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PMID: 16315230 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Anthrax vaccine powder formulations for nasal mucosal delivery.

Journal of pharmaceutical sciences ·Vol. 95 ·No. 1 ·2006-01-00 ·Pages 80-96

Jiang G, Joshi SB, Peek LJ, Brandau DT, Huang J, Ferriter MS, Woodley WD, Ford BM, Mar KD, Mikszta JA, Hwang CR, Ulrich R, Harvey NG, Middaugh CR, Sullivan VJ

Abstract

Anthrax remains a serious threat worldwide as a bioterror agent. A second-generation anthrax vaccine currently under clinical evaluation consists of a recombinant Protective Antigen (rPA) of Bacillus anthracis. We have previously demonstrated that complete protection against inhalational anthrax can be achieved in a rabbit model, by intranasal delivery of a powder rPA formulation. Here we describe the preformulation and formulation development of such powder formulations. The physical stability of rPA was studied in solution as a function of pH and temperature using circular dichroism (CD), and UV-visible absorption and fluorescence spectroscopies. Extensive aggregation of rPA was observed at physiological temperatures. An empirical phase diagram, constructed using a combination of CD and fluorescence data, suggests that rPA is most thermally stable within the pH range of 6-8. To identify potential stabilizers, a library of GRAS excipients was screened using an aggregation sensitive turbidity assay, CD, and fluorescence. Based on these stability profiles, spray freeze-dried (SFD) formulations were prepared at pH 7-8 using trehalose as stabilizer and a CpG-containing oligonucleotide adjuvant. SFD formulations displayed substantial improvement in storage stability over liquid formulations. In combination with noninvasive intranasal delivery, such powder formulations may offer an attractive approach for mass biodefense immunization.

MeSH Terms
Administration, Intranasal Anthrax Vaccines/chemistry Antigens, Bacterial/immunology Bacillus anthracis/immunology Chemistry, Pharmaceutical Drug Compounding Drug Stability Freeze Drying Powders
Chemicals
Anthrax Vaccines Antigens, Bacterial Powders
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Jiang Ge
BD Technologies, 21 Davis Dr., RTP, North Carolina 27709, USA.
Joshi Sangeeta B
Peek Laura J
Brandau Duane T
Huang Juan
Ferriter Matthew S
Woodley Wendy D
Ford Brandi M
Mar Kevin D
Mikszta John A
Hwang C Robin
Ulrich Robert
Harvey Noel G
Middaugh C Russell
Sullivan Vincent J
Article Info
Journal
Journal of pharmaceutical sciences
Abbr.
J Pharm Sci
ISSN
0022-3549
Published
2006-01-00
Pages
80-96
Language
English
Region
United States
NLM ID
2985195R
Subset
IM
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