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A Perspective on How Fibrinaloid Microclots and Platelet Pathology May be Applied in Clinical Investigations
Etheresia Pretorius1,2, Douglas B Kell1,2,3
1Department of Physiological Sciences, Faculty of Science, Stellenbosch University, Stellenbosch, Matieland, South Africa.
Abstract:
Microscopy imaging has enabled us to establish the presence of fibrin(ogen) amyloid (fibrinaloid) microclots in a range of chronic, inflammatory diseases. Microclots may also be induced by a variety of purified substances, often at very low concentrations. These molecules include bacterial inflammagens, serum amyloid A, and the S1 spike protein of severe acute respiratory syndrome coronavirus 2. Here, we explore which of the properties of these microclots might be used to contribute to differential clinical diagnoses and prognoses of the various diseases with which they may be associated. Such properties include distributions in their size and number before and after the addition of exogenous thrombin, their spectral properties, the diameter of the fibers of which they are made, their resistance to proteolysis by various proteases, their cross-seeding ability, and the concentration dependence of their ability to bind small molecules including fluorogenic amyloid stains. Measuring these microclot parameters, together with microscopy imaging itself, along with methodologies like proteomics and imaging flow cytometry, as well as more conventional assays such as those for cytokines, might open up the possibility of a much finer use of these microclot properties in generative methods for a future where personalized medicine will be standard procedures in all clotting pathology disease diagnoses.
Insights
Microscopy reveals fibrin amyloid microclots in chronic diseases, induced by various substances. Analyzing microclot properties may aid in diagnosing and predicting disease outcomes for personalized medicine.
Area of Science:
- Biomedical Science
- Pathology
- Microscopy
Background:
- Fibrin amyloid microclots are observed in chronic inflammatory diseases.
- These microclots can be induced by various substances, including bacterial inflammagens, serum amyloid A, and SARS-CoV-2 spike protein.
Purpose of the Study:
- To investigate microclot properties for differential clinical diagnosis and prognosis.
- To explore how microclot characteristics can be utilized in personalized medicine for clotting pathology.
Main Methods:
- Microscopy imaging to detect and analyze microclots.
- Assessment of microclot properties: size, number, spectral properties, fiber diameter, proteolysis resistance, cross-seeding, and small molecule binding.
- Integration with proteomics, imaging flow cytometry, and cytokine assays.
Main Results:
- Microclot properties vary and can be quantified.
- Specific properties correlate with disease association and can be modulated by exogenous factors.
Conclusions:
- Microclot analysis offers potential for refined diagnostics and prognostics in various diseases.
- Characterizing microclots could pave the way for personalized medicine in clotting pathology.
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