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2020

Journal Article

Investigation of the therapeutic potential of a synergistic delivery system through dual controlled release of camptothecin-doxorubicin

Zhao, Yongmei, Fletcher, Nicholas L., Gemmell, Anna, Houston, Zachary H., Howard, Christopher B., Blakey, Idriss, Liu, Tianqing and Thurecht, Kristofer J. (2020). Investigation of the therapeutic potential of a synergistic delivery system through dual controlled release of camptothecin-doxorubicin. Advanced Therapeutics, 3 (6) 1900202, 1900202. doi: 10.1002/adtp.201900202

Investigation of the therapeutic potential of a synergistic delivery system through dual controlled release of camptothecin-doxorubicin

2020

Journal Article

Oral delivery of multicompartment nanomedicines for colorectal cancer therapeutics: combining loco-regional delivery with cell-target specificity

Akhter, Dewan T., Simpson, Joshua D., Fletcher, Nicholas L., Houston, Zachary H., Fuchs, Adrian V., Bell, Craig A. and Thurecht, Kristofer J. (2020). Oral delivery of multicompartment nanomedicines for colorectal cancer therapeutics: combining loco-regional delivery with cell-target specificity. Advanced Therapeutics, 3 (2) 1900171, 1-13. doi: 10.1002/adtp.201900171

Oral delivery of multicompartment nanomedicines for colorectal cancer therapeutics: combining loco-regional delivery with cell-target specificity

2020

Journal Article

Targeted and modular architectural polymers employing bioorthogonal chemistry for quantitative therapeutic delivery

Ediriweera, Gayathri R., Simpson, Joshua D., Fuchs, Adrian V., Venkatachalam, Taracad K., Van De Walle, Matthias, Howard, Christopher B., Mahler, Stephen M., Blinco, James P., Fletcher, Nicholas L., Houston, Zachary H., Bell, Craig A. and Thurecht, Kristofer J. (2020). Targeted and modular architectural polymers employing bioorthogonal chemistry for quantitative therapeutic delivery. Chemical Science, 11 (12), 3268-3280. doi: 10.1039/d0sc00078g

Targeted and modular architectural polymers employing bioorthogonal chemistry for quantitative therapeutic delivery

2020

Journal Article

Targeted beta therapy of prostate cancer with 177Lu-labelled Miltuximab® antibody against glypican-1 (GPC-1)

Yeh, Mei-Chun, Tse, Brian W. C., Fletcher, Nicholas L., Houston, Zachary H., Lund, Maria, Volpert, Marianna, Stewart, Chelsea, Sokolowski, Kamil A., Jeet, Varinder, Thurecht, Kristofer J., Campbell, Douglas H., Walsh, Bradley J., Nelson, Colleen C. and Russell, Pamela J. (2020). Targeted beta therapy of prostate cancer with 177Lu-labelled Miltuximab® antibody against glypican-1 (GPC-1). EJNMMI Research, 10 (1) 46, 46. doi: 10.1186/s13550-020-00637-x

Targeted beta therapy of prostate cancer with 177Lu-labelled Miltuximab® antibody against glypican-1 (GPC-1)

2019

Journal Article

Poly(2-oxazoline) macromonomers as building blocks for functional and biocompatible polymer architectures

Pizzi, David, Humphries, James, Morrow, Joshua P., Fletcher, Nicholas L., Bell, Craig A., Thurecht, Kristofer J. and Kempe, Kristian (2019). Poly(2-oxazoline) macromonomers as building blocks for functional and biocompatible polymer architectures. European Polymer Journal, 121 109258, 1-17. doi: 10.1016/j.eurpolymj.2019.109258

Poly(2-oxazoline) macromonomers as building blocks for functional and biocompatible polymer architectures

2019

Journal Article

Polymer design and component selection contribute to uptake, distribution & trafficking behaviours of polyethylene glycol hyperbranched polymers in live MDA-MB-468 breast cancer cells

Simpson, Joshua D., Ediriweera, Gayathri R., Howard, Christopher B., Fletcher, Nicholas L., Bell, Craig A. and Thurecht, Kristofer J. (2019). Polymer design and component selection contribute to uptake, distribution & trafficking behaviours of polyethylene glycol hyperbranched polymers in live MDA-MB-468 breast cancer cells. Biomaterials Science, 7 (11), 4661-4674. doi: 10.1039/c9bm00957d

Polymer design and component selection contribute to uptake, distribution & trafficking behaviours of polyethylene glycol hyperbranched polymers in live MDA-MB-468 breast cancer cells

2019

Journal Article

Modulating targeting of poly(ethylene glycol) particles to tumor cells using bispecific antibodies

