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Viral Nanoparticles for In vivo Tumor Imaging
Published on: November 16, 2012
Canine parvovirus-like particles, a novel nanomaterial for tumor targeting
Pratik Singh1, Giuseppe Destito, Anette Schneemann
1Center for Integrative Molecular Biosciences, The Scripps Research Institute, La Jolla, CA 92037, USA. prasingh@scripps.edu
Abstract:
Specific targeting of tumor cells is an important goal for the design of nanotherapeutics for the treatment of cancer. Recently, viruses have been explored as nano-containers for specific targeting applications, however these systems typically require modification of the virus surface using chemical or genetic means to achieve tumor-specific delivery. Interestingly, there exists a subset of viruses with natural affinity for receptors on tumor cells that could be exploited for nanotechnology applications. For example, the canine parvovirus (CPV) utilizes transferrin receptors (TfRs) for binding and cell entry into canine as well as human cells. TfRs are over-expressed by a variety of tumor cells and are widely being investigated for tumor-targeted drug delivery. We explored whether the natural tropism of CPV to TfRs could be harnessed for targeting tumor cells. Towards this goal, CPV virus-like particles (VLPs) produced by expression of the CPV-VP2 capsid protein in a baculovirus expression system were examined for attachment of small molecules and delivery to tumor cells. Structural modeling suggested that six lysines per VP2 subunit are presumably addressable for bioconjugation on the CPV capsid exterior. Between 45 and 100 of the possible 360 lysines/particle could be routinely derivatized with dye molecules depending on the conjugation conditions. Dye conjugation also demonstrated that the CPV-VLPs could withstand conditions for chemical modification on lysines. Attachment of fluorescent dyes neither impaired binding to the TfRs nor affected internalization of the 26 nm-sized VLPs into several human tumor cell lines. CPV-VLPs therefore exhibit highly favorable characteristics for development as a novel nanomaterial for tumor targeting.
Insights
Canine parvovirus (CPV) virus-like particles (VLPs) naturally target tumor cells via transferrin receptors (TfRs). These CPV VLPs can be modified with dyes without losing tumor-targeting ability, showing potential for cancer nanotherapeutics.
Area of Science:
- Nanotechnology
- Virology
- Oncology
Background:
- Targeting tumor cells is crucial for effective cancer nanotherapeutics.
- Viruses can serve as nano-containers, but often require surface modification for tumor specificity.
- Canine parvovirus (CPV) naturally binds to transferrin receptors (TfRs), which are overexpressed on many tumor cells.
Purpose of the Study:
- To investigate if the natural tropism of CPV to TfRs can be utilized for tumor cell targeting.
- To evaluate the feasibility of modifying CPV virus-like particles (VLPs) for drug delivery applications.
Main Methods:
- CPV VLPs were produced using a baculovirus expression system.
- Structural modeling identified lysine residues on the CPV capsid for potential bioconjugation.
- CPV VLPs were chemically modified with fluorescent dyes to assess attachment and retention of TfR binding and cellular uptake.
Main Results:
- Between 45 and 100 lysine residues per particle were successfully derivatized with dye molecules.
- Chemical modification did not impair CPV VLP binding to TfRs or internalization into human tumor cell lines.
- The 26 nm-sized CPV VLPs demonstrated stability under chemical modification conditions.
Conclusions:
- CPV VLPs possess inherent tumor-targeting capabilities due to their natural affinity for TfRs.
- CPV VLPs can be chemically modified, retaining their targeting and internalization functions.
- CPV VLPs show promise as a novel nanomaterial for targeted cancer therapy.

