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Lipofuscin: Wear Pigment or Alarm Signal for Cardiac AlloGraft Vasculopathy?
Anca Otilia Farcas1,2, Mihai Ciprian Stoica3,4, Septimiu Voidazan5
1Doctoral School of Medicine and Pharmacy, George Emil Palade University of Medicine, Pharmacy, Science and Technology of Targu Mures, 540142 Targu Mures, Romania.
Insights
This study found a significant link between lipofuscin accumulation in endomyocardial biopsies and cardiac allograft vasculopathy (CAV) after heart transplantation. Lipofuscin may play a role in CAV development and could serve as an early diagnostic biomarker.
Area of Science:
- Cardiology
- Transplantation Immunology
- Pathology
Background:
- Cardiac allograft vasculopathy (CAV) is a primary cause of late mortality in heart transplant recipients, affecting approximately 50% within 10 years.
- While immune-mediated mechanisms are recognized, non-immunological factors like lipofuscin, a product of reactive oxygen species (ROS), are implicated in CAV pathogenesis.
- Identifying novel risk factors for CAV is crucial for developing targeted therapeutic strategies.
Purpose of the Study:
- To investigate the association between the quantity of lipofuscin in endomyocardial biopsies (EMB) and the presence of CAV diagnosed via coronary angiography.
- To explore lipofuscin's potential role as a biomarker for early CAV detection.
Main Methods:
- Retrospective analysis of 99 EMBs from 47 heart transplant patients who underwent coronary angiography.
- Microscopic evaluation of lipofuscin levels, intramyocardial small vessel damage, vasculitis, Quilty effect, and acute cellular/humoral rejection.
- Quantitative assessment of lipofuscin grades and correlation with CAV presence and severity.
Main Results:
- A significant association was observed between higher lipofuscin grades (2 and 3) and the presence of CAV (p=0.0001).
- Lipofuscin accumulation correlated significantly with intramyocardial small vessel damage (p=0.00014) and severe fibrosis (p=0.042).
- 17 out of 19 CAV cases (89.47%) showed lipofuscin scores of 2 or 3, suggesting lipofuscin is not merely a degradation product.
Conclusions:
- Increased intracytoplasmic lipofuscin levels are significantly associated with cardiac allograft vasculopathy (CAV) in heart transplant recipients.
- Lipofuscin may actively participate in the pathogenesis of CAV, potentially through oxidative stress-induced endothelial dysfunction and neointimal hyperplasia.
- Lipofuscin warrants further investigation as a potential early diagnostic biomarker for CAV.
Abstract:
Background: CAV (cardiac allograft vasculopathy) is considered the leading cause of late post-transplant mortality and affects approximately 50% of transplant patients at 10 years post-transplant. Its etiopathogenetic mechanism is considered to be immune-mediated, but the identification of other non-immunological risk factors could represent new therapeutic targets for this pathology. Lipofuscin is due to reactive oxygen species (ROS) and appears to have a determining role in CAV. The aim of this study is to investigate the association between the amount of lipofuscin identified on EMB (endomyocardial biopsy) from patients followed up after heart transplantation, and the presence of CAV detected by coronary angiography. Methods: This retrospective study includes 99 EMBs from 47 transplanted patients, who also had coronary angiography. The amount of lipofuscin, damage to intramyocardial small vessels, vasculitis, Quilty effect, and acute cellular and humoral rejection was evaluated microscopically. Results: 19 CAV cases (19.2%) were identified, of which 15 (68.18% of total CAV cases) were insignificant. Grade 3 lipofuscin affected equally the cases with insignificant and significant CAV, 3 cases (37.5%) from each group. Grade 2 lipofuscin was reported in 10 cases (58.8%) of insignificant CAV, respectively 1 case of significant CAV (5.9%), (p-value of 0.0001). Quantitative evaluation of lipofuscin on microscopic sections revealed 8 EMBs (8.1%) with grade 3 lipofuscin. Two cases (25.0%) with lipofuscin score 3 were associated with moderate ACR (acute cellular rejection), ISHLT 2R and 3 cases (37.5%) with lipofuscin score 3 were associated with mild ACR ISHLT 1R, the differences being statistically significant, (p = 0.0001). Lipofuscin grades 2 and 3 were associated with severe fibrosis in 6 cases (35.3%) and 2 cases (25.0%), respectively (p = 0.042). A statistically significant association between the degree of damage to the intramyocardial small vessels and the amount of intracytoplasmic lipofuscin was observed (p = 0.00014). Discussion: Our study revealed that lipofuscin was more frequently associated with CAV, fibrosis, and damaged small vessels. Oxidative stress influences lipofuscinogenesis and CAV, which leads to endothelial dysfunction and neointimal hyperplasia, which over time will produce progressive narrowing of the vascular lumen and dysfunction of the cardiac allograft. Of the total number of 19 cases with CAV, 17 (89.47%) presented a lipofuscin score of 2 or 3 concomitantly with CAV, (p = 0.0001). This could mean that lipofuscin is not a harmless degradation product. At the same time, the association of a large number of cases with lipofuscin score 2, 10 cases (58.8%) with insignificant CAV could lead to the idea of using lipofuscin as a potential biomarker in the early diagnosis of CAV. Conclusions: We evidenced a significant association between the amount of intracytoplasmic lipofuscin and CAV. Accordingly, lipofuscin might be involved in the pathogenesis of CAV. Further research is needed to clarify the exact mechanisms of this association.
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