Nanodiamond-DGEA peptide conjugates for enhanced delivery of doxorubicin to prostate cancer

Amanee D Salaam, Patrick Hwang, Roberus McIntosh, Hadiyah N Green, Ho-Wook Jun and Derrick Dean
Beilstein J. Nanotechnol. 2014, 5, 937–945. https://doi.org/10.3762/bjnano.5.107

Cite the Following Article

Nanodiamond-DGEA peptide conjugates for enhanced delivery of doxorubicin to prostate cancer
Amanee D Salaam, Patrick Hwang, Roberus McIntosh, Hadiyah N Green, Ho-Wook Jun and Derrick Dean
Beilstein J. Nanotechnol. 2014, 5, 937–945. https://doi.org/10.3762/bjnano.5.107

How to Cite

Salaam, A. D.; Hwang, P.; McIntosh, R.; Green, H. N.; Jun, H.-W.; Dean, D. Beilstein J. Nanotechnol. 2014, 5, 937–945. doi:10.3762/bjnano.5.107

Download Citation

Citation data can be downloaded as file using the "Download" button or used for copy/paste from the text window below.
Citation data in RIS format can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Zotero.

Citations to This Article

Up to 20 of the most recent references are displayed here.

Scholarly Works

  • Pan, F.; Khan, M.; Ragab, A. H.; Javed, E.; Alsalmah, H. A.; Khan, I.; Lei, T.; Hussain, A.; Mohamed, A.; Zada, A.; Ansari, M. Z. Recent advances in the structure and biomedical applications of nanodiamonds and their future perspectives. Materials & Design 2023, 233, 112179. doi:10.1016/j.matdes.2023.112179
  • Fattahi, N.; Ramazani, A. Nanodiamonds as Next Generation Carriers in Exploring Therapeutic Benefits. Carbon Nanostructures in Biomedical Applications; Springer International Publishing, 2023; pp 27–66. doi:10.1007/978-3-031-28263-8_2
  • Li, Y.; Zhu, X.; Zhang, H.; Lu, Y.; Zeng, T.; Liu, H.; Li, T.; Wang, J.; Tang, L. Nanodiamond in cancer theranostics. Nano TransMed 2023, 2, e9130019. doi:10.26599/ntm.2023.9130019
  • Thakur, A. Nano therapeutic approaches to combat progression of metastatic prostate cancer. Advances in Cancer Biology - Metastasis 2021, 2, 100009. doi:10.1016/j.adcanc.2021.100009
  • Wang, L.; Su, W.; Ahmad, K. Z.; Wang, X.; Zhang, T.; Yu, Y.; Chow, E. K.-H.; Ho, D.; Ding, X. Safety evaluation of nanodiamond-doxorubicin complexes in a Naïve Beagle canine model using hematologic, histological, and urine analysis. Nano Research 2021, 1–11.
  • Wang, L.; Su, W.; Ahmad, K. Z.; Wang, X.; Zhang, T.; Yu, Y.; Chow, E. K.-H.; Ho, D.; Ding, X. Safety evaluation of nanodiamond-doxorubicin complexes in a Naïve Beagle canine model using hematologic, histological, and urine analysis. Nano Research 2021, 15, 3356–3366. doi:10.1007/s12274-021-3867-0
  • Zhou, B.; Li, M.; Xu, X.; Yang, L.; Ye, M.; Chen, Y.; Peng, J.; Xiao, L.; Wang, L.; Huang, S.; Zhang, L.; Lin, Q.; Zhang, Z. Integrin α 2 β 1 Targeting DGEA-Modified Liposomal Doxorubicin Enhances Antitumor Efficacy against Breast Cancer. Molecular pharmaceutics 2021, 18, 2634–2646. doi:10.1021/acs.molpharmaceut.1c00132
  • Huang, C.-W.; Chuang, C.-P.; Chen, Y.-J.; Wang, H.-Y.; Lin, J.-J.; Huang, C.-Y.; Wei, K.-C.; Huang, F.-T. Integrin α2β1-targeting ferritin nanocarrier traverses the blood-brain barrier for effective glioma chemotherapy. Journal of nanobiotechnology 2021, 19, 180. doi:10.1186/s12951-021-00925-1
