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EN
Purpose: Hyperglycemia and increased concentrations of elastin degradation products (EDPs) are common findings in patients with diabetes, atherosclerosis and hypertension. The aim of this study was to assess the influence of high glucose, EDPs and atorvastatin on MMP-1, MMP-2, MMP-9 and TIMP1-3 gene expression in human retinal pigment epithelial cells (HRPE) in vitro. Method: HRPE were cultured for 24 hours with the substances being tested (glucose, EDPs), alone or in combination. Additionally, the cells were treated with atorvastatin in two different concentrations (1 or 10 μM). After incubation, total cellular RNA was extracted and used for gene expression evaluation. Gene expression was measured using the real-time RT-PCR technique. Results: Glucose, EDPs and atorvastatin had no impact on TIMP-1 and TIMP-3 expression. HRPE cells treated with glucose or EDPs with the addition of atorvastatin had a statistically significant decrease of TIMP-2 expression; glucose alone decreased MMP-1 expression. Atorvastatin decreased expression of all assessed genes, except TIMP-1 and TIMP-3 in a dose-dependent manner. Conclusions: Our results confirm the importance of MMPs and TIMPs in retinal vascular biology. Atorvastatin-induced MMPs gene expression can deeply affect extracellular matrix turnover, which may play an important role in the progression of ocular diseases.
EN
Endothelial dysfunction plays an important role in the development of atherosclerosis. Elastin-derived peptides (EDP), hyperglycemia, hypercholesterolemia and oxidized LDL have a proven proatherosclerotic potential. Nitric oxide generated by endothelial nitric oxide synthase (eNOS; EC 1.14.13.39) is an important vasorelaxant. Here we studied the influence of those proatherosclerotic factors on eNOS gene and protein expression in artery-derived endothelial cells. Human umbilical artery endothelial cells (HUAEC) were incubated with or without: glucose (270 mg/dl), LDL (200 mg/dl), oxidized LDL (oxLDL 25 mg/dl) or κ-elastin (0.5 and 2.5 µg/ml). Gene expression was assessed by real time RT-PCR, whilst the eNOS protein by ELISA. In cells incubated with 2.5 µg/ml of κ-elastin, a 31 % increase of eNOS mRNA expression was observed, but the protein level remained unchanged. OxLDL, LDL and glucose decreased the eNOS protein level by 74 %, 37 % and 29 %, respectively. OxLDL decreased eNOS mRNA by 42 %. LDL non-significantly decreased eNOS mRNA expression. An elevated glucose level did not affect the eNOS mRNA expression. Hyperglycemia and an elevated level of LDL, particularly oxLDL, decreased the level of eNOS protein in endothelial cells. As κ-elastin did not decrease the expression of eNOS gene in HUAEC, the proatherogenic properties of elastin-derived peptides are unlikely to be due to their influence on eNOS.
EN
WSTĘP: Angiogeneza nowotworowa jest procesem regulowanym przez wiele cytokin i czynników wzrostu, spośród których znaczącą rolę odgrywają czynnik wzrostu śródbłonka naczyń (vascular endothelial growth factor – VEGF), drugi rozpuszczalny receptor dla śródbłonkowego czynnika wzrostu (soluble vascular endothelial growth factor receptor 2 – sVEGFR-2) i galektyna-3. Dane literaturowe dotyczące oceny zmian stężenia VEGF, sVEGFR-2 oraz galekty-ny-3 w trakcie chemioterapii (chemotherapy – CTH) raka piersi (breast cancer – BC) są niejednoznaczne. Celem niniejszej pracy była analiza stężenia VEGF-A, sVEGFR-2 oraz galektyny-3 w surowicy pacjentek z rakiem piersi, rozpoczynających adjuwantową i neoadjuwantową chemioterapię oraz ocena zmian stężenia tych cytokin w trakcie leczenia. MATERIAŁ I METODY: Jednoośrodkowe badanie objęło 98 pacjentek z miejscowo zaawansowanym rakiem piersi, w tym 56 poddanych adjuwantowej i 42 neoadjuwantowej terapii. Stężenie VEGF-A, sVEGFR-2 i galektyny-3 w surowicy krwi oceniono na początku leczenia oraz po 2 miesiącach terapii. WYNIKI: Nie stwierdzono istotnych różnic pomiędzy stężeniami VEGF-A, sVEGFR-2 oraz galektyny-3 w surowicy pacjentek poddanych adjuwantowej i neoadjuwantowej chemioterapii. Nie wykazano również zależności między stężeniem tych cytokin w surowicy a stopniem zaawansowania klinicznego raka piersi. W trakcie przedoperacyjnej chemio-terapii odnotowano znaczące zwiększenie stężenia VEGF-A, sVEGFR-2 i galektyny-3, jednakże zarówno wyjściowe stężenia cytokin, jak i zmiany w czasie nie miały znaczenia predykcyjnego dla uzyskania całkowitej odpowiedzi patologicznej. WNIOSKI: Stężenia VEGF-A, sVEGFR-2 oraz galektyny-3 w surowicy nie korelują ze stopniem zaawansowania klinicznego ani masą nowotworu u pacjentek z miejscowo zaawansowanym rakiem piersi. Wyjściowe stężenia VEGF-A, sVEGFR-2 i galektyny-3 oraz zaobserwowany wzrost stężeń tych cytokin w surowicy w trakcie chemioterapii nie mają wartości predykcyjnej dla jej skuteczności.
PL
INTRODUCTION: Tumor angiogenesis is regulated by numerous cytokines and growth factors, with vascular endothelial growth factor (VEGF), soluble vascular endothelial growth factor receptor 2 (sVEGFR-2), and galectin-3, playing a significant role in the process. There are conflicting data concerning changes in serum VEGF, sVEGFR-2 and galectin-3 levels in breast cancer (BC) patients during the course of the disease and chemotherapy (CTH). This study aimed to assess the serum levels of VEGF-A, sVEGFR-2, and galectin-3 in women starting adjuvant and neoadjuvant therapy for BC, and their changes during the treatment. MATERIAL AND METHODS: This single-center study enrolled 98 women with non-metastatic BC, including 56 who started adjuvant therapy and 42 preoperative (neoadjuvant/induction) CTH. The serum levels of VEGF-A, sVEGFR-2, and galectin-3 were assessed at the beginning of CTH and after 2 subsequent months. RESULTS: There were no significant differences in the serum levels of VEGF-A, sVEGFR-2, and galectin-3 between patients starting adjuvant and preoperative therapy. In addition, there was no correlation between the serum levels and the clinical stage of BC. During CTH, a significant increase in VEGF-A, sVEGFR-2, and galectin-3 was noted, however, without a predictive significance for obtaining complete pathological response (pCR) both for the initial levels and changes in the serum levels. CONCLUSIONS: The serum levels of VEGF-A, sVEGFR-2, and galectin-3 do not correlate with the clinical stage or tumor size in patients with non-metastatic BC. The baseline levels of VEGF-A, sVEGFR-2 and galectin-3, and the observed increase in the serum levels of VEGF-A and sVEGFR-2 during CTH do not predict its efficacy.
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