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44 result(s) for "Membrane Transport Modulators - therapeutic use"
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Efficacy and safety of dapagliflozin in patients with type 2 diabetes and concomitant heart failure
We investigated the efficacy and safety of dapagliflozin, a sodium–glucose cotransporter 2 inhibitor, in patients with type 2 diabetes mellitus (T2DM) and heart failure (HF). Data for patients randomized to dapagliflozin 10mg or placebo with a history of HF were pooled from five clinical trials. HbA1c, weight and systolic blood pressure (SBP; two studies) were examined up to 52weeks using longitudinal repeated-measures models. Composite cardiovascular outcomes, hospitalizations for HF (HHF), and adverse events (AEs) were also assessed. Patients (mean age 64years, T2DM duration ~14years, HbA1c 8.2%, ~50% with New York Heart Association Class ≥II) received dapagliflozin (N=171) or placebo (N=149). Dapagliflozin produced clinically meaningful placebo-adjusted reductions in HbA1c (−0.55%; 95% confidence interval [CI]: −0.80, −0.30), weight (−2.67kg; 95% CI: −3.88, −1.47), and SBP (−2.05mmHg; 95% CI: −5.68, 1.57) over 52weeks. HHF was rare, but numerically lower with dapagliflozin (n=1 [0.6%]) vs placebo (n=7 [4.7%]). Point estimates for hazard ratios of composite cardiovascular outcomes favored dapagliflozin vs placebo, although 95% CIs crossed unity. Dapagliflozin produced clinically meaningful reductions in HbA1c, weight, and SBP in patients with T2DM and HF, and was well tolerated.
Active- and placebo-controlled dose-finding study to assess the efficacy, safety, and tolerability of multiple doses of ipragliflozin in patients with type 2 diabetes mellitus
To evaluate the efficacy, safety, and tolerability of multiple doses of ipragliflozin. This novel selective inhibitor of sodium glucose co-transporter 2 is in clinical development for the treatment of patients with type 2 diabetes mellitus (T2DM). In a 12-week, multicenter, double-blind, randomized, active- and placebo-controlled dose-finding study, patients were randomized to one of four ipragliflozin treatment groups (12.5, 50, 150, and 300mg once daily), placebo, or active control (metformin). The primary efficacy outcome was the mean change from baseline to Week 12 of glycosylated hemoglobin (HbA1c) compared with placebo. Ipragliflozin showed a dose-dependent decrease in HbA1c of −0.49% to −0.81% at Week 12 compared with placebo (P<0.001); a decrease of −0.72% was seen with metformin. Among the ipragliflozin groups there was also a dose-dependent reduction in body weight of up to 1.7kg. Proportions of patients experiencing treatment-emergent adverse events were similar across all groups: ipragliflozin (45.7–58.8%), placebo (62.3%), and metformin (59.4%). No clinically relevant effects were observed for other safety measures. After 12weeks of treatment, ipragliflozin dose-dependently decreased HbA1c, with ipragliflozin ≥50mg/day in patients with T2DM; an effect comparable to metformin. No safety or tolerability concerns were identified.