Cui, Jiwei, Ju, Yi, Houston, Zachary H., Glass, Joshua J., Fletcher, Nicholas L., Alcantara, Sheilajen, Dai, Qiong, Howard, Christopher B., Mahler, Stephen M., Wheatley, Adam K., De Rose, Robert, Brannon, Paul T., Paterson, Brett M., Donnelly, Paul S., Thurecht, Kristofer J., Caruso, Frank and Kent, Stephen J. (2019). Modulating targeting of poly(ethylene glycol) particles to tumor cells using bispecific antibodies. Advanced Healthcare Materials, 8 (9) 1801607, e1801607. doi: 10.1002/adhm.201801607

Modulating targeting of poly(ethylene glycol) particles to tumor cells using bispecific antibodies

2019

Journal Article

Ultrasound-responsive nanobubbles for enhanced intravitreal drug migration: An ex vivo evaluation

Thakur, Sachin S., Chen, Ying-Shan, Houston, Zachary H., Fletcher, Nicholas, Barnett, Nigel L., Thurecht, Kristofer J., Rupenthal, Ilva D. and Parekh, Harendra S. (2019). Ultrasound-responsive nanobubbles for enhanced intravitreal drug migration: An ex vivo evaluation. European Journal of Pharmaceutics and Biopharmaceutics, 136, 102-107. doi: 10.1016/j.ejpb.2019.01.014

Ultrasound-responsive nanobubbles for enhanced intravitreal drug migration: An ex vivo evaluation

2019

Journal Article

Bacillus anthracis Protective Antigen Shows High Specificity for a UV Induced Mouse Model of Cutaneous Squamous Cell Carcinoma

Crawford, Theo, Fletcher, Nicholas, Veitch, Margaret, Gonzalez Cruz, Jazmina L., Pett, Nicola, Brereton, Ian, Wells, James W., Mobli, Mehdi and Tesiram, Yasvir (2019). Bacillus anthracis Protective Antigen Shows High Specificity for a UV Induced Mouse Model of Cutaneous Squamous Cell Carcinoma. Frontiers in Medicine, 6 (FEB) 22, 22. doi: 10.3389/fmed.2019.00022

Bacillus anthracis Protective Antigen Shows High Specificity for a UV Induced Mouse Model of Cutaneous Squamous Cell Carcinoma

2019

Journal Article

Importance of polymer length in fructose-based polymeric micelles for an enhanced biological activity

Lu, Mingxia, Chen, Fan, Cao, Cheng, Garvey, Christopher J., Fletcher, Nicholas L., Houston, Zachary H., Lu, Hongxu, Lord, Megan S., Thurecht, Kristofer J. and Stenzel, Martina H. (2019). Importance of polymer length in fructose-based polymeric micelles for an enhanced biological activity. Macromolecules, 52 (2) acs.macromol.8b02381, 477-486. doi: 10.1021/acs.macromol.8b02381

Importance of polymer length in fructose-based polymeric micelles for an enhanced biological activity

2018

Journal Article

RNA interference to enhance radiation therapy: targeting the DNA damage response

Ratnayake, G., Bain, A. L., Fletcher, N., Howard, C. B., Khanna, K. K. and Thurecht, K. J. (2018). RNA interference to enhance radiation therapy: targeting the DNA damage response. Cancer Letters, 439, 14-23. doi: 10.1016/j.canlet.2018.09.011

RNA interference to enhance radiation therapy: targeting the DNA damage response

2018

Journal Article

Influence of Charge on Hemocompatibility and Immunoreactivity of Polymeric Nanoparticles

Chen, Liyu, Glass, Joshua J., De Rose, Robert, Sperling, Claudia, Kent, Stephen J., Houston, Zachary H., Fletcher, Nicholas L., Rolfe, Barbara E. and Thurecht, Kristofer J. (2018). Influence of Charge on Hemocompatibility and Immunoreactivity of Polymeric Nanoparticles. ACS Applied Bio Materials, 1 (3) acsabm.8b00220, 756-767. doi: 10.1021/acsabm.8b00220

Influence of Charge on Hemocompatibility and Immunoreactivity of Polymeric Nanoparticles

2018

Journal Article

In vivo therapeutic evaluation of polymeric nanomedicines: effect of different targeting peptides on therapeutic efficacy against breast cancer

Zhao, Yongmei, Fletcher, Nicholas L., Liu, Tianqing, Gemmell, Anna C., Houston, Zachary H., Blakey, Idriss and Thurecht, Kristofer J. (2018). In vivo therapeutic evaluation of polymeric nanomedicines: effect of different targeting peptides on therapeutic efficacy against breast cancer. Nanotheranostics, 2 (4), 360-370. doi: 10.7150/ntno.27142

In vivo therapeutic evaluation of polymeric nanomedicines: effect of different targeting peptides on therapeutic efficacy against breast cancer

