Literature DB >> 10519932

Distribution of adjuvant MF59 and antigen gD2 after intramuscular injection in mice.

M Dupuis1, D M McDonald, G Ott.   

Abstract

MF59, which is an adjuvant approved for human use, typically elicits higher antibody titers than alum when used in combination with a variety of recombinant and natural subunit antigens. The mechanisms responsible for the adjuvant action of MF59 are not fully understood. In particular, little is known about the in vivo distribution of MF59 and of antigen after intramuscular (i.m.) injection. The goal of the present study was to determine the distribution of MF59 injected with soluble antigen gD2 from type 2 herpes simplex virus (HSV) and to compare the distribution of gD2 injected with or without MF59. At 4 h, 36% of the injected dose of labeled MF59 was in the quadriceps muscle and about 50% was in the inguinal fat surrounding the muscle. Half of the initial amount of labeled MF59 in muscle was detected 42 h after injection. The amount of labeled MF59 in the draining lymph nodes was maximal 2 d after injection, which represented 0.1-0.3% of the injected dose. At 4 h, 12% of the injected dose of labeled gD2 was found in the muscle. The presence of MF59 did not significantly modify the distribution of gD2. The results indicate that MF59 and gD2 distribute and are cleared independently after i.m. injection. Importantly, MF59 is unlikely to have a repository effect, whereby it slowly releases the antigen.

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Year:  1999        PMID: 10519932     DOI: 10.1016/s0264-410x(99)00263-7

Source DB:  PubMed          Journal:  Vaccine        ISSN: 0264-410X            Impact factor:   3.641


  26 in total

1.  MF59 emulsion is an effective delivery system for a synthetic TLR4 agonist (E6020).

Authors:  Barbara C Baudner; Vanessa Ronconi; Daniele Casini; Marco Tortoli; Jina Kazzaz; Manmohan Singh; Lynn D Hawkins; Andreas Wack; Derek T O'Hagan
Journal:  Pharm Res       Date:  2009-03-03       Impact factor: 4.200

2.  Sustained antigen availability during germinal center initiation enhances antibody responses to vaccination.

Authors:  Hok Hei Tam; Mariane B Melo; Myungsun Kang; Jeisa M Pelet; Vera M Ruda; Maria H Foley; Joyce K Hu; Sudha Kumari; Jordan Crampton; Alexis D Baldeon; Rogier W Sanders; John P Moore; Shane Crotty; Robert Langer; Daniel G Anderson; Arup K Chakraborty; Darrell J Irvine
Journal:  Proc Natl Acad Sci U S A       Date:  2016-10-04       Impact factor: 11.205

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Authors:  Tyson J Moyer; Andrew C Zmolek; Darrell J Irvine
Journal:  J Clin Invest       Date:  2016-03-01       Impact factor: 14.808

Review 4.  Adjuvanted influenza vaccines.

Authors:  John S Tregoning; Ryan F Russell; Ekaterina Kinnear
Journal:  Hum Vaccin Immunother       Date:  2018-01-25       Impact factor: 3.452

5.  Modulation of adaptive immunity by different adjuvant-antigen combinations in mice lacking Nod2.

Authors:  Lilian O Moreira; Amber M Smith; Ashley A DeFreitas; Joseph E Qualls; Karim C El Kasmi; Peter J Murray
Journal:  Vaccine       Date:  2008-09-27       Impact factor: 3.641

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Authors:  Million A Tegenge; Robert J Mitkus
Journal:  J Pharmacokinet Pharmacodyn       Date:  2013-08-04       Impact factor: 2.745

Review 7.  Prophylactic vaccine strategies and the potential of therapeutic vaccines against herpes simplex virus.

Authors:  Michael W Ferenczy
Journal:  Curr Pharm Des       Date:  2007       Impact factor: 3.116

Review 8.  Immunology and efficacy of MF59-adjuvanted vaccines.

Authors:  Eun-Ju Ko; Sang-Moo Kang
Journal:  Hum Vaccin Immunother       Date:  2018-08-29       Impact factor: 3.452

9.  Lysine: Is it worth more?

Authors:  D Datta; A Bhinge; V Chandran
Journal:  Cytotechnology       Date:  2001-07       Impact factor: 2.058

10.  Mechanisms of action of adjuvants.

Authors:  Sunita Awate; Lorne A Babiuk; George Mutwiri
Journal:  Front Immunol       Date:  2013-05-16       Impact factor: 7.561

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