Vaginal microbicides:: detecting toxicities in vivo that paradoxically increase pathogen transmission

被引:123
作者
Cone, Richard A. [1 ]
Hoen, Timothy
Wong, XiXi
Abusuwwa, Raed
Anderson, Deborah J.
Moench, Thomas R.
机构
[1] Johns Hopkins Univ, Mucosal Protect Lab, Dept Biophys, Baltimore, MD 21218 USA
[2] ReProtect Inc, Baltimore, MD 21286 USA
[3] Boston Univ, Boston, MA 02118 USA
关键词
D O I
10.1186/1471-2334-6-90
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
Background: Microbicides must protect against STD pathogens without causing unacceptable toxic effects. Microbicides based on nonoxynol-9 (N9) and other detergents disrupt sperm, HSV and HIV membranes, and these agents are effective contraceptives. But paradoxically N9 fails to protect women against HIV and other STD pathogens, most likely because it causes toxic effects that increase susceptibility. The mouse HSV-2 vaginal transmission model reported here: ( a) Directly tests for toxic effects that increase susceptibility to HSV-2, (b) Determines in vivo whether a microbicide can protect against HSV-2 transmission without causing toxicities that increase susceptibility, and ( c) Identifies those toxic effects that best correlate with the increased HSV susceptibility. Methods: Susceptibility was evaluated in progestin-treated mice by delivering a low-dose viral inoculum (0.1 ID50) at various times after delivering the candidate microbicide to detect whether the candidate increased the fraction of mice infected. Ten agents were tested - five detergents: nonionic ( N9), cationic ( benzalkonium chloride, BZK), anionic ( sodium dodecylsulfate, SDS), the pair of detergents in C31G (C(14)AO and C16B); one surface active agent ( chlorhexidine); two non-detergents ( BufferGel(R), and sulfonated polystyrene, SPS); and HEC placebo gel ( hydroxyethylcellulose). Toxic effects were evaluated by histology, uptake of a 'dead cell' dye, colposcopy, enumeration of vaginal macrophages, and measurement of inflammatory cytokines. Results: A single dose of N9 protected against HSV-2 for a few minutes but then rapidly increased susceptibility, which reached maximum at 12 hours. When applied at the minimal concentration needed for brief partial protection, all five detergents caused a subsequent increase in susceptibility at 12 hours of similar to 20-30-fold. Surprisingly, colposcopy failed to detect visible signs of the N9 toxic effect that increased susceptibility at 12 hours. Toxic effects that occurred contemporaneously with increased susceptibility were rapid exfoliation and re-growth of epithelial cell layers, entry of macrophages into the vaginal lumen, and release of one or more inflammatory cytokines (Il-1 beta, KC, MIP1 alpha, RANTES). The non-detergent microbicides and HEC placebo caused no significant increase in susceptibility or toxic effects. Conclusion: This mouse HSV-2 model provides a sensitive method to detect microbicide-induced toxicities that increase susceptibility to infection. In this model, there was no concentration at which detergents provided protection without significantly increasing susceptibility.
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页数:16
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  • [1] Microbicide efficacy and toxicity tests in a mouse model for vaginal transmission of Chlamydia trachomatis
    Achilles, SL
    Shete, PB
    Whaley, KJ
    Moench, TR
    Cone, RA
    [J]. SEXUALLY TRANSMITTED DISEASES, 2002, 29 (11) : 655 - 664
  • [2] In vivo distribution of a vaginal gel: MRI evaluation of the effects of gel volume, time and simulated intercourse
    Barnhart, KT
    Pretorius, ES
    Timbers, K
    Shera, D
    Shabbout, M
    Malamud, D
    [J]. CONTRACEPTION, 2004, 70 (06) : 498 - 505
  • [3] Lesson learned and dispelled myths: Three-dimensional imaging of the human vagina
    Barnhart, KT
    Pretorius, ES
    Malamud, D
    [J]. FERTILITY AND STERILITY, 2004, 81 (05) : 1383 - 1384
  • [4] Distribution of a spermicide containing Nonoxynol-9 in the vaginal canal and the upper female reproductive tract
    Barnhart, KT
    Stolpen, A
    Pretorius, ES
    Malamud, D
    [J]. HUMAN REPRODUCTION, 2001, 16 (06) : 1151 - 1154
  • [5] Microbicides - evaluating multiple formulations of C31G
    Bax, R
    Douville, K
    McCormick, D
    Rosenberg, M
    Higgins, J
    Bowden, M
    [J]. CONTRACEPTION, 2002, 66 (05) : 365 - 368
  • [6] Evaluations of unformulated and formulated dendrimer-based microbicide candidates in mouse and guinea pig models of genital herpes
    Bernstein, DI
    Stanberry, LR
    Sacks, S
    Ayisi, NK
    Gong, YH
    Ireland, J
    Mumper, RJ
    Holan, G
    Matthews, B
    McCarthy, T
    Bournel, N
    [J]. ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2003, 47 (12) : 3784 - 3788
  • [7] The topical microbicide PRO 2000 protects against genital herpes infection in a mouse model
    Bourne, N
    Bernstein, DI
    Ireland, J
    Sonderfan, AJ
    Profy, AT
    Stanberry, LR
    [J]. JOURNAL OF INFECTIOUS DISEASES, 1999, 180 (01) : 203 - 205
  • [8] Poly(sodium 4-styrene sulfonate):: evaluation of a topical microbicide gel against herpes simplex virus type 2 and Chlamydia trachomatis infections in mice
    Bourne, N
    Zaneveld, LJD
    Ward, JA
    Ireland, JP
    Stanberry, LR
    [J]. CLINICAL MICROBIOLOGY AND INFECTION, 2003, 9 (08) : 816 - 822
  • [9] Sulfated polysaccharides block chlamydia infection in vitro, but do not protect mice from vaginal inoculation
    Burillo, CA
    Fontenot, JD
    Phillips, DM
    [J]. MICROBIAL PATHOGENESIS, 1998, 24 (04) : 253 - 256
  • [10] Toxicity, inflammation, and anti-human immunodeficiency virus type 1 activity following exposure to chemical moieties of C31G
    Catalone, BJ
    Miller, SR
    Ferguson, ML
    Malamud, D
    Kish-Catalone, T
    Thakkar, NJ
    Krebs, FC
    Howett, MK
    Wigdahl, B
    [J]. BIOMEDICINE & PHARMACOTHERAPY, 2005, 59 (08) : 430 - 437