol Boraste, and Jadhav Amol "Immunotherapy and Therapeutic antibodies." International Journal of Biotechnology Applications 1, no. 2 (2009):41-49. http://dx.doi.org/10.9735/0975-2943.1.2.41-49

Copyright : © 2009, Mayank Gupta, et al, Published by Bioinfo Publications. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.

Abstract

Treatment of disorders through immune manipulation of the host has come a long way in the last decades and has broadened its applications from infectious diseases to control of allograft rejection, induction of tolerance for the treatment of autoimmunity and break of tolerance to induce cancer rejection. Immunotherapy, biological response modifier therapy or biotherapy uses the immune system to fight disease like cancer. The potentials of immunotherapy are many. The objective of this review article is to increase awareness of contemporary immunologic therapies and recent advances in immunotherapy.

References

[1] Lisa H. Butterfield (2007) SWISS MED WKLY;137:83–90  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[2] Bernard-Marty C., Lebrum F., Awada A., Piccart M.J. (2006) Drugs 66,1577– 1591  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[3] Foote J. (2003) Science 299,1327–1328  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[4] Mariuzza R.A. (2006) Immunity 24,429– 438  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[5] Ignacio Garcia Valladares, Luis R Espinoza (2009) Immunotherapy, 1 (5), 749-751  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[6] Yusibov V., Rabiandran S. (2008) Expert Rev. Vaccines 7,1173–1183  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[7] Larche M. (2007) Allergy 62 ,325–331.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[8] Sabbatini P., Odunsi K. (2007) J. Clin. Oncol .25(20),2884–2893  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[9] 2009) Immunotherapy, 1 (5), 721-725  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[10] Chouaib S., Assellin-Paturel C., Mami- Chouaib F., Caignard A., Blay J. (1997) Immunol. Today 18,493–497.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[11] Andersson A., Yang S.C., Huang M., Zhu L., Kar U.K., Batra R.K., Elashoff D., Strieter R.M., Dubinett S.M., Sharma S. (2009) J. Immunol. 182 (11), 6951– 6958  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[12] Wang E., Marincola F.M. (2008) Immunity 29, 9–11.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[13] Jin P., Wang E. (2003) J. Transl. Med.1, 8.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[14] Chaussabel D., Quinn C., Shen J. et al. (2008) Immunity 29,150–164.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[15] Rapberger R., Perco P., Sax C. et al. (2008) BMC Syst. Biol.2,2  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[16] Ena Wang, Adriana Albini, David F Stroncek, Francesco M Marincola (2009) Immunotherapy 1:3, 355-366  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[17] Marincola F.M. (2007) J. Transl. Med. 5,21.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[18] Benoist C., Germain R.N., Mathis D., (2006): Immunol. Rev.210,229–234.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[19] Dalgleish A. (1999) QJM 92,347–359  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[20] Burnet F.M. (1970) Res.13,1–27.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[21] Sauer G.C. (1961) J. Kans. Med. Soc.62, 509–511  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[22] Salk J. (1969) Ann. NY Acad. Sci.164, 365–380  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[23] Wang E., Worschech A., Marincola F.M. (2008) Trends Immunol. 29, 256–262.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[24] (2009) Blood, 114(4):816-25  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[25] Kawai T., Akira S., Ann N. Y. (2008) Acad Sci. ;1143:1-20  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[26] Sochocka M., Postepy Hig. (2008) Med Dosw (Online).;62:676-87  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[27] Mancuso G., Gambuzza M., Midiri A., Biondo C., Papasergi S., Akira S., Teti G., Beninati C. (2009) Nat Immunol., 10(6):587-94  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[28] van Maren W.W., Jacobs J.F., de Vries I.J., Nierkens S., Adema G.J., (2008) Immunology, 24(4):445-52.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[29] Zhang X., Jin J., Tang Y., Speer D., Sujkowska D, Markovic-Plese S., (2009) J Immunol., 182(6):3928-36  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[30] Guiducci C., Coffman R.L., Barrat F.J., (2009) J Intern Med.; 265 (1):43-57  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[31] Kim W.U., Sreih A., Bucala R., (2009) Autoimmun Rev., 8(3):204-8  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[32] Ahonen C., Manning E., Erickson L.D., O'Connor B., Lind E.F., et al. (2002) Nat Immunol., 3: 451–456.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[33] Naito A., Azuma S., Tanaka S., Miyazaki T., Takaki S., et al. (1999) Genes Cells.,4: 353–362  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[34] Lomaga M.A., Yeh W.C., Sarosi I., Duncan G.S., Furlonger C., et al. (1999) Genes Dev.;13:1015–1024  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[35] King C.G., Kobayashi T., Cejas P.J., Kim T., Yoon K., et al. (2006) Nat Med., 12:1088–1092  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[36] Hiroyasu Konno et al,(2009) PLoS ONE, 4(5): e5674.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[37] Ashkenazi A. and Dixit V. M. (1998) Science 281:1305-1308  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[38] El-Deiry W. S. (2001) Cell Death Differ 8:1066-1075  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[39] Stacey Ricci M., Zhaoyu Jin, Michael Dews, Duonan Yu, Andrei Thomas- Tikhonenko, David T. Dicker, and Wafik S. El-Deiry (2004) Mol Cell Biol., 24(19): 8541–8555  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[40] Krueger A., Baumann S., Krammer P. H. and Kirchhoff S. (2001) Mol. Cell. Biol. 21:8247-8254  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[41] Motiwala T., Majumder S., Ghoshal K., Kutay H., Datta J., Roy S., Lucas D.M., Jacob S.T., (2009) J Biol Chem.;284(1):455-64  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[42] Lan R.Y., Selmi C., Gershwin M.E. (2008) J Autoimmun., 31(1):7-12.