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Specific delivery of corroles to cells via noncovalent conjugates with viral proteins
- Source :
- Pharmaceutical research. 23(2)
- Publication Year :
- 2005
-
Abstract
- Corroles are amphiphilic macrocycles that can bind and transport metal ions, and thus may be toxic to cells. We predicted that anionic corroles would poorly enter cells due to the negatively charged cell membrane, but could be ideal tumor-targeted drugs if appropriate carriers enabled delivery into tumor cells. In this work, we test the hypothesis that recombinant cell penetrating proteins of the adenovirus (Ad) capsid form noncovalent conjugates with corroles to facilitate target-specific delivery and cell death. Corroles mixed with recombinant proteins were tested for conjugate assembly, cell penetration, stability, targeted binding, and cell killing in vitro. Sulfonated corroles entered cells only with carrier proteins, and formed stable complexes with recombinant Ad capsid proteins. ErbB receptor-targeted conjugates were cytotoxic to ErbB2-positive but not ErbB2-negative breast cancer cells, whereas molar equivalents of free corrole had no effect on these cells. Sulfonated corroles are cytotoxic to ErbB2-positive breast cancer cells when delivered by a targeted cell penetrating protein. The relatively low dose required to accomplish this compared to untargeted compounds suggests that corroles may lend themselves to targeted therapy. Importantly, the amphiphilicity of corroles enables a unique approach to bioconjugate formation whereby the carrier and drug form a stable complex by noncovalent assembly.
- Subjects :
- Porphyrins
medicine.medical_treatment
Cell
Pharmaceutical Science
Receptors, Cell Surface
Targeted therapy
Cell Line
Cell membrane
Viral Proteins
Drug Delivery Systems
medicine
Cytotoxic T cell
Humans
Pharmacology (medical)
Fluorescent Dyes
Pharmacology
Bioconjugation
Cell Death
Chemistry
Organic Chemistry
In vitro
Cell killing
medicine.anatomical_structure
Biochemistry
Cell culture
Molecular Medicine
Biotechnology
HeLa Cells
Subjects
Details
- ISSN :
- 07248741
- Volume :
- 23
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Pharmaceutical research
- Accession number :
- edsair.doi.dedup.....fe0461ca8ae82c681288ae998f4614aa