Zinc plays an important role in biological systems as bound and histochemically reactive labile Zn2+. Although Zn2+ concentration is in the nM range in cardiomyocytes at rest and increases dramatically under stimulation, very little is known about precise mechanisms controlling the intracellular distribution of Zn2+ and its variations during cardiac function. Recent studies are focused on molecular and cellular aspects of labile Zn2+ and its homeostasis in mammalian cells and growing evidence clarified the molecular mechanisms underlying Zn2+-diverse functions in the heart, leading to the discovery of novel physiological functions of labile Zn2+ in parallel to the discovery of subcellular localization of Zn2+-transporters in cardiomyocytes....
Zinc is an essential trace element that plays a vital role in maintaining many biological processes ...
Zinc is an essential trace element due to its role as a key part of human enzymatic activity. As a c...
In the last decade, we witnessed discoveries that established Zn2+ as a second major signalling meta...
Zinc plays an important role in biological systems as bound and histochemically reactive labile Zn2+...
Increasing evidence suggests that Zn2+ acts as a second messenger capable of transducing extracellul...
An important energy supplier of cardiomyocytes is mitochondria, similar to other mammalian cells. St...
Aims Zinc exists in biological systems as bound and histochemically reactive free Zn2+. It is an ess...
Zinc plays an important role in cardiomyocytes, where it exists in bound and histochemically reactiv...
Zinc is structurally and functionally essential for more than 300 enzymes and 2000 transcription fac...
Zinc exists in biological systems as bound and histochemically reactive free Zn(2+) in the nanomolar...
Funding: This work was supported by the British Heart Foundation (grant code: PG/21/10468, FS/19/69/...
Zinc is a vital element in maintaining the normal structure and physiology of cells. The fact that i...
It is well established that mammalian cells contain a small but measurable pool of free or labile zi...
Aberrant Zn2+-homeostasis is a hallmark of certain cardiomyopathies associated with altered contract...
Abstract It has been reported previously that diabetic cardiomyopathy can be inhibited or reverted w...
Zinc is an essential trace element that plays a vital role in maintaining many biological processes ...
Zinc is an essential trace element due to its role as a key part of human enzymatic activity. As a c...
In the last decade, we witnessed discoveries that established Zn2+ as a second major signalling meta...
Zinc plays an important role in biological systems as bound and histochemically reactive labile Zn2+...
Increasing evidence suggests that Zn2+ acts as a second messenger capable of transducing extracellul...
An important energy supplier of cardiomyocytes is mitochondria, similar to other mammalian cells. St...
Aims Zinc exists in biological systems as bound and histochemically reactive free Zn2+. It is an ess...
Zinc plays an important role in cardiomyocytes, where it exists in bound and histochemically reactiv...
Zinc is structurally and functionally essential for more than 300 enzymes and 2000 transcription fac...
Zinc exists in biological systems as bound and histochemically reactive free Zn(2+) in the nanomolar...
Funding: This work was supported by the British Heart Foundation (grant code: PG/21/10468, FS/19/69/...
Zinc is a vital element in maintaining the normal structure and physiology of cells. The fact that i...
It is well established that mammalian cells contain a small but measurable pool of free or labile zi...
Aberrant Zn2+-homeostasis is a hallmark of certain cardiomyopathies associated with altered contract...
Abstract It has been reported previously that diabetic cardiomyopathy can be inhibited or reverted w...
Zinc is an essential trace element that plays a vital role in maintaining many biological processes ...
Zinc is an essential trace element due to its role as a key part of human enzymatic activity. As a c...
In the last decade, we witnessed discoveries that established Zn2+ as a second major signalling meta...