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MMP-8 causes leftward shift in end-diastolic pressure-volume relationship and may explain the development of
Ida Maiorov1, Konstantin Bagrov1, Roy Efraim2
1Cardiovascular Research, Faculty of Biomedical Engineering, Technion-IIT, Haifa, Israel.
Abstract:
Septic cardiomyopathy (SCM) with diastolic dysfunction carries a poor prognosis, and the mechanisms underlying the development of diastolic dysfunction remain unclear. Matrix metalloproteinase-8 (MMP-8) is released from neutrophils and degrades collagen I. MMP-8 levels correlate with SCM severity. We scrutinized, for the first time, the direct impact of MMP-8 on cardiac systolic and diastolic functions. Isolated rat hearts were perfused with Krebs-Henseleit solution in a Langendorff setup with computer-controlled filling pressures of both ventricles in an isovolumetric regime. The end-diastolic pressure (EDP) varied periodically between 3 and 20 mmHg. After baseline recordings, MMP-8 (100 µg/mL) was added to the perfusion. Short-axis views of both ventricles were continuously acquired by echocardiography. MMP-8 perfusion resulted in a progressive decline in peak systolic pressures (Psys) in both ventricles, but without significant changes in their end-systolic pressure-area relationships (ESPARs). Counterintuitively, conspicuous leftward shifts of the end-diastolic pressure-area relationships (EDPARs) were observed in both ventricles. The left ventricle (LV) end-diastolic area (EDA) decreased by 32.8 ± 5.7% (P = 0.008) at an EDP of 10.5 ± 0.4 mmHg, when LV Psys dropped by 20%. The decline of Psys was primarily due to the decrease in EDA, and restoring the baseline EDA by increasing EDP recovered 81.33 ± 5.87% of the pressure drop. Collagen I generates tensile (eccentric) stress, and its degradation by MMP-8 causes end-diastolic pressure-volume relationship (EDPVR) leftward shift, resulting in diastolic and systolic dysfunctions. The diastolic dysfunction explains the clinically observed fluid unresponsiveness, whereas the decrease in end-diastolic volume (EDV) diminishes the systolic functions. MMP-8 can explain the development of SCM with diastolic dysfunction.NEW & NOTEWORTHY MMP-8, released from activated neutrophils and macrophages, is markedly elevated in sepsis, correlating with sepsis severity and mortality. MMP-8 targets collagen I of the cardiac ECM and induces diastolic dysfunction with fluid unresponsiveness, associated with decreased EDV, reduced sarcomere length, and diminished systolic function. Unlike other MMPs that predominantly cleave collagen-III and contribute to cardiac dilatation, thereby increasing sarcomere length, MMP-8 leads to a leftward shift in the EDPVR, resulting in diastolic and systolic dysfunctions.
Insights
Matrix metalloproteinase-8 (MMP-8) causes septic cardiomyopathy by degrading cardiac collagen I, leading to diastolic dysfunction and reduced systolic function. This explains fluid unresponsiveness and poor prognosis in sepsis patients.
Area of Science:
- Cardiovascular Physiology
- Biochemistry
- Sepsis Pathophysiology
Background:
- Septic cardiomyopathy (SCM) significantly impacts patient prognosis, with unclear mechanisms for diastolic dysfunction.
- Matrix metalloproteinase-8 (MMP-8), released during sepsis, degrades collagen I and correlates with SCM severity.
Purpose of the Study:
- To investigate the direct effects of MMP-8 on cardiac systolic and diastolic functions.
- To elucidate the role of MMP-8 in the development of septic cardiomyopathy.
Main Methods:
- Isolated rat hearts were perfused using a Langendorff setup with controlled ventricular filling pressures.
- Echocardiography was used to continuously monitor ventricular dimensions and pressures.
- MMP-8 was added to the perfusion solution to assess its impact on cardiac function.
Main Results:
- MMP-8 perfusion progressively decreased peak systolic pressures in both ventricles.
- A significant leftward shift in end-diastolic pressure-area relationships (EDPARs) was observed, indicating impaired diastolic function.
- Left ventricular end-diastolic area decreased, contributing to reduced systolic pressure and diminished cardiac output.
Conclusions:
- MMP-8-induced degradation of collagen I shifts the end-diastolic pressure-volume relationship (EDPVR) leftward, causing diastolic and systolic dysfunction in septic cardiomyopathy.
- The observed diastolic dysfunction explains fluid unresponsiveness, while reduced end-diastolic volume impairs systolic function.
- MMP-8 is a key mediator in the development of septic cardiomyopathy with diastolic dysfunction.
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