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téma čítanie kamenina verapamin mop súhlasiť priestranný urobiť experiment

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

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

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

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

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

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

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

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

Antibiotics | Free Full-Text | Identification of the PA1113 Gene Product as  an ABC Transporter Involved in the Uptake of Carbenicillin in Pseudomonas  aeruginosa PAO1
Antibiotics | Free Full-Text | Identification of the PA1113 Gene Product as an ABC Transporter Involved in the Uptake of Carbenicillin in Pseudomonas aeruginosa PAO1

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

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

Molecular Basis for Ligand Modulation of a Mammalian Voltage-Gated Ca2+  Channel - ScienceDirect
Molecular Basis for Ligand Modulation of a Mammalian Voltage-Gated Ca2+ Channel - ScienceDirect

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

MOE, MOP, TPM and the IMP/IMS
MOE, MOP, TPM and the IMP/IMS

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

Blockade of the Human Ether A-Go-Go–Related Gene (hERG) Potassium Channel  by Fentanyl | Molecular Pharmacology
Blockade of the Human Ether A-Go-Go–Related Gene (hERG) Potassium Channel by Fentanyl | Molecular Pharmacology

Verapamil Hydrochloride API Manufacturers | Suppliers | Drug Master Files  (DMF) | CEP | Pharmacompass.com
Verapamil Hydrochloride API Manufacturers | Suppliers | Drug Master Files (DMF) | CEP | Pharmacompass.com

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

Kv1.3-Blocking 5-Phenylalkoxypsoralens: A New Class of Immunomodulators |  Molecular Pharmacology
Kv1.3-Blocking 5-Phenylalkoxypsoralens: A New Class of Immunomodulators | Molecular Pharmacology

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

PDF] Preclinical evaluation of [(18)F]PK-209, a new PET ligand for imaging  the ion-channel site of NMDA receptors. | Semantic Scholar
PDF] Preclinical evaluation of [(18)F]PK-209, a new PET ligand for imaging the ion-channel site of NMDA receptors. | Semantic Scholar

8-Methoxypsoralen disrupts MDR3-mediated phospholipids efflux and bile acid  homeostasis and its relevance to hepatotoxicity - ScienceDirect
8-Methoxypsoralen disrupts MDR3-mediated phospholipids efflux and bile acid homeostasis and its relevance to hepatotoxicity - ScienceDirect

Pharmaceutics | Free Full-Text | Effects of Polyphenols on P-Glycoprotein  (ABCB1) Activity
Pharmaceutics | Free Full-Text | Effects of Polyphenols on P-Glycoprotein (ABCB1) Activity