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Plasma hyaluronan, hyaluronidase activity and endogenous hyaluronidase inhibition in sepsis: an experimental and clinical cohort study
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Surgical Sciences, Anaesthesiology and Intensive Care.
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Biochemistry and Microbiology.
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Sciences, Infectious Diseases.ORCID iD: 0000-0002-5407-6612
Helsinki Univ Hosp, Dept Surg, Div Anaesthesia & Intens Care Med, Intens Care Units, Helsinki, Finland..
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2021 (English)In: Intensive Care Medicine Experimental, E-ISSN 2197-425X, Vol. 9, no 1, article id 53Article in journal (Refereed) Published
Abstract [en]

Background: Plasma hyaluronan concentrations are increased during sepsis but underlying mechanisms leading to high plasma hyaluronan concentration are poorly understood. In this study we evaluate the roles of plasma hyaluronan, effective plasma hyaluronidase (HYAL) activity and its endogenous plasma inhibition in clinical and experimental sepsis. We specifically hypothesized that plasma HYAL acts as endothelial glycocalyx shedding enzyme, sheddase. Methods: Plasma hyaluronan, effective HYAL activity and HYAL inhibition were measured in healthy volunteers (n = 20), in patients with septic shock (n = 17, day 1 and day 4), in patients with acute pancreatitis (n = 7, day 1 and day 4) and in anesthetized and mechanically ventilated pigs (n = 16). Sixteen pigs were allocated (unblinded, open label) into three groups: Sepsis-1 with infusion of live Escherichia coli (E. coli) 1 x 10(8) CFU/h of 12 h (n = 5), Sepsis-2 with infusion of E. coli 1 x 10(8) CFU/h of 6 h followed by 1 x 10(9) CFU/h of the remaining 6 h (n = 5) or Control with no E. coli infusion (n = 6). Results: In experimental E. coli porcine sepsis and in time controls, plasma hyaluronan increases with concomitant decrease in effective plasma HYAL activity and increase of endogenous HYAL inhibition. Plasma hyaluronan increased in patients with septic shock but not in acute pancreatitis. Effective plasma HYAL was lower in septic shock and acute pancreatitis as compared to healthy volunteers, while plasma HYAL inhibition was only increased in septic shock. Conclusion: Elevated plasma hyaluronan levels coincided with a concomitant decrease in effective plasma HYAL activity and increase of endogenous plasma HYAL inhibition both in experimental and clinical sepsis. In acute pancreatitis, effective plasma HYAL activity was decreased which was not associated with increased plasma hyaluronan concentrations or endogenous HYAL inhibition. The results suggest that plasma HYAL does not act as sheddase in sepsis or pancreatitis.

Place, publisher, year, edition, pages
Springer Nature Springer Nature, 2021. Vol. 9, no 1, article id 53
Keywords [en]
Hyaluronan, Hyaluronidase, Hyaluronidase inhibitor, Sepsis, Pancreatitis, Glycocalyx, Sheddase
National Category
Cell and Molecular Biology Anesthesiology and Intensive Care Clinical Medicine
Identifiers
URN: urn:nbn:se:uu:diva-457912DOI: 10.1186/s40635-021-00418-3ISI: 000705396100001PubMedID: 34632531OAI: oai:DiVA.org:uu-457912DiVA, id: diva2:1609535
Available from: 2021-11-08 Created: 2021-11-08 Last updated: 2026-05-05Bibliographically approved
In thesis
1. Dynamics of Hyaluronan and Related Proteins in Septic Shock
Open this publication in new window or tab >>Dynamics of Hyaluronan and Related Proteins in Septic Shock
2026 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

Septic shock results from a dysregulated host response to infection, leading to life-threatening organ dysfunction. Limited treatment options and a heterogeneous, complex pathophysiology make septic shock a major challenge for clinicians and researchers. Hyaluronan is a versatile molecule that may influence several biological processes disrupted in septic shock, including macro- and microcirculation, endothelial and glycocalyx integrity, intravascular volume, and inflammation. This thesis aimed to deepen understanding of hyaluronan and its associated proteins in septic shock and to explore potential new treatments.

Study I analysed plasma hyaluronan, hyaluronidase activity, and endogenous hyaluronidase inhibition in experimental and clinical septic shock and in acute alcohol-related pancreatitis. Both the experimental control group and septic shock groups showed increased plasma hyaluronan and hyaluronidase inhibition with decreased hyaluronidase activity. This pattern was also observed in clinical septic shock, but in alcohol-related pancreatitis only plasma hyaluronidase activity was reduced.

Study II evaluated high-molecular-weight hyaluronan as an adjuvant to fluid resuscitation at the onset of septic shock in an experimental peritonitis model. A hyaluronan injection followed by infusion throughout the experiment did not reduce resuscitation requirements or alter the inflammatory response.

Study III investigated higher exposure to high-molecular-weight hyaluronan during the early phase of peritonitis-induced septic shock. Hyaluronan infusion, started immediately after induction of peritonitis, did not prevent vascular depletion after 6 hours, nor did it preserve glycocalyx integrity.

Study IV compared proteomic profiles of hyaluronan-related proteins between septic shock and acute alcohol-related pancreatitis. 663 proteins were identified of which 231 were up- or downregulated in septic shock and fifteen were identified as hyaluronan-related. Changes were more pronounced on day 1 than on day 4, and more marked in septic shock than in pancreatitis. Heavy chains of the inter-alpha-inhibitor family showed marked changes: ITIH1, ITIH2, and ITIH4 were decreased, whereas ITIH3 was increased.

In summary, plasma hyaluronan and endogenous hyaluronidase inhibition increased whereas hyaluronidase activity decreased in experimental and clinical septic shock. Supraphysiological hyaluronan concentrations did not prevent intravascular volume depletion, nor did they alter the inflammatory response or preserve glycocalyx integrity. Proteomic profiles of hyaluronan-related proteins differed markedly between septic shock and alcohol-induced pancreatitis. 

Place, publisher, year, edition, pages
Uppsala: Acta Universitatis Upsaliensis, 2026. p. 78
Series
Digital Comprehensive Summaries of Uppsala Dissertations from the Faculty of Medicine, ISSN 1651-6206 ; 2280
Keywords
Intensive care, Critical Care, Sepsis, Septic shock, Hyaluronan, Hyaluronidase, Hyaluronidase inhibitor, Inter-alpha-inhibitor, Pre-alpha-trypsin inhibitor, Glycocalyx, Drag-reducing polymers
National Category
Anesthesiology and Intensive Care
Research subject
Medical Science
Identifiers
urn:nbn:se:uu:diva-581137 (URN)978-91-513-2872-0 (ISBN)
Public defence
2026-08-28, H:son Holmdahlsalen, Uppsala University Hospital, entrance 100, Uppsala, 13:00 (English)
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Supervisors
Available from: 2026-06-04 Created: 2026-05-05 Last updated: 2026-06-04

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van der Heijden, JaapKolliopoulos, ConstantinosSkorup, PaulHeldin, ParaskeviHultström, MichaelTenhunen, Jyrki

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