Insulin resistance is associated with subclinical vascular disease that is not justified by conventional cardiovascular risk factors,such as smoking or hypercholesterolemia.Vascular injury associated to insulin resist...Insulin resistance is associated with subclinical vascular disease that is not justified by conventional cardiovascular risk factors,such as smoking or hypercholesterolemia.Vascular injury associated to insulin resistance involves functional and structural damage to the arterial wall that includes impaired vasodilation in response to chemical mediators,reduced distensibility of the arterial wall(arterial stiffness),vascular calcification,and increased thickness of the arterial wall.Vascular dysfunction associated to insulin resistance is present in asymptomatic subjects and predisposes to cardiovascular diseases,such as heart failure,ischemic heart disease,stroke,and peripheral vascular disease.Structural and functional vascular disease associated to insulin resistance is highly predictive of cardiovascular morbidity and mortality.Its pathogenic mechanisms remain undefined.Prospective studies have demonstrated that animal protein consumption increases the risk of developing cardiovascular disease and predisposes to type 2 diabetes(T2D)whereas vegetable protein intake has the opposite effect.Vascular disease linked to insulin resistance begins to occur early in life.Children and adolescents with insulin resistance show an injured arterial system compared with youth free of insulin resistance,suggesting that insulin resistance plays a crucial role in the development of initial vascular damage.Prevention of the vascular dysfunction related to insulin resistance should begin early in life.Before the clinical onset of T2D,asymptomatic subjects endure a long period of time characterized by insulin resistance.Latent vascular dysfunction begins to develop during this phase,so that patients with T2D are at increased cardiovascular risk long before the diagnosis of the disease.展开更多
Hyaluronic acid (HA) preparations have emerged as pivotal components in contemporary dentistry, gaining widespread recognition for their multifaceted roles in various biological functions. Extensive literature undersc...Hyaluronic acid (HA) preparations have emerged as pivotal components in contemporary dentistry, gaining widespread recognition for their multifaceted roles in various biological functions. Extensive literature underscores the significance of HA in maintaining tissue water balance, fostering cell proliferation, promoting rapid cell migration, influencing cell differentiation during organism development, and facilitating tissue regeneration. Notably, HA’s interactions with cell surface receptors contribute to the viscosity of synovial fluid, activate the immune system, and enhance cartilage elasticity. Beyond these established functions, HA has also been investigated for its potential involvement in determining and studying the hormetic effects of radon water, adding a novel dimension to its applications in dental research. A thorough exploration of existing studies reveals a nuanced understanding of how HA interventions impact the outcomes of dental procedures. The comprehensive scope of these investigations allows for a more accurate assessment of the potential effectiveness of specific interventions and provides valuable insights into post-procedural prognoses for individual patients. This synthesis of literature serves as the foundation for elucidating the intricate interplay between HA, radon exposure, and their relevance in modern dental practices.展开更多
文摘Insulin resistance is associated with subclinical vascular disease that is not justified by conventional cardiovascular risk factors,such as smoking or hypercholesterolemia.Vascular injury associated to insulin resistance involves functional and structural damage to the arterial wall that includes impaired vasodilation in response to chemical mediators,reduced distensibility of the arterial wall(arterial stiffness),vascular calcification,and increased thickness of the arterial wall.Vascular dysfunction associated to insulin resistance is present in asymptomatic subjects and predisposes to cardiovascular diseases,such as heart failure,ischemic heart disease,stroke,and peripheral vascular disease.Structural and functional vascular disease associated to insulin resistance is highly predictive of cardiovascular morbidity and mortality.Its pathogenic mechanisms remain undefined.Prospective studies have demonstrated that animal protein consumption increases the risk of developing cardiovascular disease and predisposes to type 2 diabetes(T2D)whereas vegetable protein intake has the opposite effect.Vascular disease linked to insulin resistance begins to occur early in life.Children and adolescents with insulin resistance show an injured arterial system compared with youth free of insulin resistance,suggesting that insulin resistance plays a crucial role in the development of initial vascular damage.Prevention of the vascular dysfunction related to insulin resistance should begin early in life.Before the clinical onset of T2D,asymptomatic subjects endure a long period of time characterized by insulin resistance.Latent vascular dysfunction begins to develop during this phase,so that patients with T2D are at increased cardiovascular risk long before the diagnosis of the disease.
文摘Hyaluronic acid (HA) preparations have emerged as pivotal components in contemporary dentistry, gaining widespread recognition for their multifaceted roles in various biological functions. Extensive literature underscores the significance of HA in maintaining tissue water balance, fostering cell proliferation, promoting rapid cell migration, influencing cell differentiation during organism development, and facilitating tissue regeneration. Notably, HA’s interactions with cell surface receptors contribute to the viscosity of synovial fluid, activate the immune system, and enhance cartilage elasticity. Beyond these established functions, HA has also been investigated for its potential involvement in determining and studying the hormetic effects of radon water, adding a novel dimension to its applications in dental research. A thorough exploration of existing studies reveals a nuanced understanding of how HA interventions impact the outcomes of dental procedures. The comprehensive scope of these investigations allows for a more accurate assessment of the potential effectiveness of specific interventions and provides valuable insights into post-procedural prognoses for individual patients. This synthesis of literature serves as the foundation for elucidating the intricate interplay between HA, radon exposure, and their relevance in modern dental practices.