The Effect of Gabapentin Enacarbil on Quality of Life and Mood Outcomes in a Pooled Population of Adult Patients with Moderate-to-Severe Primary Restless Legs Syndrome
Objective The aim was to assess gabapentin enacarbil (GEn) treatment effects on quality of life (QOL) and mood in adults with moderate-to-severe primary restless legs syndrome (RLS). Methods Data were pooled from three placebo-controlled, randomized, double-blind, 12-week trials for adults receiving GEn (600 mg or 1200 mg) or placebo once daily. QOL was assessed with the RLS QOL questionnaire in two studies. Mood was examined with the Profile of Mood States Brief Form (POMS-B), and as an exploratory analysis with International Restless Legs Scale (IRLS) item 9 (daily affairs) and item 10 (mood disturbance) across all three studies. Mood and QOL were secondary endpoints in the individual clinical trials. No adjustments for multiplicity were applied. Results The QOL analysis modified intent-to-treat (MITT) population included 541 adults (placebo, n  = 204; GEn 600 mg, n  = 114; GEn 1200 mg, n  = 223). Both GEn doses significantly improved QOL versus placebo (week 12; p  < 0.01). The mood analysis MITT population included 671 adults (placebo, n  = 244; GEn 600 mg, n  = 161; GEn 1200 mg, n  = 266). GEn 600 mg significantly improved POMS vigor-activity versus placebo (week 12; p  < 0.05); other POMS criteria were not significantly affected. GEn 1200 mg significantly improved POMS scores for total mood disturbance, depression-dejection, fatigue-inertia, vigor-activity, and confusion-bewilderment versus placebo at week 12 ( p  < 0.05); tension-anxiety and anger-hostility were not significantly affected. Both GEn doses significantly improved IRLS item 9 and item 10 versus placebo at week 12 ( p  < 0.05). The most frequent treatment-emergent adverse events with GEn were somnolence and dizziness. Conclusions GEn (600 mg and 1200 mg) once daily significantly improved QOL in adults with moderate-to-severe primary RLS at all time points examined. While the only POMS item significantly improved by GEn 600 mg versus placebo at week 12 was vigor-activity, GEn 1200 mg significantly improved total mood disturbance and several other POMS items versus placebo at week 12. Both QOL and mood improvements were numerically greater with GEn 1200 mg versus 600 mg. Trial Registrations Clinicaltrials.gov identifiers NCT00298623, NCT00365352, NCT01332305.
A first-in-human, double-blind, placebo-controlled, randomized, dose escalation study of DWP05195, a novel TRPV1 antagonist, in healthy volunteers
DWP05195 is a transient receptor potential vanilloid 1 (TRPV1) antagonist developed for managing pain. The purpose of this study was to evaluate the pharmacodynamics pharmacokinetics, safety, and tolerability of DWP05195 in healthy subjects. This was a first-in-human randomized, double-blinded, placebo-controlled, dose escalation study. DWP05195 or placebo was administered as a single dose of 10-600 mg in the single-dose study and as 100-400 mg once daily for 8 days in the multiple-dose studies. Each study group consisted of 10 subjects (study drug-to-placebo ratio was 8:2). For pharmacodynamics assessment, the heat pain threshold (HPtr), heat pain tolerance (HPtol), perfusion intensity, and flare area ratio of cutaneous blood flow were measured. Safety and tolerability were evaluated throughout the study. The maximum plasma concentrations and area under the plasma concentration-time curve from zero to the last measurable time dose-dependently increased. HPtr and HPtol tended to increase more after DWP05195 administration than after placebo administration. HPtr and HPtol tended to dose-dependently increase after administration of DWP05195. Cutaneous blood flow was reduced as the dose of DWP05195 increased during the multiple-dose study. DWP05195 was well tolerated up to 600 and 400 mg single- and multiple-dose administrations, respectively. The pharmacological activity of DWP05195, measured using HPtr and HPtol, increased as expected in a dose-dependent manner owing to increased systemic exposure, indicating that DWP05195 can be used as a TRPV1 antagonist for pain management.
KCNQ channel openers reverse depressive symptoms via an active resilience mechanism
Less than half of patients suffering from major depressive disorder, a leading cause of disability worldwide, achieve remission with current antidepressants, making it imperative to develop more effective treatment. A new therapeutic direction is emerging from the increased understanding of natural resilience as an active stress-coping process. It is known that potassium (K + ) channels in the ventral tegmental area (VTA) are an active mediator of resilience. However, no druggable targets have been identified to potentiate active resilience mechanisms. In the chronic social defeat stress model of depression, we report that KCNQ-type K + channel openers, including FDA-approved drug retigabine (ezogabine), show antidepressant efficacy. We demonstrate that overexpression of KCNQ channels in the VTA dopaminergic neurons and either local infusion or systemic administration of retigabine normalized neuronal hyperactivity and depressive behaviours. These findings identify KCNQ as a target for conceptually novel antidepressants that function through the potentiation of active resilience mechanisms. Potassium channels in the ventral tegmental area are known to regulate resilience against stress-induced depression. Here, the authors show over expression of KCNQ3 channels in VTA dopaminergic neurons or treatment with KCNQ channel openers normalizes depressive behaviours in mouse models.
