throbber
CURRICULUM VITAE
`MANSOOR M. AMIJI, PhD, RPh
`
`
`
`CONTACT INFORMATION
`Campus Address:
`Northeastern University
`360 Huntington Avenue
`140 The Fenway Building, Room 156
`Boston, Massachusetts 02115
`
`Office #: (617) 373-3137
`Fax #: (617) 373-8886
`E-mail: m.amiji@northeastern.edu
`Personal Website: http://www.northeastern.edu/amijilab
`LinkedIn: https://www.linkedin.com/in/mansoor-amiji-46109629/
`ResearchGate: https://www.researchgate.net/profile/Mansoor-Amiji
`Google Scholar: https://scholar.google.com/citations?user=0BKYPYMAAAAJ&hl=en
`
`Residential Address:
`195 Richie Road
`Attleboro, Massachusetts 02703
`Residence #: (508) 222-3034
`Mobile #: (617) 839-9679
`
`
`
`EDUCATION AND TRAINING
`
`September, 1984 - June, 1988: Undergraduate Student in the College of Pharmacy and Allied Health Professions,
`Northeastern University, Boston, MA.
`
`September, 1986 - May, 1988: Undergraduate Honors Student Research Project Entitled “Preparation and
`Characterization of Doxorubicin-Dextran Conjugates” – Major Advisor: Professor Mehdi Boroujerdi.
`
`June, 1988: Bachelor of Science Degree in Pharmacy (magna cum laude).
`
`July, 1988: Registered Pharmacist – Licensed to practice in Massachusetts (license # 20415)
`
`August, 1988 - July, 1992: Doctoral Student in the Department of Industrial and Physical Pharmacy, College of
`Pharmacy, Purdue University, West Lafayette, Indiana.
`
`August, 1988 - June, 1989: Teaching Assistant in the Department of Industrial and Physical Pharmacy.
`
`July, 1989 - June, 1992: Research Assistant in the Department of Industrial and Physical Pharmacy.
`
`July, 1989 - June, 1992: Doctoral Dissertation Research Entitled “Surface Modification of Biomaterials with Water-
`Soluble Polymers: A Steric Repulsion Approach” - Major Advisor: Professor Kinam Park.
`
`July, 1992: Doctor of Philosophy Degree in Pharmaceutics and Pharmaceutical Sciences.
`
`PROFESSIONAL AND ACADEMIC POSITIONS
`
`August, 1992 – December, 1992: Senior Research Scientist, Columbia Research Laboratories, Madison, WI.
`
`January, 1993 – June, 1999: Assistant Professor, Department of Pharmaceutical Sciences, School of Pharmacy,
`Northeastern University, Bouve College of Health Sciences, Boston, MA.
`
`SAB1020
`U.S. Pat. No. 10,945,970
`
`

