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Pathophysiology and Potential Therapeutic Candidates for COVID-19: A Poorly Understood Arena
Arghadip Samaddar1, Malika Grover1, Vijaya Lakshmi Nag1
1Department of Microbiology, All India Institute of Medical Sciences, Jodhpur, India.
Insights
The COVID-19 pandemic requires urgent therapeutic strategies. This review explores potential treatments and pathophysiology to guide drug development for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2).
Area of Science:
- Infectious Diseases
- Virology
- Pharmacology
Background:
- Coronavirus disease 2019 (COVID-19), caused by SARS-CoV-2, is a global pandemic with no proven vaccines or drugs.
- Urgent need for therapeutic strategies to prevent disease progression and improve patient outcomes.
- Current treatment landscape includes repurposed drugs and investigational agents under evaluation.
Purpose of the Study:
- To review the pathophysiology of COVID-19.
- To summarize potential treatment candidates for COVID-19.
- To provide guidance for developing effective therapeutic strategies against SARS-CoV-2.
Main Methods:
- Literature review of existing studies on COVID-19 pathophysiology.
- Compilation and summary of investigational agents and repurposed drugs for COVID-19 treatment.
- Analysis of limitations in current research, including patient selection and outcome measures.
Main Results:
- Several drug classes are being investigated, including antivirals, antimalarials, antiparasitics, biologics, and cellular therapies.
- Existing observational studies show inconclusive evidence due to methodological limitations.
- Understanding COVID-19 pathology is crucial for identifying effective therapeutic targets.
Conclusions:
- There is a critical need for well-designed clinical trials with clear patient selection and relevant outcomes.
- Further research into COVID-19 pathophysiology is essential for targeted drug development.
- Effective therapeutic strategies are urgently required to combat the ongoing pandemic.
Abstract:
Coronavirus disease 2019 (COVID-19), an acute onset pneumonia caused by a novel Betacoronavirus, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), emerged in the Wuhan City of China in December 2019 and evolved into a global pandemic. To date, there are no proven drugs or vaccines against this virus. Hence, the situation demands an urgent need to explore all potential therapeutic strategies that can be made available to prevent the disease progression and improve patient outcomes. In absence of clinically proven treatment guidelines, several repurposed drugs and investigational agents are currently being evaluated in clinical trials for their probable benefits in the treatment of COVID-19. These include antivirals (remdesivir, lopinavir/ritonavir, umifenovir, and favipiravir), interferon, antimalarials (chloroquine/hydroxychloroquine), antiparasitic drugs (ivermectin and nitazoxanide), biologics (monoclonal antibodies and interleukin receptor antagonist), cellular therapies (mesenchymal stem cells and natural killer cells), convalescent plasma, and cytokine adsorber. Though several observational studies have claimed many of these agents to be effective based on their in vitro activities and extrapolated evidence from SARS and Middle East respiratory syndrome (MERS) epidemics, the currently available data remains inconclusive because of ill-defined patient selection criteria, small sample size, lack of concurrent controls, and use of intermediary outcomes instead of patient-relevant outcomes. Moreover, there is a need to clearly define the patient populations who warrant therapy and also the timing of initiation of treatment. Understanding the disease pathology responsible for the clinical manifestations of COVID-19 is imperative to identify the potential targets for drug development. This review explains the pathophysiology of COVID-19 and summarizes the potential treatment candidates, which can provide guidance in developing effective therapeutic strategies.
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