Peter Searson

Peter Searson

Johns Hopkins University

H-index: 92

North America-United States

About Peter Searson

Peter Searson, With an exceptional h-index of 92 and a recent h-index of 48 (since 2020), a distinguished researcher at Johns Hopkins University, specializes in the field of bioengineering, tissue engineering, biomaterials, blood-brain barrier.

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

Disruption of epithelium integrity by inflammation-associated fibroblasts through prostaglandin signaling

Membrane-active peptides and methods for reversible blood-brain barrier opening

Modeling Substrate Entry into the P-Glycoprotein Efflux Pump at the Blood–Brain Barrier

A tissue-engineered model of the blood-tumor barrier during metastatic breast cancer

A least-squares-fitting procedure for an efficient preclinical ranking of passive transport across the blood–brain barrier endothelium

The influence of physiological and pathological perturbations on blood-brain barrier function

The Cancer Moonshot, the role of in vitro models, model accuracy, and the need for validation

Capacitive sweat rate sensor

Peter Searson Information

University

Position

Reynolds Professor of Engineering

Citations(all)

33338

Citations(since 2020)

9343

Cited By

27582

hIndex(all)

92

hIndex(since 2020)

48

i10Index(all)

310

i10Index(since 2020)

169

Email

University Profile Page

Google Scholar

Peter Searson Skills & Research Interests

bioengineering

tissue engineering

biomaterials

blood-brain barrier

Top articles of Peter Searson

Disruption of epithelium integrity by inflammation-associated fibroblasts through prostaglandin signaling

Science Advances

2024/4/3

Membrane-active peptides and methods for reversible blood-brain barrier opening

2024/1/11

Modeling Substrate Entry into the P-Glycoprotein Efflux Pump at the Blood–Brain Barrier

Journal of medicinal chemistry

2023/12/14

A tissue-engineered model of the blood-tumor barrier during metastatic breast cancer

Fluids and Barriers of the CNS

2023/11/3

A least-squares-fitting procedure for an efficient preclinical ranking of passive transport across the blood–brain barrier endothelium

Journal of Computer-Aided Molecular Design

2023/11

The influence of physiological and pathological perturbations on blood-brain barrier function

2023/10/23

The Cancer Moonshot, the role of in vitro models, model accuracy, and the need for validation

Nature Nanotechnology

2023/10

Capacitive sweat rate sensor

2023/7/6

The feasibility of remotely monitoring physical, cognitive, and psychosocial function in individuals with stroke or chronic obstructive pulmonary disease

Digital Health

2023/5

Modeling angiogenesis in the human brain in a tissue-engineered post-capillary venule

Angiogenesis

2023/5

Towards a multiscale model of P-glycoprotein efflux

Biophysical Journal

2023/2/10

Corrigendum: The influence of physiological and pathological perturbations on blood-brain barrier function

Frontiers in Neuroscience

2023

Potentiometric wearable sweat sensor

2022/3/15

Dynamics of Borrelia Burgdorferi Invasion and Intravasation in a Tissue Engineered Dermal Microvessel Model

bioRxiv

2022/7/10

Engineering the human blood–brain barrier at the capillary scale using a double‐templating technique

Advanced functional materials

2022/7

Human IPSC 3D brain model as a tool to study chemical-induced dopaminergic neuronal toxicity

Neurobiology of disease

2022/7/1

Brain microvascular endothelial cell dysfunction in an isogenic juvenile iPSC model of Huntington’s disease

Fluids and barriers of the CNS

2022/6/30

Peptides for transport across biological barriers

17 Naples Workshop on Bioactive Peptides

2022/6/16

Effects of acute and chronic oxidative stress on the blood–brain barrier in 2D and 3D in vitro models

Fluids and Barriers of the CNS

2022/5/12

See List of Professors in Peter Searson University(Johns Hopkins University)