Min-Ho Kim

Min-Ho Kim

Kent State University

H-index: 23

North America-United States

About Min-Ho Kim

Min-Ho Kim, With an exceptional h-index of 23 and a recent h-index of 21 (since 2020), a distinguished researcher at Kent State University, specializes in the field of Immunobiology, wound healing, and nano-bioengineering.

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

Mild magnetic hyperthermia is synergistic with an antibiotic treatment against dual species biofilms consisting of S. aureus and P. aeruginosa by enhancing …

Bi2O3 NANOPARTICLES PREPARED BY THE TOP-DOWN ULTRASONICATION ROUTE AS A BROAD-SPECTRUM ANTIMICROBIAL TO OVERCOME DRUG RESISTANCE IN ANTIBIOTICS

Harnessing the Dual Antimicrobial Mechanism of Action with Fe(8-Hydroxyquinoline)3 to Develop a Topical Ointment for Mupirocin-Resistant MRSA Infections

Broad-Spectrum Antimicrobial Activity of Ultrafine (BiO)2CO3 NPs Functionalized with PVP That Can Overcome the Resistance to Ciprofloxacin, AgNPs and Meropenem in …

GPNMB compositions for treatment of skin wounds

Nano-particulate compositions for stimulating host innate immune responses for therapeutic applications

Harnessing the toxicity of dysregulated iron uptake for killing Staphylococcus aureus: reality or mirage?

Rationally designed lawsone derivatives as antimicrobials against multidrug-resistant staphylococcus aureus

Min-Ho Kim Information

University

Position

___

Citations(all)

2084

Citations(since 2020)

1258

Cited By

1232

hIndex(all)

23

hIndex(since 2020)

21

i10Index(all)

38

i10Index(since 2020)

32

Email

University Profile Page

Kent State University

Google Scholar

View Google Scholar Profile

Min-Ho Kim Skills & Research Interests

Immunobiology

wound healing

and nano-bioengineering

Top articles of Min-Ho Kim

Title

Journal

Author(s)

Publication Date

Mild magnetic hyperthermia is synergistic with an antibiotic treatment against dual species biofilms consisting of S. aureus and P. aeruginosa by enhancing …

International Journal of Hyperthermia

Layla A Almutairi

Bing Yu

Eric Dyne

Alhussain A Ojaym

Min-Ho Kim

2023/12/31

Bi2O3 NANOPARTICLES PREPARED BY THE TOP-DOWN ULTRASONICATION ROUTE AS A BROAD-SPECTRUM ANTIMICROBIAL TO OVERCOME DRUG RESISTANCE IN ANTIBIOTICS

2023/7/27

Harnessing the Dual Antimicrobial Mechanism of Action with Fe(8-Hydroxyquinoline)3 to Develop a Topical Ointment for Mupirocin-Resistant MRSA Infections

Antibiotics

Nalin Abeydeera

Bogdan M Benin

Khalil Mudarmah

Bishnu D Pant

Guanyu Chen

...

2023/5/10

Broad-Spectrum Antimicrobial Activity of Ultrafine (BiO)2CO3 NPs Functionalized with PVP That Can Overcome the Resistance to Ciprofloxacin, AgNPs and Meropenem in …

Antibiotics

Bishnu D Pant

Nalin Abeydeera

Rabindra Dubadi

Min-Ho Kim

Songping D Huang

2023/4/14

GPNMB compositions for treatment of skin wounds

2023/1/17

Nano-particulate compositions for stimulating host innate immune responses for therapeutic applications

2022/12/29

Harnessing the toxicity of dysregulated iron uptake for killing Staphylococcus aureus: reality or mirage?

Biomaterials science

Nalin Abeydeera

Bing Yu

Bishnu D Pant

Min-Ho Kim

Songping D Huang

2022

Rationally designed lawsone derivatives as antimicrobials against multidrug-resistant staphylococcus aureus

2022/9/1

Combined Effect of Matrix Topography and Stiffness on Neutrophil Shape and Motility (Adv. Biology 6/2022)

Advanced Biology

Baeckkyoung Sung

Deok‐Ho Kim

Min‐Ho Kim

Daniele Vigolo

2022/6

Ultrastructural analysis of the morphological phenotypes of microglia associated with neuroinflammatory cues

Journal of Comparative Neurology

Eric Dyne

Meghan Cawood

Matthew Suzelis

Reagan Russell

Min‐Ho Kim

2022/6

Bi 2 O 3 nanoparticles exhibit potent broad-spectrum antimicrobial activity and the ability to overcome Ag-, ciprofloxacin-and meropenem-resistance in P. aeruginosa: the next …

Biomaterials Science

Bishnu D Pant

Bogdan M Benin

Nalin Abeydeera

Min-Ho Kim

Songping D Huang

2022

Magnetic microgels and nanogels: Physical mechanisms and biomedical applications

Baeckkyoung Sung

Min‐Ho Kim

Leon Abelmann

2021/1

Lipophilic Ga complex with broad-spectrum antimicrobial activity and the ability to overcome gallium resistance in both Pseudomonas aeruginosa and Staphylococcus aureus

Journal of Medicinal Chemistry

Zhongxia Wang

Junfeng Li

Bogdan M Benin

Bing Yu

Scott D Bunge

...

2021/6/17

Parametric investigations of magnetic nanoparticles hyperthermia in ferrofluid using finite element analysis

International Journal of Thermal Sciences

Izaz Raouf

Jaehun Lee

Heung Soo Kim

Min-Ho Kim

2021/1/1

Mild magnetic nanoparticle hyperthermia promotes the disaggregation and microglia-mediated clearance of beta-amyloid plaques

Nanomedicine: Nanotechnology, Biology and Medicine

Eric Dyne

Praneetha Sundar Prakash

Junfeng Li

Bing Yu

Thorsten-Lars Schmidt

...

2021/6/1

An aluminum lining to the dark cloud of silver resistance: Harnessing the power of potent antimicrobial activity of γ-alumina nanoparticles

Biomaterials Science

Thiloka M Dassanayake

Arosha C Dassanayake

Nalin Abeydeera

Bishnu D Pant

Mietek Jaroniec

...

2021

Liquid crystal elastomer substrates with predesigned splay and bend to control growth and migration of fibroblast cells

Bulletin of the American Physical Society

Runa Koizumi

Mojtaba Rajabi

Min-Ho Kim

O Lavrentovich

2021

A review on numerical modeling for magnetic nanoparticle hyperthermia: Progress and challenges

Izaz Raouf

Salman Khalid

Asif Khan

Jaehun Lee

Heung Soo Kim

...

2020/7/1

Harnessing iron-oxide nanoparticles towards the improved bactericidal activity of macrophage against Staphylococcus aureus

Nanomedicine: Nanotechnology, Biology and Medicine

Bing Yu

Zhongxia Wang

Layla Almutairi

Songping Huang

Min-Ho Kim

2020/2/1

Topology control of human fibroblast cells monolayer by liquid crystal elastomer

Science Advances

Taras Turiv

Jess Krieger

Greta Babakhanova

Hao Yu

Sergij V Shiyanovskii

...

2020/5/13

See List of Professors in Min-Ho Kim University(Kent State University)