Ivabradine in combination with beta-blocker therapy for the treatment of stable angina pectoris in every day clinical practice
Purpose The anti-anginal efficacy of the selective If inhibitor ivabradine has been demonstrated in controlled clinical trials. However, there is limited information about the safety and efficacy of a combined treatment of ivabradine with beta-blockers, particularly outside of clinical trials in every day practice. This analysis from the REDUCTION study evaluated the safety and efficacy of a combined therapy of beta-blockers and ivabradine in every day practice. Methods In this multi-center study 4,954 patients with stable angina pectoris were treated with ivabradine in every day routine practice and underwent a clinical follow-up for 4 months. 344 of these patients received a co-medication with beta-blockers. Heart rate (HR), angina pectoris episodes, nitrate consumption, overall efficacy and tolerance were analyzed. Results After 4 months of treatment with ivabradine HR was reduced by 12.4 ± 11.6 bpm from 84.3 ± 14.6 to 72.0 ± 9.9 bpm, p < 0.0001. Angina pectoris episodes were reduced from 2.8 ± 3.3 to 0.5 ± 1.3 per week, p < 0.0001. Consumption of short-acting nitrates was reduced from 3.7 ± 5.6 to 0.7 ± 1.7 units per week, p < 0.0001. Five patients (1.5%) reported adverse drug reactions (ADR). The most common ADR were nausea and dizziness (<0.6% each). There was no clinically relevant bradycardia. Efficacy and tolerance were graded as ‘very good/good' for 96 and 99% of the patients treated. Conclusion Ivabradine effectively reduces heart rate and angina pectoris in combination with beta-blockers and is well tolerated by patients in every day practice.
Th2 Modulation of Transient Receptor Potential Channels: An Unmet Therapeutic Intervention for Atopic Dermatitis
Atopic dermatitis (AD) is a multifaceted, chronic relapsing inflammatory skin disease that affects people of all ages. It is characterized by chronic eczema, constant pruritus, and severe discomfort. AD often progresses from mild annoyance to intractable pruritic inflammatory lesions associated with exacerbated skin sensitivity. The T helper-2 (Th2) response is mainly linked to the acute and subacute phase, whereas Th1 response has been associated in addition with the chronic phase. IL-17, IL-22, TSLP, and IL-31 also play a role in AD. Transient receptor potential (TRP) cation channels play a significant role in neuroinflammation, itch and pain, indicating neuroimmune circuits in AD. However, the Th2-driven cutaneous sensitization of TRP channels is underappreciated. Emerging findings suggest that critical Th2-related cytokines cause potentiation of TRP channels, thereby exaggerating inflammation and itch sensation. Evidence involves the following: (i) IL-13 enhances TRPV1 and TRPA1 transcription levels; (ii) IL-31 sensitizes TRPV1 via transcriptional and channel modulation, and indirectly modulates TRPV3 in keratinocytes; (iii) The Th2-cytokine TSLP increases TRPA1 synthesis in sensory neurons. These changes could be further enhanced by other Th2 cytokines, including IL-4, IL-25, and IL-33, which are inducers for IL-13, IL-31, or TSLP in skin. Taken together, this review highlights that Th2 cytokines potentiate TRP channels through diverse mechanisms under different inflammatory and pruritic conditions, and link this effect to distinct signaling cascades in AD. This review strengthens the notion that interrupting Th2-driven modulation of TRP channels will inhibit transition from acute to chronic AD, thereby aiding the development of effective therapeutics and treatment optimization.
