Conor McClenaghan

About Conor McClenaghan

Conor McClenaghan, With an exceptional h-index of 16 and a recent h-index of 16 (since 2020), a distinguished researcher at Washington University in St. Louis, specializes in the field of Ion Channel Biophysics, Physiology, and Pharmacology.

His recent articles reflect a diverse array of research interests and contributions to the field:

Activation of PIEZO1 Evokes Calcium Flux and Promotes Human Airway Smooth Muscle Cell Relaxation

Novel loss-of-function variants expand ABCC9-related intellectual disability and myopathy syndrome

Electrophysiology of human iPSC-derived vascular smooth muscle cells and cell autonomous consequences of Cantu Syndrome mutations

Rapid characterization of the functional and pharmacological consequences of Cantú syndrome KATP channel mutations in intact cells

Skeletal muscle delimited myopathy and verapamil toxicity in SUR2 mutant mouse models of AIMS

Zoledronic Acid Blocks Overactive Kir6.1/SUR2-Dependent KATP Channels in Skeletal Muscle and Osteoblasts in a Murine Model of Cantú Syndrome

Lymphedema as first clinical presentation of Cantu Syndrome: reversed phenotyping after identification of gain-of-function variant in ABCC9

A Unique High‐Output Cardiac Hypertrophy Phenotype Arising From Low Systemic Vascular Resistance in Cantu Syndrome

Conor McClenaghan Information

University

Position

___

Citations(all)

1079

Citations(since 2020)

878

Cited By

485

hIndex(all)

16

hIndex(since 2020)

16

i10Index(all)

21

i10Index(since 2020)

20

Email

University Profile Page

Google Scholar

Conor McClenaghan Skills & Research Interests

Ion Channel Biophysics

Physiology

and Pharmacology

Top articles of Conor McClenaghan

Activation of PIEZO1 Evokes Calcium Flux and Promotes Human Airway Smooth Muscle Cell Relaxation

2024/5

Novel loss-of-function variants expand ABCC9-related intellectual disability and myopathy syndrome

Brain

2024/1/13

Electrophysiology of human iPSC-derived vascular smooth muscle cells and cell autonomous consequences of Cantu Syndrome mutations

bioRxiv

2023

Rapid characterization of the functional and pharmacological consequences of Cantú syndrome KATP channel mutations in intact cells

Journal of Pharmacology and Experimental Therapeutics

2023/9/1

Skeletal muscle delimited myopathy and verapamil toxicity in SUR2 mutant mouse models of AIMS

EMBO Molecular Medicine

2023/6/7

Zoledronic Acid Blocks Overactive Kir6.1/SUR2-Dependent KATP Channels in Skeletal Muscle and Osteoblasts in a Murine Model of Cantú Syndrome

Cells

2023/3/17

Lymphedema as first clinical presentation of Cantu Syndrome: reversed phenotyping after identification of gain-of-function variant in ABCC9

European Journal of Human Genetics

2023/2

A Unique High‐Output Cardiac Hypertrophy Phenotype Arising From Low Systemic Vascular Resistance in Cantu Syndrome

Journal of the American Heart Association

2022/12/20

Kir6. 1 and SUR2B in Cantú syndrome

2022/9/1

Conor Mcclenaghan
Conor Mcclenaghan

H-Index: 10

Colin G Nichols
Colin G Nichols

H-Index: 37

Sulfonylurea-insensitive permanent neonatal diabetes caused by a severe gain-of-function Tyr330His substitution in Kir6. 2

Hormone research in paediatrics

2022/8/4

Isolation of Cardiac and Vascular Smooth Muscle Cells from Adult, Juvenile, Larval and Embryonic Zebrafish for Electrophysiological Studies

JoVE (Journal of Visualized Experiments)

2022/2/9

Conor Mcclenaghan
Conor Mcclenaghan

H-Index: 10

Colin G Nichols
Colin G Nichols

H-Index: 37

Bridging Personal and Population in Excitability Diseases: Will Studies of Rare Diseases Bring Generalizable Mechanisms From Monogenic Channelopathies?

Function

2022

Colin G Nichols
Colin G Nichols

H-Index: 37

Conor Mcclenaghan
Conor Mcclenaghan

H-Index: 10

ATP‐sensitive potassium channels in zebrafish cardiac and vascular smooth muscle

The Journal of physiology

2022/1

Conor Mcclenaghan
Conor Mcclenaghan

H-Index: 10

Colin G Nichols
Colin G Nichols

H-Index: 37

Consequences of SUR2 [A478V] mutation in skeletal muscle of murine model of Cantu syndrome

Cells

2021/7/15

Conor Mcclenaghan
Conor Mcclenaghan

H-Index: 10

Colin G Nichols
Colin G Nichols

H-Index: 37

Complex consequences of Cantu syndrome SUR2 variant R1154Q in genetically modified mice

JCI insight

2021/3/3

Pathophysiological consequences of KATP channel overactivity and pharmacological response to glibenclamide in skeletal muscle of a murine model of Cantù syndrome

Frontiers in pharmacology

2020/11/30

Conor Mcclenaghan
Conor Mcclenaghan

H-Index: 10

Colin G Nichols
Colin G Nichols

H-Index: 37

Coronavirus proteins as ion channels: current and potential research

2020/10/9

Glibenclamide reverses cardiovascular abnormalities of Cantu syndrome driven by KATP channel overactivity

The Journal of clinical investigation

2020/3/2

The mechanism of high-output cardiac hypertrophy arising from potassium channel gain-of-function in Cantú syndrome

Function

2020

See List of Professors in Conor McClenaghan University(Washington University in St. Louis)