Interferon-alfa induces S-phase slowing and cell death in HPV-positive human cervical carcinoma cell lines SiHa and ME-180. These effects appear mediated by PML, a nuclear bodies-associated phosphoprotein, upregulated by IFNs. It is known that PML can induce apoptosis via regulation of p53 acetylation. In these cell lines, where p53 function is inhibited by the HPV E6 oncoprotein, we are setting up a molecular approach of RNA interference technology against HPV oncoproteins to activate a specific interference in the deregulation of cell proliferation due to HPV oncogenic proteins. To date, we sougth to silence HPV-E6 using siRNA to target the specific mRNA. Following a single dose of E6 siRNA treatment of SiHa cells, we observed selectiv...
Targeted inhibition of oncogenes in tumor cells is a rational approach toward the development of can...
Although interferons (IFNs) are currently used in the treatment of various human papillomavirus (HPV...
Interferon (IFN)-beta inhibits cell proliferation and affects cell cycle in keratinocytes transforme...
Interferon-alfa induces S-phase slowing and cell death in HPV-positive human cervical carcinoma cell...
Interferon (IFN)-alfa induces a significant antiproliferative action in cervical carcinoma cells, ex...
In cervical cancer, the p53 and retinoblastoma (pRb) tumor suppressor pathways are disrupted by the ...
Human Papilloma Viruses (HPVs) are the causative agents of cervical cancer although other types of c...
Interferon (IFN)-b inhibits cell proliferation and affects cell cycle in keratinocytes transformed b...
Constant expression of E6 and E7 mRNA by high-risk human papillomaviruses (HPV) abrogates p53 and re...
Interferon (IFN)-beta induces S-phase slowing and apoptosis in human papilloma virus (HPV)-positive ...
Human cervical cancer is often associated with human papilloma virus (HPV). HPV products, such as th...
Type I Interferon (IFN) and all-trans retinoic acid (RA) inhibit cell proliferation of squamous carc...
Human papillomavirus (HPV) is the infectious agent responsible for the development of cervical cance...
Interferon (IFN)-β inhibits cell proliferation and affects cell cycle in keratinocytes transformed b...
Type I Interferon (IFN) and all-trans retinoic acid (RA) inhibit cell proliferation of squamous carc...
Targeted inhibition of oncogenes in tumor cells is a rational approach toward the development of can...
Although interferons (IFNs) are currently used in the treatment of various human papillomavirus (HPV...
Interferon (IFN)-beta inhibits cell proliferation and affects cell cycle in keratinocytes transforme...
Interferon-alfa induces S-phase slowing and cell death in HPV-positive human cervical carcinoma cell...
Interferon (IFN)-alfa induces a significant antiproliferative action in cervical carcinoma cells, ex...
In cervical cancer, the p53 and retinoblastoma (pRb) tumor suppressor pathways are disrupted by the ...
Human Papilloma Viruses (HPVs) are the causative agents of cervical cancer although other types of c...
Interferon (IFN)-b inhibits cell proliferation and affects cell cycle in keratinocytes transformed b...
Constant expression of E6 and E7 mRNA by high-risk human papillomaviruses (HPV) abrogates p53 and re...
Interferon (IFN)-beta induces S-phase slowing and apoptosis in human papilloma virus (HPV)-positive ...
Human cervical cancer is often associated with human papilloma virus (HPV). HPV products, such as th...
Type I Interferon (IFN) and all-trans retinoic acid (RA) inhibit cell proliferation of squamous carc...
Human papillomavirus (HPV) is the infectious agent responsible for the development of cervical cance...
Interferon (IFN)-β inhibits cell proliferation and affects cell cycle in keratinocytes transformed b...
Type I Interferon (IFN) and all-trans retinoic acid (RA) inhibit cell proliferation of squamous carc...
Targeted inhibition of oncogenes in tumor cells is a rational approach toward the development of can...
Although interferons (IFNs) are currently used in the treatment of various human papillomavirus (HPV...
Interferon (IFN)-beta inhibits cell proliferation and affects cell cycle in keratinocytes transforme...