TY - JOUR
T1 - Calciprotein particles link disturbed mineral homeostasis with cardiovascular disease by causing endothelial dysfunction and vascular inflammation
AU - Shishkova, Daria K.
AU - Velikanova, Elena A.
AU - Bogdanov, Leo A.
AU - Sinitsky, Maxim Yu
AU - Kostyunin, Alexander E.
AU - Tsepokina, Anna V.
AU - Gruzdeva, Olga V.
AU - Mironov, Andrey V.
AU - Mukhamadiyarov, Rinat A.
AU - Glushkova, Tatiana V.
AU - Krivkina, Evgenia O.
AU - Matveeva, Vera G.
AU - Hryachkova, Oksana N.
AU - Markova, Victoria E.
AU - Dyleva, Yulia A.
AU - Belik, Ekaterina V.
AU - Frolov, Alexey V.
AU - Shabaev, Amin R.
AU - Efimova, Olga S.
AU - Popova, Anna N.
AU - Malysheva, Valentina Yu
AU - Kolmykov, Roman P.
AU - Sevostyanov, Oleg G.
AU - Russakov, Dmitriy M.
AU - Dolganyuk, Viatcheslav F.
AU - Gutakovsky, Anton K.
AU - Zhivodkov, Yuriy A.
AU - Kozhukhov, Anton S.
AU - Brusina, Elena B.
AU - Ismagilov, Zinfer R.
AU - Barbarash, Olga L.
AU - Yuzhalin, Arseniy E.
AU - Kutikhin, Anton G.
N1 - Publisher Copyright:
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.
PY - 2021/11/1
Y1 - 2021/11/1
N2 - An association between high serum calcium/phosphate and cardiovascular events or death is well-established. However, a mechanistic explanation of this correlation is lacking. Here, we examined the role of calciprotein particles (CPPs), nanoscale bodies forming in the human blood upon its supersaturation with calcium and phosphate, in cardiovascular disease. The serum of patients with coronary artery disease or cerebrovascular disease displayed an increased propensity to form CPPs in combination with elevated ionised calcium as well as reduced albumin levels, altogether indicative of reduced Ca2+-binding capacity. Intravenous administration of CPPs to normolipidemic and normotensive Wistar rats provoked intimal hyperplasia and adventitial/perivascular inflammation in both balloon-injured and intact aortas in the absence of other cardiovascular risk factors. Upon the addition to primary human arterial endothelial cells, CPPs induced lysosome-dependent cell death, promoted the release of pro-inflammatory cytokines, stimulated leukocyte adhesion, and triggered endothelial-to-mesenchymal transition. We concluded that CPPs, which are formed in the blood as a result of altered mineral homeostasis, cause endothelial dysfunction and vascular inflammation, thereby contributing to the development of cardiovascular disease.
AB - An association between high serum calcium/phosphate and cardiovascular events or death is well-established. However, a mechanistic explanation of this correlation is lacking. Here, we examined the role of calciprotein particles (CPPs), nanoscale bodies forming in the human blood upon its supersaturation with calcium and phosphate, in cardiovascular disease. The serum of patients with coronary artery disease or cerebrovascular disease displayed an increased propensity to form CPPs in combination with elevated ionised calcium as well as reduced albumin levels, altogether indicative of reduced Ca2+-binding capacity. Intravenous administration of CPPs to normolipidemic and normotensive Wistar rats provoked intimal hyperplasia and adventitial/perivascular inflammation in both balloon-injured and intact aortas in the absence of other cardiovascular risk factors. Upon the addition to primary human arterial endothelial cells, CPPs induced lysosome-dependent cell death, promoted the release of pro-inflammatory cytokines, stimulated leukocyte adhesion, and triggered endothelial-to-mesenchymal transition. We concluded that CPPs, which are formed in the blood as a result of altered mineral homeostasis, cause endothelial dysfunction and vascular inflammation, thereby contributing to the development of cardiovascular disease.
KW - Calciprotein particles
KW - Cardiovascular disease
KW - Endothelial dysfunction
KW - Intimal hyperplasia
KW - Vascular inflammation
UR - https://www.scopus.com/pages/publications/85119132639
UR - https://www.scopus.com/pages/publications/85119132639#tab=citedBy
U2 - 10.3390/ijms222212458
DO - 10.3390/ijms222212458
M3 - Article
C2 - 34830334
AN - SCOPUS:85119132639
SN - 1661-6596
VL - 22
JO - International journal of molecular sciences
JF - International journal of molecular sciences
IS - 22
M1 - 12458
ER -