TY - JOUR
T1 - Thermally Targeted Delivery of a c-Myc Inhibitory Polypeptide Inhibits Tumor Progression and Extends Survival in a Rat Glioma Model
AU - Bidwell, Gene L.
AU - Perkins, Eddie
AU - Hughes, Joshua
AU - Khan, Majid
AU - James, Judy R.
AU - Raucher, Drazen
N1 - Funding Information:
The authors are grateful to Rowshan Begum for tireless work preparing purified polypeptides, Shadon Rollins and Betty Chen for performing tissue sectioning tasks, Mariper Lopez for assistance with histology, Leigh Whitney Pyron and Maria Brady for assistance with slide scanning, and Susan Wellman for assistance with pharmacokinetic analysis. We thank the Mississippi Functional Genomics Network (MFGN) Genomics Facility, which is supported by the MFGN INBRE Program of the National Center for Research Resources, for access to and assistance with slide scanning. We thank Daniel Craft, Kelsey Henry, and Andrew Smith for technical assistance with MRI scanning, and we thank Imran Sunesara and Okan Elci for assistance with statistical analysis. We also thank the Animal Imaging Core Facility of the University of Mississippi Medical Center Cancer Institute for access to the IVIS Spectrum in vivo imaging system and software.
PY - 2013/1/30
Y1 - 2013/1/30
N2 - Treatment of glioblastoma is complicated by the tumors' high resistance to chemotherapy, poor penetration of drugs across the blood brain barrier, and damaging effects of chemotherapy and radiation to normal neural tissue. To overcome these limitations, a thermally responsive polypeptide was developed for targeted delivery of therapeutic peptides to brain tumors using focused hyperthermia. The peptide carrier is based on elastin-like polypeptide (ELP), which is a thermally responsive biopolymer that forms aggregates above a characteristic transition temperature. ELP was modified with cell penetrating peptides (CPPs) to enhance delivery to brain tumors and mediate uptake across the tumor cells' plasma membranes and with a peptide inhibitor of c-Myc (H1). In rats with intracerebral gliomas, brain tumor targeting of ELP following systemic administration was enhanced up to 5-fold by the use of CPPs. When the lead CPP-ELP-fused c-Myc inhibitor was combined with focused hyperthermia of the tumors, an additional 3 fold increase in tumor polypeptide levels was observed, and 80% reduction in tumor volume, delayed onset of tumor-associated neurological deficits, and at least doubled median survival time including complete regression in 80% of animals was achieved. This work demonstrates that a c-Myc inhibitory peptide can be effectively delivered to brain tumors.
AB - Treatment of glioblastoma is complicated by the tumors' high resistance to chemotherapy, poor penetration of drugs across the blood brain barrier, and damaging effects of chemotherapy and radiation to normal neural tissue. To overcome these limitations, a thermally responsive polypeptide was developed for targeted delivery of therapeutic peptides to brain tumors using focused hyperthermia. The peptide carrier is based on elastin-like polypeptide (ELP), which is a thermally responsive biopolymer that forms aggregates above a characteristic transition temperature. ELP was modified with cell penetrating peptides (CPPs) to enhance delivery to brain tumors and mediate uptake across the tumor cells' plasma membranes and with a peptide inhibitor of c-Myc (H1). In rats with intracerebral gliomas, brain tumor targeting of ELP following systemic administration was enhanced up to 5-fold by the use of CPPs. When the lead CPP-ELP-fused c-Myc inhibitor was combined with focused hyperthermia of the tumors, an additional 3 fold increase in tumor polypeptide levels was observed, and 80% reduction in tumor volume, delayed onset of tumor-associated neurological deficits, and at least doubled median survival time including complete regression in 80% of animals was achieved. This work demonstrates that a c-Myc inhibitory peptide can be effectively delivered to brain tumors.
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U2 - 10.1371/journal.pone.0055104
DO - 10.1371/journal.pone.0055104
M3 - Article
C2 - 23372821
AN - SCOPUS:84872872856
SN - 1932-6203
VL - 8
JO - PloS one
JF - PloS one
IS - 1
M1 - e55104
ER -