Modeling the synergy between HSV-2 and HIV and potential impact of HSV-2 therapy.
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Summary
Numerical results show that HSV-2 favors the invasion of HIV, may dramatically increase the peak as well as reducing the time-to-peak of HIV prevalence, and almost certainly has exacerbated HIV epidemics, and illustrate that the aforementioned aspects of the population dynamics can be significantly influenced by the sexual structure of the populations.
- Type
- article
- Published
- 2013-10-01
- Cited by
- 39
- References
- 30
- OpenAlex
- https://openalex.org/W2014401391
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37497292
Keywords
Population, Transmission (telecommunications), Immunology, Epidemiology, Human immunodeficiency virus (HIV)
References
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- Networks and epidemic models
- The Complete Classification for Dynamics in a Nine-Dimensional West Nile Virus Model
- Genital Herpes Has Played a More Important Role than Any Other Sexually Transmitted Infection in Driving HIV Prevalence in Africa
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- Sensitivity and Uncertainty Analysis of Complex Models of Disease Transmission: an HIV Model, as an Example
Cited by
- A model for the coupled disease dynamics of HIV and HSV-2 with mixing among and between genders.
- Sex-Structured Dynamic of Multi-Group Herpes Simplex Virus 2
- The Vaginal Acquisition and Dissemination of HIV-1 Infection in a Novel Transgenic Mouse Model Is Facilitated by Coinfection with Herpes Simplex Virus 2 and Is Inhibited by Microbicide Treatment
- An age-structured model for the coupled dynamics of HIV and HSV-2.
- A Computational Study of HSV-2 with Poor Treatment Adherence
- Investigating synergy: Mathematical models for the coupled dynamics of HIV and HSV-2 and other endemic diseases
- The AGMA1 poly(amidoamine) inhibits the infectivity of herpes simplex virus in cell lines, in human cervicovaginal histocultures, and in vaginally infected mice.
- The population‐level impact of HBV and its vaccination on HIV transmission dynamics
- Multi-host transmission dynamics of schistosomiasis and its optimal control.
- Ficus religiosa L. bark extracts inhibit infection by herpes simplex virus type 2 in vitro
- Modeling HIV disease progression and transmission at population-level: The potential impact of modifying disease progression in HIV treatment programs
- Peptides Derived from Glycoproteins H and B of Herpes Simplex Virus Type 1 and Herpes Simplex Virus Type 2 Are Capable of Blocking Herpetic Infection in vitro
- Interaction between herpesvirus entry mediator and HSV-2 glycoproteins mediates HIV-1 entry of HSV-2-infected epithelial cells.
- The traditional use of Vachellia nilotica for sexually transmitted diseases is substantiated by the antiviral activity of its bark extract against sexually transmitted viruses.
- Analysis of a Non-integer Order Model for the Coinfection of HIV and HSV-2
- Review of mathematical models of HSV-2 vaccination: Implications for vaccine development
- Acyclovir-Loaded Chitosan Nanospheres from Nano-Emulsion Templating for the Topical Treatment of Herpesviruses Infections
- Inhibition of HSV‐2 infection by pure compounds from Thymus capitatus extract in vitro
- Global dynamics of deterministic and stochastic epidemic systems with nonmonotone incidence rate
- Dynamics analysis of a Zika–dengue co-infection model with dengue vaccine and antibody-dependent enhancement
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