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HSV-Mediated Transgene Expression of Chimeric Constructs to Study Behavioral Function of GPCR Heteromers in Mice
Published on: July 9, 2016
SOCS4 expressed by recombinant HSV protects against cytokine storm in a mouse model
Shuqi Ren1, Xiaoqing Chen2, Rongquan Huang3
1Department of Microbiology and Immunology, Guangzhou Medical University, Guangzhou, Guangdong 510182, P.R. China.
Abstract:
Oncolytic viruses are genetically engineered viruses designed for the treatment of solid tumors, and are often coupled with the antitumor immunity of the host. The challenge of using oncolytic herpes simplex virus (oHSV) as an efficacious oncolytic agent is the potential host tissue damage caused by the production of a range of cytokines following intratumoral oHSV injection. An HSV‑suppressor of cytokine signaling 4 (SOCS4) recombinant virus was created to investigate whether it inhibits cytokine storm. Recombinant HSV‑SOCS4 and HSV‑1(F) were used to infect mice, and levels of several representative cytokines, including monocyte chemoattractant protein‑1, interleukin (IL)‑1β, tumor necrosis factor‑α, IL‑6 and interferon γ, in serum and bronchoalveolar lavage fluid (BALF) of infected mice were determined, and immune cells in BALF and spleen were enumerated. Lung damage, virus titers in the lung, body weight and survival rates of infected mice were also determined and compared between the two groups. The cytokine concentration of HSV‑SOCS4‑infected mice was significantly decreased compared with that of HSV‑1(F)‑infected mice in BALF and serum, and a smaller number of cluster of differentiation (CD)11b+ cells of BALF, and CD8+CD62L+ T cells and CD4+CD62L+ T cells of the spleen were also identified in HSV‑SOCS4‑infected mice. HSV‑SOCS4‑infected mice exhibited slight lung damage, a decrease in body weight loss and a 100% survival rate. The results of the present study indicated that SOCS4 protein may be a useful regulator to inhibit cytokine overproduction, and that HSV‑SOCS4 may provide a possible solution to control cytokine storm and its consequences following induction by oncolytic virus treatment.
Insights
Oncolytic herpes simplex virus (oHSV) therapy can cause cytokine storm. A new HSV-SOCS4 virus reduced cytokine levels, immune cell infiltration, and lung damage in mice, leading to 100% survival.
Area of Science:
- Oncolytic virotherapy
- Immunology
- Molecular biology
Background:
- Oncolytic viruses, like oncolytic herpes simplex virus (oHSV), are promising cancer treatments.
- oHSV can trigger a dangerous "cytokine storm" due to host immune responses, causing tissue damage.
- Suppressor of Cytokine Signaling 4 (SOCS4) is a protein that regulates immune signaling.
Purpose of the Study:
- To investigate if a recombinant oHSV expressing SOCS4 (HSV-SOCS4) can mitigate the cytokine storm induced by oHSV.
- To evaluate the impact of HSV-SOCS4 on immune cell infiltration, lung damage, and survival rates in a mouse model.
Main Methods:
- Mice were infected with either HSV-SOCS4 or a control virus (HSV-1(F)).
- Cytokine levels (MCP-1, IL-1β, TNF-α, IL-6, IFN-γ) were measured in serum and bronchoalveolar lavage fluid (BALF).
- Immune cell populations in BALF and spleen, lung damage, virus titers, body weight, and survival rates were assessed.
Main Results:
- HSV-SOCS4 infection significantly reduced pro-inflammatory cytokine concentrations in BALF and serum compared to HSV-1(F).
- Reduced infiltration of immune cells (CD11b+, CD8+ T cells, CD4+ T cells) was observed in HSV-SOCS4 treated mice.
- Mice treated with HSV-SOCS4 showed minimal lung damage, less body weight loss, and a 100% survival rate.
Conclusions:
- SOCS4 protein can effectively inhibit oHSV-induced cytokine overproduction.
- HSV-SOCS4 represents a potential strategy to control cytokine storm and its adverse effects in oncolytic virus therapy.
- This engineered virus may enhance the safety and efficacy of oHSV-based cancer treatments.
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