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UAIPD 10-0028
Dr. Yuping Bao
Shape-controlled Magnetic Nanoparticles as T1
Contrast Agents for Magnetic Resonance Imaging
Current Problems
• Magnetic Resonance Imaging (MRI)
– Powerful, non-invasive diagnostic tool for living
organisms
– Provides real-time images with great spatial resolution
• Problems
– Potential toxicity of current T1 contrast agent
– Lack of targeting imaging ability
– Relative short residence time
– Relies on omnipresent mechanisms
• Variety of nanoparticle (NP) shapes
– Tune the relaxivity of magnetic NP’s as T1 contrast agents for
MRI
• Modification of the contrast agent structure into whiskers,
plate or wire shapes
– Increases the effectiveness of the contrast agent
• Method for targeting image
– Target imaging can be realized and further enhancement of the
residence time
Technology
Figure 1. Shape-controlled iron oxide nanoparticles: (a) nanowhiskers, (b) uniform thin
nanowires along with irregular shaped particles, (c) porous nanorices, and (d) nanoplates
• Removes toxicity of widely used T1 contrast agent
• Produce brighter and clearer quality
• Provide targeting imaging ability
• Enhance contrast agent residence time
• Easy to produce
• Safer and more effective
• Increase retention
– Through nanowires
Advantages
• Dr. Yuping Bao
– Associate Professor
– 2 patent applications
• Departments
– Center for Materials for
Information Technologies
– Chemical and Biological
Engineering
Inventor
ybao@eng.ua.edu
Office for Technology Transfer
720 2nd Ct E
Tuscaloosa, AL 35401
UAIPD 10-0028
OTT@UA.edu
www.OTT.UA.edu

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Shape-Controlled Magnetic Nanoparticles for MRI Contrast Agents

  • 1. UAIPD 10-0028 Dr. Yuping Bao Shape-controlled Magnetic Nanoparticles as T1 Contrast Agents for Magnetic Resonance Imaging
  • 2. Current Problems • Magnetic Resonance Imaging (MRI) – Powerful, non-invasive diagnostic tool for living organisms – Provides real-time images with great spatial resolution • Problems – Potential toxicity of current T1 contrast agent – Lack of targeting imaging ability – Relative short residence time – Relies on omnipresent mechanisms
  • 3. • Variety of nanoparticle (NP) shapes – Tune the relaxivity of magnetic NP’s as T1 contrast agents for MRI • Modification of the contrast agent structure into whiskers, plate or wire shapes – Increases the effectiveness of the contrast agent • Method for targeting image – Target imaging can be realized and further enhancement of the residence time Technology Figure 1. Shape-controlled iron oxide nanoparticles: (a) nanowhiskers, (b) uniform thin nanowires along with irregular shaped particles, (c) porous nanorices, and (d) nanoplates
  • 4. • Removes toxicity of widely used T1 contrast agent • Produce brighter and clearer quality • Provide targeting imaging ability • Enhance contrast agent residence time • Easy to produce • Safer and more effective • Increase retention – Through nanowires Advantages
  • 5. • Dr. Yuping Bao – Associate Professor – 2 patent applications • Departments – Center for Materials for Information Technologies – Chemical and Biological Engineering Inventor ybao@eng.ua.edu
  • 6. Office for Technology Transfer 720 2nd Ct E Tuscaloosa, AL 35401 UAIPD 10-0028 OTT@UA.edu www.OTT.UA.edu

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