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2.
Folia Microbiol (Praha) ; 62(1): 73-87, 2017 Jan.
Article in English | MEDLINE | ID: mdl-27709447

ABSTRACT

HIV-1 infection cannot be cured as it persists in latently infected cells that are targeted neither by the immune system nor by available therapeutic approaches. Consequently, a lifelong therapy suppressing only the actively replicating virus is necessary. The latent reservoir has been defined and characterized in various experimental models and in human patients, allowing research and development of approaches targeting individual steps critical for HIV-1 latency establishment, maintenance, and reactivation. However, additional mechanisms and processes driving the remaining low-level HIV-1 replication in the presence of the suppressive therapy still remain to be identified and targeted. Current approaches toward HIV-1 cure involve namely attempts to reactivate and purge HIV latently infected cells (so-called "shock and kill" strategy), as well as approaches involving gene therapy and/or gene editing and stem cell transplantation aiming at generation of cells resistant to HIV-1. This review summarizes current views and concepts underlying different approaches aiming at functional or sterilizing cure of HIV-1 infection.


Subject(s)
Anti-HIV Agents/therapeutic use , HIV Infections/drug therapy , HIV Infections/virology , HIV-1/drug effects , HIV-1/physiology , Virus Latency/drug effects , Biomedical Research/trends , Drug Discovery/trends , Humans
3.
PLoS One ; 11(12): e0167927, 2016.
Article in English | MEDLINE | ID: mdl-27930707

ABSTRACT

Although stinging nettle (Urtica dioica) has been shown to reduce HM (heavy metal) content in soil, its wider phytoremediation potential has been neglected. Urtica dioica was cultivated in soils contaminated with HMs or polychlorinated biphenyls (PCBs). After four months, up to 33% of the less chlorinated biphenyls and 8% of HMs (Zn, Pb, Cd) had been removed. Bacteria were isolated from the plant tissue, with the endophytic bacteria Bacillus shackletonii and Streptomyces badius shown to have the most significant effect. These bacteria demonstrated not only benefits for plant growth, but also extreme tolerance to As, Zn and Pb. Despite these results, the native phytoremediation potential of nettles could be improved by biotechnologies. Transient expression was used to investigate the functionality of the most common constitutive promoter, CaMV 35S in Urtica dioica. This showed the expression of the CUP and bphC transgenes. Collectively, our findings suggest that remediation by stinging nettle could have a much wider range of applications than previously thought.


Subject(s)
Biodegradation, Environmental , Genetic Engineering/methods , Metals, Heavy/metabolism , Plants, Genetically Modified/metabolism , Polychlorinated Biphenyls/metabolism , Promoter Regions, Genetic , Soil Pollutants/metabolism , Urtica dioica/metabolism , Cadmium/metabolism , Gene Expression Regulation, Plant/genetics , Lead/metabolism , Metals, Heavy/analysis , Plants, Genetically Modified/genetics , Polychlorinated Biphenyls/analysis , Promoter Regions, Genetic/genetics , Soil/chemistry , Urtica dioica/genetics , Zinc/metabolism
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