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Potential Therapeutic Approaches Against Brain Diseases Associated with Cytomegalovirus Infections
Shao-Cheng Wang1,2, Shiu-Jau Chen3,4, Yuan-Chuan Chen5
1Jianan Psychiatric Center, Ministry of Health and Welfare, Tainan 71742, Taiwan.
Abstract:
Cytomegalovirus (CMV) is one of the major human health threats worldwide, especially for immunologically comprised patients. CMV may cause opportunistic infections, congenital infections, and brain diseases (e.g., mental retardation and glioblastoma). The etiology of brain diseases associated with human CMV (HCMV) infections is usually complex and it is particularly difficult to treat because HCMV has a life-long infection in its hosts, high mutation rate, and latent infections. Moreover, it is almost impossible to eradicate latent viruses in humans. Although there has been progress in drug discovery recently, current drugs used for treating active CMV infections are still limited in efficacy due to side effects, toxicity, and viral resistance. Fortunately, letermovir which targets the HCMV terminase complex rather than DNA polymerase with fewer adverse reactions has been approved to treat CMV infections in humans. The researchers are focusing on developing approaches against both productive and latent infections of CMV. The gene or RNA targeting approaches including the external guide sequences (EGSs)-RNase, the clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated protein 9 (Cas9) system and transcription activator-like effector nucleases (TALENs) are being investigated to remove acute and/or latent CMV infections. For the treatment of glioblastoma, vaccine therapy through targeting specific CMV antigens has improved patients' survival outcomes significantly and immunotherapy has also emerged as an alternative modality. The advanced research for developing anti-CMV agents and approaches is promising to obtain significant outcomes and expecting to have a great impact on the therapy of brain diseases associated with CMV infections.
Insights
Human Cytomegalovirus (HCMV) poses a global health threat, causing severe brain diseases. New gene-targeting therapies and immunotherapies show promise for treating both active and latent HCMV infections.
Area of Science:
- Virology
- Immunology
- Neuroscience
Background:
- Human Cytomegalovirus (HCMV) is a significant global health concern, particularly for immunocompromised individuals.
- HCMV infections can lead to opportunistic, congenital, and severe brain diseases like glioblastoma.
- Treating HCMV is challenging due to lifelong infections, high mutation rates, latency, and limited efficacy of current drugs.
Purpose of the Study:
- To review current and emerging therapeutic strategies for HCMV infections, focusing on brain diseases.
- To highlight advancements in targeting both productive and latent HCMV.
- To discuss novel approaches for glioblastoma treatment in the context of HCMV.
Main Methods:
- Review of recent advancements in anti-HCMV drug discovery, including letermovir.
- Investigation of gene and RNA targeting approaches like EGSs-RNase, CRISPR/Cas9, and TALENs.
- Exploration of vaccine therapy and immunotherapy for HCMV-associated glioblastoma.
Main Results:
- Letermovir offers a new treatment option targeting the HCMV terminase complex with fewer side effects.
- Gene/RNA targeting strategies show potential for eliminating acute and latent HCMV infections.
- CMV-targeted vaccines and immunotherapies have improved survival outcomes for glioblastoma patients.
Conclusions:
- Advanced research in anti-HCMV agents and approaches holds significant promise for treating HCMV-related brain diseases.
- Novel therapies are crucial for overcoming the challenges posed by HCMV's complex infection patterns.
- Continued development of targeted therapies is expected to greatly impact the management of HCMV-associated neurological conditions.
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