Zachary Heidrick
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Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Zachary Heidrick's research focuses on the development and application of nanostructured materials for targeted cancer therapies. His work investigates the use of bioconjugated chlorin-based metal–organic frameworks as potential agents for photodynamic therapy, specifically targeting triple-negative breast and pancreatic cancers. Heidrick has explored the molecular structure and drug delivery systems associated with these organometallic compounds, utilizing cell line models of tumors. His scholarship includes six publications with 158 citations and an h-index of 5. He has collaborated with researchers at the University of Arkansas at Fayetteville, including Jin-Woo Kim, Yuchun Du, Zachary McConnell, and Christopher Salmon.
Metrics
- h-index: 5
- Publications: 6
- Citations: 169
Selected Publications
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A Bioconjugated Chlorin-Based Metal–Organic Framework for Targeted Photodynamic Therapy of Triple Negative Breast and Pancreatic Cancers (2021)
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Using a Faculty-Developed Documentary-Style Film to Communicate Authentic Chemistry Research to a High School Audience (2020)
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Maltotriose Conjugated Metal–Organic Frameworks for Selective Targeting and Photodynamic Therapy of Triple Negative Breast Cancer Cells and Tumor Associated Macrophages (2020)
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Preparation and Applications of Metal–Organic Frameworks (MOFs): A Laboratory Activity and Demonstration for High School and/or Undergraduate Students (2020)
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Metal–Organic Frameworks and Covalent Organic Frameworks as Platforms for Photodynamic Therapy (2018)
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Micro-flow nanocatalysis: synergic effect of TfOH@SPIONs and micro-flow technology as an efficient and robust catalytic system for the synthesis of plasticizers (2018)
Collaboration Network
Top Collaborators
- Preparation and Applications of Metal–Organic Frameworks (MOFs): A Laboratory Activity and Demonstration for High School and/or Undergraduate Students
- Metal–Organic Frameworks and Covalent Organic Frameworks as Platforms for Photodynamic Therapy
- A Bioconjugated Chlorin-Based Metal–Organic Framework for Targeted Photodynamic Therapy of Triple Negative Breast and Pancreatic Cancers
- Maltotriose Conjugated Metal–Organic Frameworks for Selective Targeting and Photodynamic Therapy of Triple Negative Breast Cancer Cells and Tumor Associated Macrophages
- Using a Faculty-Developed Documentary-Style Film to Communicate Authentic Chemistry Research to a High School Audience
Showing 5 of 6 shared publications
- Preparation and Applications of Metal–Organic Frameworks (MOFs): A Laboratory Activity and Demonstration for High School and/or Undergraduate Students
- Metal–Organic Frameworks and Covalent Organic Frameworks as Platforms for Photodynamic Therapy
- A Bioconjugated Chlorin-Based Metal–Organic Framework for Targeted Photodynamic Therapy of Triple Negative Breast and Pancreatic Cancers
- Maltotriose Conjugated Metal–Organic Frameworks for Selective Targeting and Photodynamic Therapy of Triple Negative Breast Cancer Cells and Tumor Associated Macrophages
- Using a Faculty-Developed Documentary-Style Film to Communicate Authentic Chemistry Research to a High School Audience
Showing 5 of 6 shared publications
- Preparation and Applications of Metal–Organic Frameworks (MOFs): A Laboratory Activity and Demonstration for High School and/or Undergraduate Students
- Metal–Organic Frameworks and Covalent Organic Frameworks as Platforms for Photodynamic Therapy
- A Bioconjugated Chlorin-Based Metal–Organic Framework for Targeted Photodynamic Therapy of Triple Negative Breast and Pancreatic Cancers
- Maltotriose Conjugated Metal–Organic Frameworks for Selective Targeting and Photodynamic Therapy of Triple Negative Breast Cancer Cells and Tumor Associated Macrophages
- Using a Faculty-Developed Documentary-Style Film to Communicate Authentic Chemistry Research to a High School Audience
- Preparation and Applications of Metal–Organic Frameworks (MOFs): A Laboratory Activity and Demonstration for High School and/or Undergraduate Students
- A Bioconjugated Chlorin-Based Metal–Organic Framework for Targeted Photodynamic Therapy of Triple Negative Breast and Pancreatic Cancers
- Maltotriose Conjugated Metal–Organic Frameworks for Selective Targeting and Photodynamic Therapy of Triple Negative Breast Cancer Cells and Tumor Associated Macrophages
- Using a Faculty-Developed Documentary-Style Film to Communicate Authentic Chemistry Research to a High School Audience
- Metal–Organic Frameworks and Covalent Organic Frameworks as Platforms for Photodynamic Therapy
- A Bioconjugated Chlorin-Based Metal–Organic Framework for Targeted Photodynamic Therapy of Triple Negative Breast and Pancreatic Cancers
- Maltotriose Conjugated Metal–Organic Frameworks for Selective Targeting and Photodynamic Therapy of Triple Negative Breast Cancer Cells and Tumor Associated Macrophages
- Preparation and Applications of Metal–Organic Frameworks (MOFs): A Laboratory Activity and Demonstration for High School and/or Undergraduate Students
- A Bioconjugated Chlorin-Based Metal–Organic Framework for Targeted Photodynamic Therapy of Triple Negative Breast and Pancreatic Cancers
- Maltotriose Conjugated Metal–Organic Frameworks for Selective Targeting and Photodynamic Therapy of Triple Negative Breast Cancer Cells and Tumor Associated Macrophages
- Metal–Organic Frameworks and Covalent Organic Frameworks as Platforms for Photodynamic Therapy
- Micro-flow nanocatalysis: synergic effect of TfOH@SPIONs and micro-flow technology as an efficient and robust catalytic system for the synthesis of plasticizers
- Preparation and Applications of Metal–Organic Frameworks (MOFs): A Laboratory Activity and Demonstration for High School and/or Undergraduate Students
- Using a Faculty-Developed Documentary-Style Film to Communicate Authentic Chemistry Research to a High School Audience
- A Bioconjugated Chlorin-Based Metal–Organic Framework for Targeted Photodynamic Therapy of Triple Negative Breast and Pancreatic Cancers
- Maltotriose Conjugated Metal–Organic Frameworks for Selective Targeting and Photodynamic Therapy of Triple Negative Breast Cancer Cells and Tumor Associated Macrophages
- A Bioconjugated Chlorin-Based Metal–Organic Framework for Targeted Photodynamic Therapy of Triple Negative Breast and Pancreatic Cancers
- Maltotriose Conjugated Metal–Organic Frameworks for Selective Targeting and Photodynamic Therapy of Triple Negative Breast Cancer Cells and Tumor Associated Macrophages
- A Bioconjugated Chlorin-Based Metal–Organic Framework for Targeted Photodynamic Therapy of Triple Negative Breast and Pancreatic Cancers
- Maltotriose Conjugated Metal–Organic Frameworks for Selective Targeting and Photodynamic Therapy of Triple Negative Breast Cancer Cells and Tumor Associated Macrophages
- Micro-flow nanocatalysis: synergic effect of TfOH@SPIONs and micro-flow technology as an efficient and robust catalytic system for the synthesis of plasticizers
- Micro-flow nanocatalysis: synergic effect of TfOH@SPIONs and micro-flow technology as an efficient and robust catalytic system for the synthesis of plasticizers
- Micro-flow nanocatalysis: synergic effect of TfOH@SPIONs and micro-flow technology as an efficient and robust catalytic system for the synthesis of plasticizers
- Metal–Organic Frameworks and Covalent Organic Frameworks as Platforms for Photodynamic Therapy
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