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Han-Jun Kim

Yonsei University · Engineering

About the Lab

Professor Han-Jun Kim's research lab specializes in the design and development of advanced biomaterials for biomedical applications, with a focus on nanomaterials, drug delivery systems, and tissue engineering. The lab investigates functional materials such as zinc ferrite nanoparticles, Laponite clay, aerogels, and mussel-inspired biomaterials to address challenges in antimicrobial therapy, wound healing, controlled drug release, and regenerative medicine. A key emphasis is placed on understanding the biological interactions, cytocompatibility, and stimuli-responsive behaviors of these materials for clinical translation. The lab also explores smart wearable devices, such as smart contact lenses, for continuous health monitoring and targeted ocular drug delivery.

biomaterialsnanomaterialsdrug deliverytissue engineeringsmart devices

Research Overview

Papers
320
Total Citations
7,745
Papers (5y)
99
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
99total
2022
2023
2024
2025
2026
Citations per year (5y)
1,607total
20222023202420252026

Selected Papers

15
1
Article|198 citations·2021
Anti‐bacterial and wound healing‐promoting effects of zinc ferrite nanoparticles
Reihaneh Haghniaz, Atiya Rabbani, Fereshteh Vajhadin, Taous Khan, Rozina Kousar, Abdul Rehman Khan, Hossein Montazerian, Javed Iqbal, Alberto Libanori, Han‐Jun Kim, Fazli Wahid
SJR Q1Journal of NanobiotechnologyOA

Abstract Background Increasing antibiotic resistance continues to focus on research into the discovery of novel antimicrobial agents. Due to its antimicrobial and wound healing-promoting activity, metal nanoparticles have attracted attention for dermatological applications. This study is designed to investigate the scope and bactericidal potential of zinc ferrite nanoparticles (ZnFe 2 O 4 NPs), and the mechanism of anti-bacterial action along with cytocompatibility, hemocompatibility, and wound

RehabilitationMedicine
2
Review|142 citations·2022
Laponite‐Based Nanomaterials for Drug Delivery
Gita Kiaee, Nikolaos Dimitrakakis, Shabnam Sharifzadeh, Han‐Jun Kim, Reginald K. Avery, Kamyar Mollozadeh Moghaddam, Reihaneh Haghniaz, Ezgi Pinar Yalcintas, Natan Roberto de Barros, Solmaz Karamikamkar, Alberto Libanori, Ali Khademhosseini
SJR Q1Advanced Healthcare MaterialsOA

Laponite is a clay-based material composed of synthetic disk-shaped crystalline nanoparticles with highly ionic, large surface area. These characteristics enable the intercalation and dissolution of biomolecules in Laponite-based drug delivery systems. Furthermore, Laponite's innate physicochemical properties and architecture enable the development of tunable pH-responsive drug delivery systems. Laponite's coagulation capacity and cation exchangeability determine its exchange capabilities, drug

BiomaterialsMaterials Science
3
Review|126 citations·2018
The current state of biomarkers of mild traumatic brain injury
Han‐Jun Kim, Jack W. Tsao, Ansley Grimes Stanfill
SJR Q1JCI InsightOA

Mild traumatic brain injury (mTBI) is a common occurrence, with over 3 million cases reported every year in the United States. While research into the underlying pathophysiology is ongoing, there is an urgent need for better clinical guidelines that allow more consistent diagnosis of mTBI and ensure safe return-to-play timelines for athletes, nonathletes, and military personnel. The development of a suite of biomarkers that indicate the pathogenicity of mTBI could lead to clinically useful tools

NeurologyMedicine
4
Review|112 citations·2022
Lab‐on‐a‐Contact Lens: Recent Advances and Future Opportunities in Diagnostics and Therapeutics
Yangzhi Zhu, Shaopei Li, Jinghang Li, Natashya Falcone, Qingyu Cui, Shilp Shah, Martin C. Hartel, Ning Yu, Patric Young, Natan Roberto de Barros, Zhuohong Wu, Reihaneh Haghniaz
SJR Q1Advanced MaterialsOA

The eye is one of the most complex organs in the human body, containing rich and critical physiological information (e.g., intraocular pressure, corneal temperature, and pH) as well as a library of metabolite biomarkers (e.g., glucose, proteins, and specific ions). Smart contact lenses (SCLs) can serve as a wearable intelligent ocular prosthetic device capable of noninvasive and continuous monitoring of various essential physical/biochemical parameters and drug loading/delivery for the treatment

Public Health, Environmental and Occupational HealthMedicine
5
Review|99 citations·2023
Aerogel‐Based Biomaterials for Biomedical Applications: From Fabrication Methods to Disease‐Targeting Applications
Solmaz Karamikamkar, Ezgi Pinar Yalcintas, Reihaneh Haghniaz, Natan Roberto de Barros, Marvin Mecwan, Rohollah Nasiri, Elham Davoodi, Fatemeh Nasrollahi, Ahmet Erdem, Heemin Kang, Junmin Lee, Yangzhi Zhu
SJR Q1Advanced ScienceOA