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[43] Lichtor T., Glick R.P. (2003) J Neurooncol., 65(3):247-59  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[44] Glick R.P., Lichtor T., Cohen E.P. (2000) Neurosurg Focus., 9(6):e2.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[45] Nobili C., Degrate L., Caprotti R., Franciosi C., Leone B.E., Trezzi R., Romano F., Uggeri F., Uggeri F. (2008)Tumori., 94(3):426-30  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[46] van de Loosdrecht A.A., van den Ancker W., Houtenbos I., Ossenkoppele G.J., Westers T.M. (2009) Handb Exp Pharmacol., (188):319-48  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[47] Houtenbos I., Westers T.M., Ossenkoppele G.J., van de Loosdrecht A.A. (2006) Immunobiology, 211(6-8):677-85  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[48] Jonuleit H., Schmitt E., Steinbrink K., Enk A.H. (2001) Trends Immunol., 22(7):394-400  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[49] Houtenbos I., Westers T.M., Ossenkoppele G.J., van de Loosdrecht A.A. (2002) Hum Immunol., 63(12):1149-55.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[50] Sonderbye L., Feng S., Yacoubian S., Buehler H., Ahsan N., Mulligan R., Langhoff E. (1998) Exp Clin Immunogenet., 15(2):100-11  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[51] Kuwana M. (2002) Hum Immunol , 63(12):1156-63  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[52] Unger W.W., Laban S., Kleijwegt F.S., van der Slik A.R., Roep B.O. (2009) Eur J Immunol., 39(11):3147-3159  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[53] Marchetti G., Meroni L., Varchetta S., Terzieva V., Bandera A., Manganaro D., Molteni C., Trabattoni D., Fossati S., Clerici M., Galli M., Moroni M., Franzetti F., Gori A. (2002) J Infect Dis., 186(5):606-16  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[54] Giulia Marchetti, Fabio Franzetti and Andrea Gori (2005) Journal of Antimicrobial Chemotherapy 55, 401– 409.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[55] Brekke O.H., Sandlie I. (2003) Nat Rev Drug Discov.;2: 52–62.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[56] Yang J., Lei Y.F., Yin W., Wei S.H., An Q.X., Lv X., Hu X.B., Xu Z.K. (2008) Hybridoma (Larchmt)., 27(3):181-6.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[57] Burioni R., Perotti M., Mancini N., Clementi M. (2008)J Hepatol.;49(2):299-300  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[58] Mir H.M., Birerdinc A., Younossi Z.M. (2009) Clin Liver Dis.;13(3):477-86  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[59] Dagan S., Eren R. (2003) Curr Opin Mol Ther.;5(2):148-55.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[60] Muerhoff A.S., Rupprecht K., Ruan Q., Zeck B., Ramsay C., Zhao C., Desai S.M. (2009) J Immunol Methods. 30; 345(1- 2):60-9.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[61] de Re V., Simula M.P., Pavan A., Garziera M., Marin D., Dolcetti R., de Vita S., Sansonno D., Geremia S., Toffoli G. (2009) Ann N Y Acad Sci.;1173:152-60  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[62] Kang S.M., Jun H.J., Lim Y.S., Choi S.H., Hwang S.B. (2009) Arch Virol.;154(5):843-51.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[63] Kang S.M., Choi S.H., Park C.Y., Kim M.H., Kim T.K., Park J.M., Koh M.S., Kang H.J., Hwang S.B. (2008) J Viral Hepat.;15(4):305-13  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[64] Broering T.J., Garrity K.A., Boatright N.K., Sloan S.E., Sandor F., Thomas W.D. Jr, Szabo G., Finberg R.W., Ambrosino D.M., Babcock G.J. (2009) J Virol. 83: 12473-12482  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[65] Gillet L., Stevenson P.G. (2007) EMBO J.;26 (24):5131-42  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[66] Sawyer L.A. (2000) Antiviral Res.;47 (2):57- 77  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[67] Funaro A., Gribaudo G., Luganini A., Ortolan E., Lo Buono N., Vicenzi E., Cassetta L., Landolfo S., Buick R., Falciola L., Murphy M., Garotta G., Malavasi F. (2008) BMC Biotechnol.;8:85.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[68] Böldicke T., Haase B., Böcher M., Lindenmaier W. (1995) Eur J Biochem. ; 234(2):397-405  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[69] Stamatatos L., Morris L., Burton D.R., Mascola. (2009) JR.Nat Med. (8):866- 70  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[70] Chen W., Dimitrov D.S. (2009) Curr Opin HIV AIDS;4(2):112-7  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[71] Zhang M.Y., Dimitrov D.S. (2007) Curr Pharm Des.;13(2):203-12.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[72] Zhang M.Y., Dimitrov D.S. (2009) Methods Mol Biol.;562:143-54  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[73] Mc Cann C.M., Song R.J., Ruprecht R.M. (2005) Curr Drug Targets Infect Disord.;5(2):95-111  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[74] Cardozo T., Swetnam J., Pinter A., Krachmarov C., Nadas A., Almond D., Zolla-Pazner S., (2009) AIDS Res Hum Retroviruses.;25(4):441-50  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[75] Ruprecht R.M., Ferrantelli F., Kitabwalla M., Xu W., McClure H.M. (2003) Vaccine.;21(24):3370-3  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[76] Nunoya J., Nakashima T., Kawana- Tachikawa A., Kiyotani K., Ito Y., Sugimura K., Iwamoto A. (2009) AIDS Res Hum Retroviruses.;25(9):897-904  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus