2018
DOI: 10.1016/j.jff.2018.05.068
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L-Carnitine activates calcium signaling in human osteoblasts

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Cited by 9 publications
(11 citation statements)
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“…3). These results reveal that LC may participate in the regulation of calcium signaling pathways confirming our previous data that revealed how LC influences calcium release from intracellular calcium stores in human osteoblasts [26]. Accumulating evidence of the role of this nutraceutical on calcium homeostasis opens up new therapeutic developments in the pathologies characterized by a calcium impairment, including diabetes mellitus and cardiovascular diseases.…”
Section: Representative Immunoblots Are Shownsupporting
confidence: 89%
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“…3). These results reveal that LC may participate in the regulation of calcium signaling pathways confirming our previous data that revealed how LC influences calcium release from intracellular calcium stores in human osteoblasts [26]. Accumulating evidence of the role of this nutraceutical on calcium homeostasis opens up new therapeutic developments in the pathologies characterized by a calcium impairment, including diabetes mellitus and cardiovascular diseases.…”
Section: Representative Immunoblots Are Shownsupporting
confidence: 89%
“…AMPK can be activated by intracellular calcium levels, in the same manner of calcium/calmodulin-dependent protein kinase II (CaMKII) [25] and our group has recently demonstrated that LC could regulate the intracellular calcium levels [26]. As shown in Fig.…”
Section: L-carnitine Effects On Camkiimentioning
confidence: 94%
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“…Recent studies have suggested the role of oxidative pathways as favourable targets for the treatment of NAFLD [19]. LC has been recognized as a nutritional supplement with anti-oxidative properties [20] and used as an adjunctive therapy in various heart conditions with promising results [21]. In particular, Strilakou et al have described the beneficial effects of LC on a cardiomyopathy rat model fed with a choline-deficient diet [22].…”
Section: Introductionmentioning
confidence: 99%
“…L-karnityna wraz z L-leucyną i kreatyną wykazuje działanie synergiczne, przyczyniając się do wzrostu syntezy białek mięśniowych [25,29]. L-karnityna zmniejsza utratę masy kostnej i wpływa na regulowanie proliferacji osteoblastów, co skutkuje lepszą ich regeneracją i może wpłynąć na zmniejszenie ryzyka złamań [30]. Wykazuje również działanie obniżające ciśnienie tętnicze wywołane stresem, a także zmniejsza ryzyko wystąpienia arytmii i zawału mięśnia sercowego [31].…”
Section: L-karnitynaunclassified