Aerogel-based biomaterials are increasingly being considered for biomedical applications due to their unique properties such as high porosity, hierarchical porous network, and large specific pore surface area. Depending on the pore size of the aerogel, biological effects such as cell adhesion, fluid absorption, oxygen permeability, and metabolite exchange can be altered. Based on the diverse potential of aerogels in biomedical applications, this paper provides a comprehensive review of fabricati

SpectroscopyChemistry
6
Review|76 citations·2021
Recent developments in mussel-inspired materials for biomedical applications
Natan Roberto de Barros, Yi Chen, Vahid Hosseini, Weiyue Wang, Rohollah Nasiri, Mahboobeh Mahmoodi, Ezgi Pinar Yalcintas, Reihaneh Haghniaz, Marvin Mecwan, Solmaz Karamikamkar, Wei Dai, Shima A. Sarabi
SJR Q1Biomaterials Science

Over the decades, researchers have strived to synthesize and modify nature-inspired biomaterials, with the primary aim to address the challenges of designing functional biomaterials for regenerative medicine and tissue engineering. Among these challenges, biocompatibility and cellular interactions have been extensively investigated. Some of the most desirable characteristics for biomaterials in these applications are the loading of bioactive molecules, strong adhesion to moist areas, improvement

Biomedical EngineeringEngineering
7
Article|66 citations·2023
Injectable, Antibacterial, and Hemostatic Tissue Sealant Hydrogels
Reihaneh Haghniaz, Hossein Montazerian, Atiya Rabbani, Avijit Baidya, Brent Usui, Yangzhi Zhu, Maryam Tavafoghi, Fazli Wahid, Han‐Jun Kim, Amir Sheikhi, Ali Khademhosseini
SJR Q1Advanced Healthcare MaterialsOA

Abstract Hemorrhage and bacterial infections are major hurdles in the management of life‐threatening surgical wounds. Most bioadhesives for wound closure lack sufficient hemostatic and antibacterial properties. Furthermore, they suffer from weak sealing efficacy, particularly for stretchable organs, such as the lung and bladder. Accordingly, there is an unmet need for mechanically robust hemostatic sealants with simultaneous antibacterial effects. Here, an injectable, photocrosslinkable, and str

HematologyMedicine
8
Article|57 citations·2009
Roll‐to‐roll manufacturing of electronics on flexible substrates using self‐aligned imprint lithography (SAIL)
Han‐Jun Kim, Marcia Almanza‐Workman, Bob Garcia, Ohseung Kwon, Frank Jeffrey, S. Braymen, Jason Hauschildt, Kelly Junge, Don Larson, Dan Stieler, A. Chaiken, Bob Cobene
SJR Q2Journal of the Society for Information Display

Abstract— The manufacture of large‐area arrays of thin‐film transistors on polymer substrates using roll‐to‐roll (R2R) processes exclusively is being developed. Self‐aligned imprint lithography (SAIL) enables the patterning and alignment of submicron‐sized features on meter‐scaled flexible substrates in the R2R environment. SAIL solves the problem of precision interlayer registry on a moving web by encoding all the geometry information required for the entire patterning steps into a monolithic t

Biomedical EngineeringEngineering
9
Article|36 citations·2023
Tunable hybrid hydrogels with multicellular spheroids for modeling desmoplastic pancreatic cancer
Menekşe Ermis, Natashya Falcone, Natan Roberto de Barros, Marvin Mecwan, Reihaneh Haghniaz, Auveen Choroomi, Mahsa Monirizad, Ye‐Ji Lee, JiHyeon Song, Hyun‐Jong Cho, Yangzhi Zhu, Heemin Kang
SJR Q1Bioactive MaterialsOA

The tumor microenvironment consists of diverse, complex etiological factors. The matrix component of pancreatic ductal adenocarcinoma (PDAC) plays an important role not only in physical properties such as tissue rigidity but also in cancer progression and therapeutic responsiveness. Although significant efforts have been made to model desmoplastic PDAC, existing models could not fully recapitulate the etiology to mimic and understand the progression of PDAC. Here, two major components in desmopl

Biomedical EngineeringEngineering
10
Article|34 citations·2020
Synthesis of Injectable Shear‐Thinning Biomaterials of Various Compositions of Gelatin and Synthetic Silicate Nanoplatelet
Chengbin Xue, Huifang Xie, James Eichenbaum, Yi Chen, Yonggang Wang, Floor W. van den Dolder, Junmin Lee, KangJu Lee, Shiming Zhang, Wujin Sun, Amir Sheikhi, Samad Ahadian
SJR Q2Biotechnology JournalOA