  • Garg, A.; Garg, S.; Swarnakar, N. K. Nanoparticles and prostate cancer. Nano Drug Delivery Strategies for the Treatment of Cancers; Elsevier, 2021; pp 275–318. doi:10.1016/b978-0-12-819793-6.00012-6
  • Lee, H.; Lee, J. S.; Moor, K. J.; Kim, H. I.; Kim, S.-R.; Gim, G.; Lee, J.; Kim, H.-H.; Fahmy, T. M.; Kim, J.-H.; Lee, C. H. Hand-ground fullerene-nanodiamond composite for photosensitized water treatment and photodynamic cancer therapy. Journal of colloid and interface science 2020, 587, 101–109. doi:10.1016/j.jcis.2020.12.020
  • Pahang, F.; Parvin, P.; Bavali, A. Fluorescence quenching effects of carbon nano-structures (Graphene Oxide and Nano Diamond) coupled with Methylene Blue. Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy 2019, 229, 117888. doi:10.1016/j.saa.2019.117888
  • Locharoenrat, K. Efficacy of nanodiamond-doxorubicin complexes on human breast adenocarcinoma cell lines. Artificial cells, nanomedicine, and biotechnology 2019, 47, 4053–4058. doi:10.1080/21691401.2019.1677681
  • Panda, P. K.; Saraf, S.; Tiwari, A.; Verma, A.; Raikwar, S.; Jain, A.; Jain, S. Novel Strategies for Targeting Prostate Cancer. Current drug delivery 2019, 16, 712–727. doi:10.2174/1567201816666190821143805
  • You, Y.; Xing, R.; Zou, Q.; Shi, F.; Yan, X. High-tolerance crystalline hydrogels formed from self-assembling cyclic dipeptide. Beilstein journal of nanotechnology 2019, 10, 1894–1901. doi:10.3762/bjnano.10.184
  • Inzhevatkin, E.; Baron, A. V.; Maksimov, N. G.; Volkova, M.; Puzyr, A. P.; Ronzhin, N. O.; Bondar, V. S. Biodistribution of nanodiamonds in the body of mice using EPR spectrometry. IET Science, Measurement & Technology 2019, 13, 984–988. doi:10.1049/iet-smt.2018.5594
  • Panwar, N.; Soehartono, A. M.; Chan, K. K.; Zeng, S.; Xu, G.; Qu, J.; Coquet, P.; Yong, K.-T.; Chen, X. Nanocarbons for Biology and Medicine: Sensing, Imaging, and Drug Delivery. Chemical reviews 2019, 119, 9559–9656. doi:10.1021/acs.chemrev.9b00099
  • Pairoj, S.; Damrongsak, P.; Damrongsak, B.; Jinawath, N.; Kaewkhaw, R.; Leelawattananon, T.; Ruttanasirawit, C.; Locharoenrat, K. Antiradical properties of chemo drug, carboplatin, in cooperation with ZnO nanoparticles under UV irradiation in putative model of cancer cells. Biocybernetics and Biomedical Engineering 2019, 39, 893–901. doi:10.1016/j.bbe.2019.08.004
  • Lai, H.; Stenzel, M. H.; Xiao, P. Surface engineering and applications of nanodiamonds in cancer treatment and imaging. International Materials Reviews 2019, 65, 189–225. doi:10.1080/09506608.2019.1622202
  • Hu, H.; Masarapu, H.; Gu, Y.; Zhang, Y.; Yu, X.; Steinmetz, N. F. Physalis Mottle Virus-like Nanoparticles for Targeted Cancer Imaging. ACS applied materials & interfaces 2019, 11, 18213–18223. doi:10.1021/acsami.9b03956
  • Prabhakar, N.; Rosenholm, J. M. Nanodiamonds for advanced optical bioimaging and beyond. Current Opinion in Colloid & Interface Science 2019, 39, 220–231. doi:10.1016/j.cocis.2019.02.014
Other Beilstein-Institut Open Science Activities