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Updated: Oct 28, 2025

Human Serum Anti-aquaporin-4 Immunoglobulin G Detection by Cell-based Assay
Published on: April 5, 2019
COVID-19 vulnerabilities are intensified by declining human serum albumin levels
Andrew S Johnson1, William Winlow1,2
1Department of Biology, University of Naples Federico II, Naples, Italy.
Insights
Human serum albumin (HSA) levels impact COVID-19 severity by affecting nutrient transport. Increasing HSA may reduce injury, with a novel therapy via the hepatic portal vein proposed.
Area of Science:
- Biochemistry
- Immunology
- Pathophysiology
Background:
- COVID-19 vulnerabilities are linked to decreased human serum albumin (HSA), a key nutrient carrier.
- Low HSA levels (hypoalbuminemia) are associated with increased COVID-19 and long-COVID-19 severity.
- HSA levels influence immune response and comorbidities like diabetes and obesity in COVID-19 patients.
Purpose of the Study:
- To explore the role of human serum albumin (HSA) in COVID-19 vulnerabilities.
- To propose a mechanism linking diminished HSA binding capacity to systemic injury in COVID-19.
- To suggest a novel therapeutic approach for increasing HSA levels in COVID-19 patients.
Main Methods:
- Review of existing literature on HSA function and COVID-19 pathophysiology.
- Hypothesizing the impact of reduced HSA ligand-binding capacity on nutrient availability.
- Analysis of HSA's role in immune function and its correlation with comorbidities.
Main Results:
- Decreased HSA levels exacerbate COVID-19 vulnerabilities by impairing nutrient transport.
- Reduced HSA affects ligand concentrations in capillaries, contributing to COVID-19-related damage.
- Hypoalbuminemia is an indicator of disease severity and long-term effects.
Conclusions:
- Restoring HSA to clinical levels is crucial for compensating for infection-induced ligand overload.
- A potential therapeutic strategy involves administering HSA via the hepatic portal vein.
- Clinical trials investigating HSA therapy through the hepatic portal vein are warranted to alleviate systemic injury.
Abstract:
What is the topic of this review? Human serum albumin (HSA) a common factor in COVID-19 vulnerabilities. What advances does it highlight? Understanding of HSA capacity, and systemic vulnerabilities to COVID-19. Raising HSA in COVID-19 patients may alleviate systemic injury caused by diminished native HSA binding. A change in fluid therapy administration into the portal system of the liver is proposed to safely raise HSA levels. ABSTRACT: The specific nature of the vulnerabilities to COVID-19 are an intrinsic part of COVID-19 infection in many patients. This paper proposes that vulnerabilities to COVID-19 may be intensified by a decrease in human serum albumin (HSA) as a ligand carrier for nutrients. A mechanism for COVID-19 vulnerabilities is evident from consideration of ligand carriers such as HSA as intermediaries. We hypothesise that low levels of pool HSA binding, caused for whatever reason, affect the performance of albumin as a carrier protein reducing the availability of nutrients. Hypoalbuminaemia (low HSA) has been implicated as an indicator of COVID-19 and long-COVID-19. The levels of HSA directly affect the immune system and vulnerabilities to age, diabetes and obesity in COVID-19. Any slight reduction in available HSA has profound effects on ligand concentrations in the small capillaries where damage occurs in COVID-19. The clinical implication is that attempts should be made to return HSA to clinical levels to compensate for the additional ligands caused by infection (SARS-CoV-2 virions, antibodies and cellular breakdown products). Therapeutic albumin is usually given peripherally, and usual preparations are unbound to ligands, but we suggest that a clinical trial of HSA therapy via the hepatic portal vein should be considered.
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