Injectable shear-thinning biomaterials (iSTBs) have great potential for in situ tissue regeneration through minimally invasive therapeutics. Previously, an iSTB was developed by combining gelatin with synthetic silicate nanoplatelets (SNPs) for potential application to hemostasis and endovascular embolization. Hence, iSTBs are synthesized by varying compositions of gelatin and SNPs to navigate their material, mechanical, rheological, and bioactive properties. All compositions (each component per

Biomedical EngineeringEngineering
11
Article|26 citations·2020
Hypoxia Helps Maintain Nucleus Pulposus Homeostasis by Balancing Autophagy and Apoptosis
Han‐Jun Kim, Hye-Rim Lee, Hyosung Kim, Sun Hee
SJR Q1Oxidative Medicine and Cellular LongevityOA

Intervertebral disc degeneration (IVDD) is a common cause of lower back pain. Programmed cell death (PCD) including apoptosis and autophagy is known to play key mechanistic roles in the development of IVDD. We hypothesized that the nucleus pulposus cells that make up the center of the IVD can be affected by aging and environmental oxygen concentration, thus affecting the development of IVDD. Here, we evaluated the phenotype changes and PCD signaling in nucleus pulposus cells in two different oxy

Pathology and Forensic MedicineMedicine
12
Article|23 citations·2021
pH-Responsive doxorubicin delivery using shear-thinning biomaterials for localized melanoma treatment
Junmin Lee, Yonggang Wang, Chengbin Xue, Yi Chen, Moyuan Qu, Jai Thakor, Xingwu Zhou, Natan Roberto de Barros, Natashya Falcone, Patric Young, Floor W. van den Dolder, KangJu Lee
SJR Q1NanoscaleOA

Injectable shear-thinning biomaterials (STBs) have attracted significant attention because of their efficient and localized delivery of cells as well as various molecules ranging from growth factors to drugs.

Biomedical EngineeringEngineering
13
Article|20 citations·2015
Dual Function of Wnt Signaling during Neuronal Differentiation of Mouse Embryonic Stem Cells
Han‐Jun Kim, Sewoon Kim, Yonghee Song, Wantae Kim, Qi‐Long Ying, Eek‐hoon Jho
SJR Q2Stem Cells InternationalOA

Activation of Wnt signaling enhances self-renewal of mouse embryonic and neural stem/progenitor cells. In contrast, undifferentiated ES cells show a very low level of endogenous Wnt signaling, and ectopic activation of Wnt signaling has been shown to block neuronal differentiation. Therefore, it remains unclear whether or not endogenous Wnt/β-catenin signaling is necessary for self-renewal or neuronal differentiation of ES cells. To investigate this, we examined the expression profiles of Wnt si

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|19 citations·2023
Injectable Shear‐Thinning Hydrogels with Sclerosing and Matrix Metalloproteinase Modulatory Properties for the Treatment of Vascular Malformations
Fatemeh Zehtabi, Ankit Gangrade, Kaylee Tseng, Reihaneh Haghniaz, Reza Abbasgholizadeh, Hossein Montazerian, Danial Khorsandi, Jamal Bahari, Amir Ahari, Neda Mohaghegh, Negar Hosseinzadeh Kouchehbaghi, Kalpana Mandal
SJR Q1Advanced Functional MaterialsOA

Abstract Sac embolization of abdominal aortic aneurysms (AAAs) remains clinically limited by endoleak recurrences. These recurrences are correlated with recanalization due to the presence of endothelial lining and matrix metalloproteinases (MMPs)‐mediated aneurysm progression. This study incorporates doxycycline (DOX), a well‐known sclerosant and MMPs inhibitor, into a shear‐thinning biomaterial (STB)‐based vascular embolizing hydrogel. The addition of DOX is expected to improve embolizing effic

Pulmonary and Respiratory MedicineMedicine
15
Article|18 citations·2023
Drug‐Eluting Shear‐Thinning Hydrogel for the Delivery of Chemo‐ and Immunotherapeutic Agents for the Treatment of Hepatocellular Carcinoma
Natashya Falcone, Menekşe Ermis, Ankit Gangrade, Auveen Choroomi, Patric Young, Tess Grett Mathes, Mahsa Monirizad, Fatemeh Zehtabi, Marvin Mecwan, Marco Rodriguez, Yangzhi Zhu, Youngjoo Byun
SJR Q1Advanced Functional MaterialsOA

Abstract Hepatocellular carcinoma (HCC) is a malignant and deadly form of liver cancer with limited treatment options. Transcatheter arterial chemoembolization, a procedure that delivers embolic and chemotherapeutic agents through blood vessels, is a promising cancer treatment strategy. However, it still faces limitations, such as inefficient agent delivery and the inability to address tumor‐induced immunosuppression. Here, a drug‐eluting shear‐thinning hydrogel (DESTH) loaded with chemotherapeu

Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringElectrical and Electronic EngineeringMolecular BiologyPulmonary and Respiratory MedicinePharmaceutical ScienceUrology

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