A comparison of effects of DPP-4 inhibitor and SGLT2 inhibitor on lipid profile in patients with type 2 diabetes
Background Previous studies suggest that dipeptidyl peptidase-4 (DPP-4) inhibitors and sodium glucose cotransporter 2 (SGLT2) inhibitors have different effects on the lipid profile in patients with type 2 diabetes. We investigated the effects of DPP-4 inhibitors and SGLT2 inhibitors on the lipid profile in patients with type 2 diabetes. Methods From January 2013 to December 2015, a total of 228 patients with type 2 diabetes who were receiving a DPP-4 inhibitor or SGLT2 inhibitor as add-on therapy to metformin and/or a sulfonylurea were consecutively enrolled. We compared the effects of DPP-4 inhibitors and SGLT2 inhibitors on the lipid profile at baseline and after 24 weeks of treatment. To compare lipid parameters between the two groups, we used the analysis of covariance (ANCOVA). Results A total of 184 patients completed follow-up (mean age: 53.1 ± 6.9 years, mean duration of diabetes: 7.1 ± 5.7 years). From baseline to 24 weeks, HDL-cholesterol (HDL-C) levels were increased by 0.5 (95% CI, −0.9 to 2.0) mg/dl with a DPP-4 inhibitor and by 5.1 (95% CI, 3.0 to 7.1) mg/dl with an SGLT2 inhibitor ( p  = 0.001). LDL-cholesterol (LDL-C) levels were reduced by 8.4 (95% CI, −14.0 to -2.8) mg/dl with a DPP-4 inhibitor, but increased by 1.3 (95% CI, −5.1 to 7.6) mg/dl with an SGLT2 inhibitor ( p  = 0.046). There was no significant difference in the mean hemoglobin A1c (8.3 ± 1.1 vs. 8.0 ± 0.9%, p  = 0.110) and in the change of total cholesterol (TC) ( p  = 0.836), triglyceride (TG) ( p  = 0.867), apolipoprotein A ( p  = 0.726), apolipoprotein B ( p  = 0.660), and lipoprotein (a) ( p  = 0.991) between the DPP-4 inhibitor and the SGLT2 inhibitor. Conclusions The SGLT2 inhibitor was associated with a significant increase in HDL-C and LDL-C after 24 weeks of SGLT2 inhibitor treatment in patients with type 2 diabetes compared with those with DPP-4 inhibitor treatment in this study. Trial registration This study was conducted by retrospective medical record review.
BK Channel Modulators: A Comprehensive Overview
The large Ca2+-activated K+ channel (BK channel) reflects per excellence the dilemma of the molecular target driven drug discovery process. Significant experimental evidence suggests that the BK channels play a pivotal and specific role in many pathophysiological conditions supporting the notion that the channel represents an innovative and promising drug target. However, after more than ten years of intense research effort both in academia and industry, scientists have yet to witness the approval of a single BK channel modulator for clinical use. On the contrary, three BK openers that were progressed to clinical development have recently been discontinued (NS8, BMS204352 and TA1702) and, at the present time, only one drug candidate targeting BK channels (andolast) remains in the early phases of clinical development. Since biological studies keep strengthening the concept of BK channels as a potentially attractive target, the design and synthesis of potent and selective BK modulators continue based on novel chemical ideas. A comprehensive overview of BK channel modulators is therefore timely and important to the current medicinal chemist for review, summary, and classification of the multitude of chemical entities claimed to be BK-modulating agents. Such chemical entities are, herein, classified by both origin and chemical structure in 1) Endogenous BK channel modulators and structural analogues 2) Naturally-occurring BK channel inhibitors and blockers 3) Synthetic BK channel inhibitors and blockers 4) Marketed and/or investigational drugs with BK-modulating side properties and structural analogues 5) Naturally-occurring BK channel openers and structural analogues 6) Synthetic BK channel openers. This review is intended to provide readers with current opinion on the BK channel as a drug target, the chemical structures of BK channel modulators, the structural and chemical features involved in the BK channel modulating activity and, where and when possible, with highlights of structure – activity relationships.
Ion Channels in Brain Metastasis
Breast cancer, lung cancer and melanoma exhibit a high metastatic tropism to the brain. Development of brain metastases severely worsens the prognosis of cancer patients and constrains curative treatment options. Metastasizing to the brain by cancer cells can be dissected in consecutive processes including epithelial–mesenchymal transition, evasion from the primary tumor, intravasation and circulation in the blood, extravasation across the blood–brain barrier, formation of metastatic niches, and colonization in the brain. Ion channels have been demonstrated to be aberrantly expressed in tumor cells where they regulate neoplastic transformation, malignant progression or therapy resistance. Moreover, many ion channel modulators are FDA-approved drugs and in clinical use proposing ion channels as druggable targets for future anti-cancer therapy. The present review article aims to summarize the current knowledge on the function of ion channels in the different processes of brain metastasis. The data suggest that certain channel types involving voltage-gated sodium channels, ATP-release channels, ionotropic neurotransmitter receptors and gap junction-generating connexins interfere with distinct processes of brain metastazation.