Home

umiernený bezpečnosť Cudzinec verapamin mop šedý zákal napodobniť vysoký

PDF) Research Article Verapamil Inhibits Mitochondria-Induced Reactive  Oxygen Species and Dependent Apoptosis Pathways in Cerebral Transient  Global Ischemia/Reperfusion
PDF) Research Article Verapamil Inhibits Mitochondria-Induced Reactive Oxygen Species and Dependent Apoptosis Pathways in Cerebral Transient Global Ischemia/Reperfusion

A target-agnostic screen identifies approved drugs to stabilize the  endoplasmic reticulum-resident proteome - ScienceDirect
A target-agnostic screen identifies approved drugs to stabilize the endoplasmic reticulum-resident proteome - ScienceDirect

Different PAAs in the LTCC model. A, verapamil binding. The p-methoxy... |  Download Scientific Diagram
Different PAAs in the LTCC model. A, verapamil binding. The p-methoxy... | Download Scientific Diagram

Covid-19 living Data
Covid-19 living Data

Covid-19 living Data
Covid-19 living Data

Nitrile-Containing Terpyridyl Zn(II)-Coordination Polymer-Based  Metallogelators Displaying Helical Structures: Synthesis, Structures, and  “Druglike” Action against B16-F10 Melanoma Cells | ACS Applied Materials &  Interfaces
Nitrile-Containing Terpyridyl Zn(II)-Coordination Polymer-Based Metallogelators Displaying Helical Structures: Synthesis, Structures, and “Druglike” Action against B16-F10 Melanoma Cells | ACS Applied Materials & Interfaces

Verapamil Inhibits Mitochondria-Induced Reactive Oxygen Species and  Dependent Apoptosis Pathways in Cerebral Transient Global  Ischemia/Reperfusion
Verapamil Inhibits Mitochondria-Induced Reactive Oxygen Species and Dependent Apoptosis Pathways in Cerebral Transient Global Ischemia/Reperfusion

Verapamil Inhibits Mitochondria-Induced Reactive Oxygen Species and  Dependent Apoptosis Pathways in Cerebral Transient Global  Ischemia/Reperfusion
Verapamil Inhibits Mitochondria-Induced Reactive Oxygen Species and Dependent Apoptosis Pathways in Cerebral Transient Global Ischemia/Reperfusion

Microorganisms | Free Full-Text | Functional and Structural Roles of the  Major Facilitator Superfamily Bacterial Multidrug Efflux Pumps
Microorganisms | Free Full-Text | Functional and Structural Roles of the Major Facilitator Superfamily Bacterial Multidrug Efflux Pumps

Materials | Free Full-Text | Bioengineered Fluorescent Nanoprobe Conjugates  for Tracking Human Bone Cells: In Vitro Biocompatibility Analysis
Materials | Free Full-Text | Bioengineered Fluorescent Nanoprobe Conjugates for Tracking Human Bone Cells: In Vitro Biocompatibility Analysis

Tracings of the effects of verapamil on KCl-induced [Ca ] i elevation... |  Download Scientific Diagram
Tracings of the effects of verapamil on KCl-induced [Ca ] i elevation... | Download Scientific Diagram

Covid-19 living Data
Covid-19 living Data

Verapamil hydrochloride 99+% | VWR
Verapamil hydrochloride 99+% | VWR

In vitro characterisation of the novel positive allosteric modulators of  the mGlu5 receptor, LSN2463359 and LSN2814617, and their effects on sleep  architecture and operant responding in the rat - ScienceDirect
In vitro characterisation of the novel positive allosteric modulators of the mGlu5 receptor, LSN2463359 and LSN2814617, and their effects on sleep architecture and operant responding in the rat - ScienceDirect

Verapamil hepatic clearance in four preclinical rat models: towards  activity‐based scaling - Nicolaï - 2015 - Biopharmaceutics & Drug  Disposition - Wiley Online Library
Verapamil hepatic clearance in four preclinical rat models: towards activity‐based scaling - Nicolaï - 2015 - Biopharmaceutics & Drug Disposition - Wiley Online Library

Antagonism of Ca2+ and other actions of verapamil in guinea-pig isolated  trachealis. - Abstract - Europe PMC
Antagonism of Ca2+ and other actions of verapamil in guinea-pig isolated trachealis. - Abstract - Europe PMC

Animals | Free Full-Text | Pain, Pathophysiological Mechanisms, and New  Therapeutic Options for Alternative Analgesic Agents in Sheep: A Review and  Investigation
Animals | Free Full-Text | Pain, Pathophysiological Mechanisms, and New Therapeutic Options for Alternative Analgesic Agents in Sheep: A Review and Investigation

Verapamil Inhibits Mitochondria-Induced Reactive Oxygen Species and  Dependent Apoptosis Pathways in Cerebral Transient Global  Ischemia/Reperfusion
Verapamil Inhibits Mitochondria-Induced Reactive Oxygen Species and Dependent Apoptosis Pathways in Cerebral Transient Global Ischemia/Reperfusion

Verapamil hepatic clearance in four preclinical rat models: towards  activity‐based scaling - Nicolaï - 2015 - Biopharmaceutics & Drug  Disposition - Wiley Online Library
Verapamil hepatic clearance in four preclinical rat models: towards activity‐based scaling - Nicolaï - 2015 - Biopharmaceutics & Drug Disposition - Wiley Online Library

IJMS | Free Full-Text | Molecular Mechanisms of Pharmaceutical Drug Binding  into Calsequestrin
IJMS | Free Full-Text | Molecular Mechanisms of Pharmaceutical Drug Binding into Calsequestrin

Verapamil hepatic clearance in four preclinical rat models: towards  activity‐based scaling - Nicolaï - 2015 - Biopharmaceutics & Drug  Disposition - Wiley Online Library
Verapamil hepatic clearance in four preclinical rat models: towards activity‐based scaling - Nicolaï - 2015 - Biopharmaceutics & Drug Disposition - Wiley Online Library

Nitrile-Containing Terpyridyl Zn(II)-Coordination Polymer-Based  Metallogelators Displaying Helical Structures: Synthesis, Structures, and  “Druglike” Action against B16-F10 Melanoma Cells | ACS Applied Materials &  Interfaces
Nitrile-Containing Terpyridyl Zn(II)-Coordination Polymer-Based Metallogelators Displaying Helical Structures: Synthesis, Structures, and “Druglike” Action against B16-F10 Melanoma Cells | ACS Applied Materials & Interfaces

SciELO - Brasil - Antifungal and anti-biofilm effect of the calcium channel  blocker verapamil on non-<i>albicans</i> Candida species Antifungal and  anti-biofilm effect of the calcium channel blocker verapamil on  non-<i>albicans</i> Candida species
SciELO - Brasil - Antifungal and anti-biofilm effect of the calcium channel blocker verapamil on non-<i>albicans</i> Candida species Antifungal and anti-biofilm effect of the calcium channel blocker verapamil on non-<i>albicans</i> Candida species