Literature DB >> 9465081

Mucosal immunization with HIV-1 peptide vaccine induces mucosal and systemic cytotoxic T lymphocytes and protective immunity in mice against intrarectal recombinant HIV-vaccinia challenge.

I M Belyakov1, M A Derby, J D Ahlers, B L Kelsall, P Earl, B Moss, W Strober, J A Berzofsky.   

Abstract

Mucosal tissues are major sites of HIV entry and initial infection. Thus, the induction of a mucosal cytotoxic T lymphocyte (CTL) response is an important feature for an effective HIV vaccine. However, little is known about approaches to induce such a protective CTL response in the mucosa. Here for the first time we show that intrarectal immunization with a synthetic, multideterminant HIV peptide plus cholera toxin adjuvant induced long-lasting, antigen-specific CTL memory in both the inductive (Peyer's patch) and effector (lamina propria) mucosal sites, as well as in systemic sites (spleen), whereas systemic immunization induced specific CTL only in the spleen. Cholera toxin adjuvant, while enhancing the response, was not essential. The CTL recognized target cells either pulsed with HIV peptide or expressing endogenous whole envelope glycoprotein of Mr 160,000 (gp160). Exploring the requirements for CTL induction, we show that mucosal CTL responses are both interleukin 12 and interferon-gamma dependent by using antibody-treated and knock-out mice. Finally, to determine whether a mucosal response is actually protective against local mucosal challenge with virus, we show that intrarectal immunization with the synthetic HIV peptide vaccine protected mice against infection via mucosal challenge with a recombinant vaccinia virus expressing HIV-1IIIB gp160. These studies provide an approach to development of an HIV vaccine that induces CTL immunity in the mucosal and systemic immune systems and protects against mucosal infection with a virus expressing HIV-1 gp160.

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Year:  1998        PMID: 9465081      PMCID: PMC19159          DOI: 10.1073/pnas.95.4.1709

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  47 in total

1.  Selective expansion of high- or low-avidity cytotoxic T lymphocytes and efficacy for adoptive immunotherapy.

Authors:  M A Alexander-Miller; G R Leggatt; J A Berzofsky
Journal:  Proc Natl Acad Sci U S A       Date:  1996-04-30       Impact factor: 11.205

Review 2.  Novel approaches to peptide and engineered protein vaccines for HIV using defined epitopes: advances in 1994-1995.

Authors:  J A Berzofsky; I J Berkower
Journal:  AIDS       Date:  1995       Impact factor: 4.177

3.  Mucosal or targeted lymph node immunization of macaques with a particulate SIVp27 protein elicits virus-specific CTL in the genito-rectal mucosa and draining lymph nodes.

Authors:  L S Klavinskis; L A Bergmeier; L Gao; E Mitchell; R G Ward; G Layton; R Brookes; N J Meyers; T Lehner
Journal:  J Immunol       Date:  1996-09-15       Impact factor: 5.422

4.  Intranasal immunization with CTL epitope peptides from HIV-1 or ovalbumin and the mucosal adjuvant cholera toxin induces peptide-specific CTLs and protection against tumor development in vivo.

Authors:  A Porgador; H F Staats; B Faiola; E Gilboa; T J Palker
Journal:  J Immunol       Date:  1997-01-15       Impact factor: 5.422

5.  HIV-specific immunity following immunization with HIV synthetic envelope peptides in asymptomatic HIV-infected patients.

Authors:  L A Pinto; J A Berzofsky; K R Fowke; R F Little; F Merced-Galindez; R Humphrey; J Ahlers; N Dunlop; R B Cohen; S M Steinberg; P Nara; G M Shearer; R Yarchoan
Journal:  AIDS       Date:  1999-10-22       Impact factor: 4.177

6.  Antibody-dependent enhancement of human immunodeficiency virus type 1 (HIV-1) infection in vitro by serum from HIV-1-infected and passively immunized chimpanzees.

Authors:  W E Robinson; D C Montefiori; W M Mitchell; A M Prince; H J Alter; G R Dreesman; J W Eichberg
Journal:  Proc Natl Acad Sci U S A       Date:  1989-06       Impact factor: 11.205

7.  Identification of RANTES, MIP-1 alpha, and MIP-1 beta as the major HIV-suppressive factors produced by CD8+ T cells.

Authors:  F Cocchi; A L DeVico; A Garzino-Demo; S K Arya; R C Gallo; P Lusso
Journal:  Science       Date:  1995-12-15       Impact factor: 47.728

8.  An immunodominant epitope of the human immunodeficiency virus envelope glycoprotein gp160 recognized by class I major histocompatibility complex molecule-restricted murine cytotoxic T lymphocytes.

