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Genes

Role of Sodium Channel in Atrial Fibrillation Pathophysiology and Therapy

Role of Sodium Channel in Atrial Fibrillation Pathophysiology and Therapy

Safe and effective treatment of atrial fibrillation (AF) remains a major unmet medical need in our society, and the problem is growing as the prevalence of AF continues to increase with the aging of the baby boom generation.

Research of KCNH2 Mutations in Arrhythmias

Research of KCNH2 Mutations in Arrhythmias

Functional and pathophysiological studies have led to better understanding of the clinical spectrum, ion channel structures and cellular electrophysiology involving dynamics of intracellular calcium cycling in many subtypes of these disorders.

Research of Liver X Receptors in Cardiovascular Disease

Research of Liver X Receptors in Cardiovascular Disease

The liver X receptors (LXRs) are pivotal regulators of lipid homeostasis in mammals. These transcription factors control the expression of a battery of genes involved in the uptake, transport, efflux and excretion of cholesterol in a tissue-dependent manner.

Research on The Regulatory Mechanism of Manganate Pathway to Enhance Plant Carbon Dioxide Conversion

Research on The Regulatory Mechanism of Manganate Pathway to Enhance Plant Carbon Dioxide Conversion

Terrestrial plants can convert atmospheric CO2 into diverse and abundant aromatic compounds, thus providing high-value chemicals and considerable promise for carbon storage.

Research of The Role of CLN7 in The Regulation of Lysosomal Function

Research of The Role of CLN7 in The Regulation of Lysosomal Function

Lysosomes play a vital role in eliminating worn-out proteins, damaged organelles, and other unnecessary materials in eukaryotic cells. Dysfunction of lysosomes often leads to lysosomal storage diseases (LSDs), which are characterized by abnormal accumulation of unmetabolized substrates within lysosomes.