`

`
`July, 1999 – April, 2006: Associate Professor (with tenure), Department of Pharmaceutical Sciences, School of
`Pharmacy, Bouve College of Health Sciences, Northeastern University, Boston, MA.
`
`
`June, 2000 – December, 2000: Visiting Research Scholar. Department of Chemical Engineering, Massachusetts
`Institute of Technology, Cambridge, MA. (Sabbatical leave appointment in Institute Professor Robert Langer’s
`group).
`
`
`May, 2006 – Present: Full Professor (primary), Department of Pharmaceutical Sciences, School of Pharmacy, Bouve
`College of Health Sciences, Northeastern University, Boston, MA.
`
`
`February, 2010 – April, 2016: Bouve College Distinguished Professor, Department of Pharmaceutical Sciences, School
`of Pharmacy, Bouve College of Health Sciences, Northeastern University, Boston, MA.
`
`
`September, 2012 – July, 2018: Affiliate Faculty Member, Department of Chemical Engineering, College of Engineering,
`Northeastern University, Boston, MA.
`
`
`September, 2013 – Present: Affiliate Faculty Member, Department of Biomedical Engineering, College of Engineering,
`Northeastern University, Boston, MA.
`
`
`January, 2014 – September, 2017: Distinguished Adjunct Professor, Faculty of Pharmacy, King Abdulaziz University,
`Jeddah, Saudi Arabia.
`
`
`April, 2016 – Present: University Distinguished Professor, Department of Pharmaceutical Sciences, School of
`Pharmacy, Bouve College of Health Sciences, Northeastern University, Boston, MA.
`
`
`March, 2017 – August, 2018: Distinguished Adjunct Professor, Institute for Research and Medical Consultation (IRMC),
`Imam Abdulrahman bin Faisal University, Dammam, Saudi Arabia.
`
`
`August 2018 – Present: Professor (secondary). Department of Chemical Engineering, College of Engineering,
`Northeastern University, Boston, MA.
`
`
`ADMINISTRATIVE AND LEADERSHIP POSITIONS
`
`July, 1995 – June 2000: Pharmaceutics Group Leader, Department of Pharmaceutical Sciences, School of Pharmacy,
`Bouve College of Health Sciences, Northeastern University, Boston, MA.
`
`
`September, 2002 – June, 2004: Education and Outreach Coordinator, Molecular Biotechnology Initiative at Northeastern
`University, Boston, MA.
`
`
`July, 2002 – Present: Director, Laboratory of Biomaterials and Advanced Nano-Delivery Systems (BANDS) at
`Northeastern University, Boston, MA
`
`
`July, 2003 – December, 2016: Co-Director, Nanomedicine Education and Research Consortium (NERC) at
`Northeastern University, Boston, MA.
`
`
`July, 2005 – December, 2008: Associate Chairman, Department of Pharmaceutical Sciences, School of Pharmacy,
`Bouve College of Health Sciences, Northeastern University, Boston, MA.
`
`
`January, 2009 – January, 2010: Interim Chairman, Department of Pharmaceutical Sciences, School of Pharmacy.
`Bouve College of Health Sciences, Northeastern University, Boston, MA.
`
`2
`
`

`

`
`February, 2010 – April, 2016: Chairman, Department of Pharmaceutical Sciences, School of Pharmacy, Bouve College
`of Health Sciences, Northeastern University, Boston, MA.
`
`
`
`
`RESEARCH INTERESTS
`
`The primary focus of research in my laboratory is on the development of biocompatible materials from natural and synthetic
`polymers, target-specific drug and gene delivery systems for cancer and infectious diseases, and nanotechnology
`applications for medical diagnosis, imaging, and therapy. Specific projects that we are currently pursuing include:
`
`
` Preparation and characterization of polymeric membranes and microcapsules with controlled permeability
`properties for medical and pharmaceutical applications.
` Role of hypoxia and mitochondrial dysfunction in the tumor microenvironment in development of therapeutic
`resistance, angiogenesis, and metastasis.
`Intracellular and sub-cellular delivery systems for drugs and genes using target-specific, long-circulating,
`biodegradable polymeric nanoparticles.
` Localized delivery of cytotoxic and anti-angiogenic drugs, siRNA, and genes for solid tumors in novel biodegradable
`polymeric nanoparticles.
` Local administration of drugs and nucleic acid-containing nanovectors immobilized on stents for the treatment of
`arterial diseases (e.g., coronary restenosis).
` Target-specific drug, gene, and vaccine delivery systems for diseases of the gastro-intestinal tract.
` Systemic and local delivery of DNA, mRNA, siRNA, microRNA, and CRISPR-Cas9 constructs for genetic
`engineering and therapeutic applications.
` Novel oil-in-water nanoemulsion formulations for drug delivery through the gastrointestinal tract and across the
`blood-brain barrier.
` Systemic and mucosal vaccination using novel immune-modulatory strategies and delivery systems.
`Intranasal and trans-nasal administration of biodegradable formulations, including sustained release implants, to
`
`enhance brain delivery of small molecules, peptides, proteins, siRNA, mRNA, and genes for treatment of chronic
`neurodegenerative diseases and brain tumors.
` Functionalized inorganic nanoparticles - including gold, silver, iron oxide, metal alloys, and core-shell nanostructures
`- for biosensing, imaging, and targeted therapeutic applications.
`
`
`
`
`PUBLICATIONS [Google Scholar Hirsch “h” index = 95] – Clarivate Analytics/Web of Science
`Highly Cited Researcher (Top 1%) in Pharmacology & Toxicology in 2014 & 2018
`Book Editorship
`
`
`
`Amiji, M.M. and Sandmann, B.J. (eds.). Applied Physical Pharmacy. Published by McGraw-Hill Medical
`Publishing Division. New York, NY. 2002.
`
`
`Amiji, M.M. (ed.) Polymeric Gene Delivery: Principles and Applications. Published by CRC Press, LLC (a
`subsidiary of Taylor and Francis). Boca Raton, FL. 2004.
`
`
`Amiji, M.M. (ed.). Nanotechnology for Cancer Therapy. Published by CRC Press, LLC (a subsidiary of Taylor
`and Francis). Boca Raton, FL. 2007.
`
`3
`
`