Authors:  H Takahashi; J Cohen; A Hosmalin; K B Cease; R Houghten; J L Cornette; C DeLisi; B Moss; R N Germain; J A Berzofsky
Journal:  Proc Natl Acad Sci U S A       Date:  1988-05       Impact factor: 11.205

9.  Effects of IL-12 on helper T cell-dependent immune responses in vivo.

Authors:  A J McKnight; G J Zimmer; I Fogelman; S F Wolf; A K Abbas
Journal:  J Immunol       Date:  1994-03-01       Impact factor: 5.422

10.  Regulation of the interleukin (IL)-12R beta 2 subunit expression in developing T helper 1 (Th1) and Th2 cells.

Authors:  S J Szabo; A S Dighe; U Gubler; K M Murphy
Journal:  J Exp Med       Date:  1997-03-03       Impact factor: 14.307

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  91 in total

1.  Gp96 SIV Ig immunization induces potent polyepitope specific, multifunctional memory responses in rectal and vaginal mucosa.

Authors:  Natasa Strbo; Monica Vaccari; Savita Pahwa; Michael A Kolber; Eva Fisher; Louis Gonzalez; Melvin N Doster; Anna Hryniewicz; Barbara K Felber; George N Pavlakis; Genoveffa Franchini; Eckhard R Podack
Journal:  Vaccine       Date:  2011-01-28       Impact factor: 3.641

Review 2.  Mucosal immunity: overcoming the barrier for induction of proximal responses.

Authors:  Brent S McKenzie; Jamie L Brady; Andrew M Lew
Journal:  Immunol Res       Date:  2004       Impact factor: 2.829

3.  Transcutaneous immunization induces mucosal CTLs and protective immunity by migration of primed skin dendritic cells.

Authors:  Igor M Belyakov; Scott A Hammond; Jeffrey D Ahlers; Gregory M Glenn; Jay A Berzofsky
Journal:  J Clin Invest       Date:  2004-04       Impact factor: 14.808

4.  Unique Th1/Th2 phenotypes induced during priming and memory phases by use of interleukin-12 (IL-12) or IL-28B vaccine adjuvants in rhesus macaques.

Authors:  Matthew P Morrow; Jian Yan; Panyupa Pankhong; Bernadette Ferraro; Mark G Lewis; Amir S Khan; Niranjan Y Sardesai; David B Weiner
Journal:  Clin Vaccine Immunol       Date:  2010-08-04

5.  Route of adenovirus-based HIV-1 vaccine delivery impacts the phenotype and trafficking of vaccine-elicited CD8+ T lymphocytes.

Authors:  David R Kaufman; Maytal Bivas-Benita; Nathaniel L Simmons; Darby Miller; Dan H Barouch
Journal:  J Virol       Date:  2010-03-31       Impact factor: 5.103

6.  Mucosal and systemic anti-HIV immunity controlled by A20 in mouse dendritic cells.

Authors:  Bangxing Hong; Xiao-Tong Song; Lisa Rollins; Lindsey Berry; Xue F Huang; Si-Yi Chen
Journal:  J Clin Invest       Date:  2011-01-04       Impact factor: 14.808

7.  Lower levels of gamma interferon expressed by a pseudotyped single-cycle simian immunodeficiency virus enhance immunogenicity in rats.

Authors:  Yue Peng; Fan-ching Lin; Paulo H Verardi; Leslie A Jones; Tilahun D Yilma
Journal:  J Virol       Date:  2008-12-10       Impact factor: 5.103

8.  A consecutive priming-boosting vaccination of mice with simian immunodeficiency virus (SIV) gag/pol DNA and recombinant vaccinia virus strain DIs elicits effective anti-SIV immunity.

Authors:  Kenji Someya; Ke-Qin Xin; Kazuhiro Matsuo; Kenji Okuda; Naoki Yamamoto; Mitsuo Honda
Journal:  J Virol       Date:  2004-09       Impact factor: 5.103

Review 9.  Memories that last forever: strategies for optimizing vaccine T-cell memory.

Authors:  Jeffrey D Ahlers; Igor M Belyakov
Journal:  Blood       Date:  2009-11-10       Impact factor: 22.113

10.  Induction of mucosal and systemic neutralizing antibodies against human immunodeficiency virus type 1 (HIV-1) by oral immunization with bovine Papillomavirus-HIV-1 gp41 chimeric virus-like particles.

Authors:  Hongtao Zhang; Yujun Huang; Raja Fayad; Gregory T Spear; Liang Qiao
Journal:  J Virol       Date:  2004-08       Impact factor: 5.103

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