2018

Journal Article

Confinement of therapeutic enzymes in selectively permeable polymer vesicles by Polymerization-Induced Self-Assembly (PISA) reduces antibody binding and proteolytic susceptibility

Blackman, Lewis D., Varlas, Spyridon, Arno, Maria C., Houston, Zachary H., Fletcher, Nicholas L., Thurecht, Kristofer J., Hasan, Muhammad, Gibson, Matthew I. and O’Reilly, Rachel K. (2018). Confinement of therapeutic enzymes in selectively permeable polymer vesicles by Polymerization-Induced Self-Assembly (PISA) reduces antibody binding and proteolytic susceptibility. ACS Central Science, 4 (6), 718-723. doi: 10.1021/acscentsci.8b00168

Confinement of therapeutic enzymes in selectively permeable polymer vesicles by Polymerization-Induced Self-Assembly (PISA) reduces antibody binding and proteolytic susceptibility

2018

Journal Article

Modified organosilica core-shell nanoparticles for stable pH sensing in biological solutions

Robinson, Kye J., Huynh, Gabriel T., Kouskousis, Betty P., Fletcher, Nicholas L., Houston, Zachary H., Thurecht, Kristofer J. and Corrie, Simon R. (2018). Modified organosilica core-shell nanoparticles for stable pH sensing in biological solutions. ACS Sensors, 3 (5), 967-975. doi: 10.1021/acssensors.8b00034

Modified organosilica core-shell nanoparticles for stable pH sensing in biological solutions

2018

Journal Article

Designed multifunctional polymeric nanomedicines: long-term biodistribution and tumour accumulation of aptamer-targeted nanomaterials

Fletcher, N. L., Houston, Z. H., Simpson, J. D., Veedu, R. N. and Thurecht, K. J. (2018). Designed multifunctional polymeric nanomedicines: long-term biodistribution and tumour accumulation of aptamer-targeted nanomaterials. Chemical Communications, 54 (82), 11538-11541. doi: 10.1039/c8cc05831h

Designed multifunctional polymeric nanomedicines: long-term biodistribution and tumour accumulation of aptamer-targeted nanomaterials

2018

Journal Article

Polynitroxide copolymers to reduce biofilm fouling on surfaces

Boase, Nathan R. B., Torres, Marcelo D. T., Fletcher, Nicholas L., de la Fuente-Nunez, Cesar and Fairfull-Smith, Kathryn E. (2018). Polynitroxide copolymers to reduce biofilm fouling on surfaces. Polymer Chemistry, 9 (43), 5308-5318. doi: 10.1039/c8py01101j

Polynitroxide copolymers to reduce biofilm fouling on surfaces

2017

Journal Article

Gold Nanocluster-Mediated Cellular Death under Electromagnetic Radiation

Cifuentes-Rius, Anna, Ivask, Angela, Das, Shreya, Penya-Auladell, Nuria, Fabregas, Laura, Fletcher, Nicholas L., Houston, Zachary H., Thurecht, Kristofer J. and Voelcker, Nicolas H. (2017). Gold Nanocluster-Mediated Cellular Death under Electromagnetic Radiation. Acs Applied Materials & Interfaces, 9 (47), 41159-41167. doi: 10.1021/acsami.7b13100

Gold Nanocluster-Mediated Cellular Death under Electromagnetic Radiation

2017

Journal Article

Localised delivery of doxorubicin to prostate cancer cells through a PSMA-targeted hyperbranched polymer theranostic

Pearce, Amanda K., Simpson, Joshua D., Fletcher, Nicholas L., Houston, Zachary H., Fuchs, Adrian V., Russell, Pamela J., Whittaker, Andrew K. and Thurecht, Kristofer J. (2017). Localised delivery of doxorubicin to prostate cancer cells through a PSMA-targeted hyperbranched polymer theranostic. Biomaterials, 141, 330-339. doi: 10.1016/j.biomaterials.2017.07.004

Localised delivery of doxorubicin to prostate cancer cells through a PSMA-targeted hyperbranched polymer theranostic

2017

Journal Article

Using peptide aptamer targeted polymers as a model nanomedicine for investigating drug distribution in cancer nanotheranostics

Zhao, Yongmei, Houston, Zachary H., Simpson, Joshua D., Chen, Liyu, Fletcher, Nicholas L., Fuchs, Adrian V., Blakey, Idriss and Thurecht, Kristofer J. (2017). Using peptide aptamer targeted polymers as a model nanomedicine for investigating drug distribution in cancer nanotheranostics. Molecular Pharmaceutics, 14 (10), 3539-3549. doi: 10.1021/acs.molpharmaceut.7b00560

Using peptide aptamer targeted polymers as a model nanomedicine for investigating drug distribution in cancer nanotheranostics