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The earliest marketed insulins were crude acidic formulations with concentrations of ≤10 units/mL. Since the early 1920s, insulins have improved continually, via bioengineering, process, and chemical modifications. Today, most insulin formulations have a concentration of 100 units/mL (U100). However, more concentrated insulin formulations (200, 300, and 500 units/mL; U200, U300, and U500, respectively) are also available. There is a tendency to assume that concentrated insulins are similar, both to each other and to their U100 counterparts, but this is not always the case: two concentrated insulins, namely insulin degludec U200 and insulin lispro U200, are bioequivalent to their U100 counterparts, whereas regular human insulin U500 and insulin glargine U300 are not. The advent of these concentrated insulins offers greater opportunities to provide tailored therapy for patients; it also introduces potential confusion, and highlights the need for prescriber and patient education. Precise and accurate dedicated insulin delivery devices are also necessary for the safe use of these concentrated insulins. Although some clinicians only use concentrated insulin with obese and severely insulin‐resistant patients, other patients would also benefit from the reduced injection volume associated with concentrated insulins, or the modified time‐action profile of some concentrated insulins. The aim of this review is to enhance understanding of the historic development and the safe and effective use of concentrated insulins in clinical practice.  相似文献   

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Based on increasing evidence from animal and human studies, vitamin D deficiency is now regarded as a potential risk factor for Type 2 diabetes mellitus (T2DM). Vitamin D is involved in the pathogenesis of pancreatic β‐cell dysfunction, insulin resistance, and systemic inflammation, conditions that contribute to the development of T2DM. Vitamin D can affect the progress of this disease directly through the activation of its own receptor, and indirectly via the regulation of calcium homeostasis. Observational studies have revealed the association between vitamin D deficiency and incident T2DM. More double‐blind randomized control studies that investigate the effects of vitamin D supplementation on insulin sensitivity, insulin secretion, and the occurrence of T2DM are needed.  相似文献   

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This document has been developed by a group of Italian diabetologists with extensive experience in continuous subcutaneous insulin infusion (CSII) therapy to provide indications for the clinical management of CSII in diabetic patients (both type 1 and type 2) based on delivery mode operating in Italy. Although the potential benefits of pump therapy in achieving glycemic goals is now accepted, such results cannot be obtained without specific knowledge and skills being conveyed to patients during ad hoc educational training. To ensure that these new technologies reach their full effectiveness, as demonstrated theoretically and clinically, a careful assessment of the overall therapeutic and educational process is required, in both qualitative and quantitative terms. Therefore, to ensure the cost‐effectiveness of insulin pump therapy and to justify reimbursement of therapy costs by the National Health System in Italy, in this article we present a model for diabetes and healthcare centers to follow that provides for different levels of expertise in the field of CSII therapy. This model will guarantee the provision of excellent care during insulin pump therapies, thus representing the basis for a successful outcome and expansion of this form of insulin treatment in patients with diabetes while also keeping costs under control.  相似文献   

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《Journal of Diabetes》2017,9(6):562-574
There is increasing evidence that the pathophysiology of type 2 diabetes mellitus (T2DM) in Asian patients differs from that in Western patients, with early phase insulin deficiencies, increased postprandial glucose excursions, and increased sensitivity to insulin. Asian patients may also experience higher rates of gastrointestinal adverse events associated with glucagon‐like peptide‐1 receptor agonists (GLP‐1RAs), such as nausea and vomiting, compared with their Western counterparts. These factors should be taken into consideration when selecting therapy for basal insulin treatment intensification in Asian patients. However, the majority of studies to establish various agents for treatment intensification in T2DM have been conducted in predominantly Western populations, and the levels of evidence available in Chinese or Asian patients are limited. This review discusses the different mechanisms of action of short‐acting, prandial, and long‐acting GLP‐1RAs in addressing hyperglycemia, and describes the rationale and available clinical data for basal insulin in combination with the short‐acting prandial GLP‐1RA lixisenatide, with a focus on treatment of Asian patients with T2DM.  相似文献   

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