Sunho Oh

Biomedical Engineering Program, University of South Dakota, Sioux Falls, South Dakota 57107, USA. gopinath.mani@usd.edu

Publications of Sunho Oh

  • Bilayer hydroxyapatite scaffolds for maxillofacial bone tissue engineering.

    Authors: Teja Guda, Sunho Oh, Mark R Appleford, Joo L Ong

    The International journal of oral & maxillofacial implants. 03/2012; 27(2):288-94.

    Purpose: The frequency of alveolar ridge resorption and crestal bone loss emphasizes the clinical need for bone graft substitutes to improve local bone quality prior to dental implant placement.
  • Hydroxyapatite/polylactide biphasic combination scaffold loaded with dexamethasone for bone regeneration.

    Authors: Jun-Sik Son, Su-Gwan Kim, Ji-Su Oh, Mark Appleford, Sunho Oh, Joo L Ong, Kyu-Bok Lee

    Journal of biomedical materials research. Part A. 09/2011; 99(4):638-47.

    This study presents a novel design of a ceramic/polymer biphasic combination scaffold that mimics natural bone structures and is used as a bone graft substitute. To mimic the natural bone structures,
  • Migration of co-cultured endothelial cells and osteoblasts in composite hydroxyapatite/polylactic acid scaffolds.

    Authors: Amita R Shah, Sarita R Shah, Sunho Oh, Joo L Ong, Joseph C Wenke, C Mauli Agrawal

    Annals of biomedical engineering. 07/2011; 39(10):2501-9.

    Regeneration of bone in large segmental bone defects requires regeneration of both cortical bone and trabecular bone. A scaffold design consisting of a hydroxyapatite (HA) ring surrounding a
  • Paclitaxel delivery from cobalt-chromium alloy surfaces using self-assembled monolayers.

    Authors: Gopinath Mani, Nelson Torres, Sunho Oh

    Biointerphases. 06/2011; 6(2):33-42.

    Polymer-based platforms in drug-eluting stents (DESs) can cause adverse reactions in patients. Hence, the development of a polymer-free drug delivery platform may reduce adverse reactions to DES. In
  • In vivo performance of bilayer hydroxyapatite scaffolds for bone tissue regeneration in the rabbit radius.

    Authors: Teja Guda, John A Walker, Beth E Pollot, Mark R Appleford, Sunho Oh, Joo L Ong, Joseph C Wenke

    Journal of materials science. Materials in medicine. 02/2011; 22(3):647-56.

    The objective of this study was to investigate the in vivo biomechanical performance of bone defects implanted with novel bilayer hydroxyapatite (HAp) scaffolds that mimic the cortical and cancellous
  • Delivery of paclitaxel from cobalt-chromium alloy surfaces without polymeric carriers.

    Authors: Gopinath Mani, Celia E Macias, Marc D Feldman, Denes Marton, Sunho Oh, C Mauli Agrawal

    Biomaterials. 07/2010; 31(20):5372-84.

    Polymer-based carriers are commonly used to deliver drugs from stents. However, adverse responses to polymer coatings have raised serious concerns. This research is focused on delivering drugs from
  • Stability of antibacterial self-assembled monolayers on hydroxyapatite.

    Authors: Nelson Torres, Sunho Oh, Mark Appleford, David D Dean, James H Jorgensen, Joo L Ong, C Mauli Agrawal, Gopinath Mani

    Acta biomaterialia. 02/2010; 6(8):3242-55.

    Open fractures are common in battlefields, motor vehicle accidents, gunshot wounds, sports injuries, and high-energy falls. Such fractures are treated using hydroxyapatite (HA)-based bone graft
  • In vivo study on hydroxyapatite scaffolds with trabecular architecture for bone repair.

    Authors: Mark R Appleford, Sunho Oh, Namsik Oh, Joo L Ong

    Journal of biomedical materials research. Part A. 06/2008;

    The objective of this research was to investigate the bone formation and angio-conductive potential of hydroxyapatite (HA) scaffolds closely matched to trabecular bone in a canine segmental defect
  • Ultrasound effect on osteoblast precursor cells in trabecular calcium phosphate scaffolds.

    Authors: Mark R Appleford, Sunho Oh, Judith A Cole, Jiri Protivínský, Joo L Ong

    Biomaterials. 12/2007; 28(32):4788-94.

    This study investigated the in vitro effect of low-intensity pulsed ultrasound (LIPUS) on human embryonic palatal mesenchyme cells (HEPM, CRL-1486, ATCC, Manassas, VA), an osteoblast precursor cell
  • Effects of trabecular calcium phosphate scaffolds on stress signaling in osteoblast precursor cells.

    Authors: Mark R Appleford, Sunho Oh, Judith A Cole, David L Carnes, Myunghyun Lee, Joel D Bumgardner, Warren O Haggard, Joo L Ong

    Biomaterials. 07/2007; 28(17):2747-53.

    The objective of this research was to investigate stress-signaling patterns in response to two-dimensional (2-D) and three-dimensional (3-D) calcium phosphate (CP) materials using human embryonic
  • The integration of chitosan-coated titanium in bone: an in vivo study in rabbits.

    Authors: Joel D Bumgardner, Betsy M Chesnutt, Youling Yuan, Yunzhi Yang, Mark Appleford, Sunho Oh, Ronald McLaughlin, Steven H Elder, Joo L Ong

    Implant dentistry. 04/2007; 16(1):66-79.

    PROCEDURE: Much research is directed at surface modifications to enhance osseointegration of implants. A new potential coating is the biopolymer, chitosan, the deacetylated derivative of the natural
  • Ectopic osteoinduction and early degradation of recombinant human bone morphogenetic protein-2-loaded porous beta-tricalcium phosphate in mice.

    Authors: Ge Liang, Yunzhi Yang, Sunho Oh, Joo L Ong, Changqiong Zheng, Junguo Ran, Guangfu Yin, Dali Zhou

    Biomaterials. 08/2005; 26(20):4265-71.

    The present study investigated the ectopic osteoinduction and early degradation of recombinant human bone morphogenetic protein-2 (rhBMP-2)-loaded porous beta-tricalcium phosphate (beta-TCP) in mice.
  • In vivo evaluation of hydroxyapatite coatings of different crystallinities.

    Authors: Sunho Oh, Eric Tobin, Yunzhi Yang, David L Carnes, Joo L Ong

    The International journal of oral & maxillofacial implants. 20(5):726-31.

    PURPOSE: The influence of calcium phosphate (CaP) and hydroxyapatite (HA) crystallinity on bone-implant osseointegration is not well established. In this study, the effect of HA crystallinity and

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Keywords of Sunho Oh

atomic force microscopy
 
biphasic scaffold
 
bone formation
 
carbon atoms
 
osteoblast precursor cells
 
porous beta-TCP
 
rhBMP-2-loaded porous beta-TCP
 
scanning electron microscopy
 
trabecular bone
 
X-ray photoelectron spectroscopy
 
52.92
Impact Points
13
Publications

Institutions

  • 2011
    • The University of South Dakota
      Sioux Falls, SD, USA
  • 2008
    • University of Texas at San Antonio
      • Department of Biomedical Engineering
      San Antonio, TX, USA
  • 2007
    • The University of Tennessee Health Science Center
      Memphis, TN, USA
    • The University of Memphis
      Memphis, TN, USA