`

`
`Torchilin, V.P. and Amiji, M.M. (eds.). Handbook of Materials for Nanomedicine. Publication of the Biomedical
`Nanotechnology Series, (10 Volumes Book Series edited by Torchilin, V.P. and Amiji, M.M.). Volume 1,
`Pan Published by Stanford Publishing, Singapore, 2010.
`
`
`
`
` Amiji, M.M., Cook, T., and Mobley, W.C. (eds.). Applied Physical Pharmacy – Second Edition. Published by
`McGraw-Hill Medical Publishing Division. New York, NY, 2014.
`
`
` Merkel, O.M. and Amiji, M.M. (eds). Advances and Challenges in the Delivery of Nucleic Acid Therapeutics
`– Volumes 1. E-Books Published by Future Science, LTD, London, UK. 2015.
`https://www.futuremedicine.com/doi/book/10.4155/9781910419922.
`
`
` Merkel, O.M. and Amiji, M.M. (eds). Advances and Challenges in the Delivery of Nucleic Acid Therapeutics
`– Volumes 2. E-Books Published by Future Science, LTD, London, UK. 2015.
`https://www.futuremedicine.com/doi/book/10.4155/9781910419953.
`
`
` Milane, L.S. and Amiji, M.M. (eds). Nanomedicine for Inflammatory Diseases. Published by CRC Press, LLC
`(a subsidiary of Taylor and Francis). Boca Raton, FL. 2017.
`
`
`Singh, A and Amiji, M.M. (eds). Stimuli-Responsive Drug Delivery Systems. Royal Society of Chemistry
`Biomaterial Series Publication. Royal Society of Chemistry, London, UK. 2018
`
`
` Amiji, M.M. and Ramesh, R. (eds). Diagnostic and Therapeutic Applications of Exosomes in Cancer. Elsevier
`Publishing Company. San Diego, CA. 2018.
`
`
`Mobley, W.C., Amiji, M.M., and Cook, T., (eds.). Applied Physical Pharmacy – Third Edition. Published by
`McGraw-Hill Medical Publishing Division. New York, NY, 2019.
`
`
`Amiji, M.M. and Milane, L.S. (eds). Cancer Immunology and Immunotherapy. Volume 1 in Delivery Strategies
`and Engineering Technologies in Cancer Immunotherapy Series. Academic Press/Elsevier Publishing
`Company. Oxford, The United Kingdom, 2021.
`
`
`Amiji, M.M. and Milane, L.S. (eds). Systemic Drug Delivery Strategies. Volume 2 in Delivery Strategies and
`Engineering Technologies in Cancer Immunotherapy Series. Academic Press/Elsevier Publishing
`Company. Oxford, The United Kingdom, 2021.
`
`
`Amiji, M.M. and Milane, L.S. (eds). Engineering Technologies and Clinical Transition. Volume 3 in Delivery
`Strategies and Engineering Technologies in Cancer Immunotherapy Series. Academic Press/Elsevier
`Publishing Company. Oxford, The United Kingdom, 2021.
`
`
`Milane, L.S. and Amiji, M.M. (eds). Organelle and Molecular Targeting. CRS Press/Taylor & Francis, Boca
`Raton, FL (In press).
`
`
`Book Chapters
`
`Amiji, M. and Park, K. Surface modification of polymeric biomaterials with poly(ethylene oxide): a steric repulsion approach.
`In Shalaby, S.W., Ikada, Y., Langer, R., and Williams, J. (eds.) Polymers of Biological and Biomedical Significance.
`American Chemical Society Symposium Series Publication, Volume 540. Published by the American Chemical Society,
`Washington, DC. 1994, pp 135-146.
`
`
`
`4
`
`

`

`
` Amiji, M. and Park, K. Surface modification of polymeric biomaterials with poly(ethylene oxide), albumin, and heparin for
`reduced thrombogenicity. In Cooper, S.L., Bamford, C.H., and Tsuruta, T. (eds.) Polymer Biomaterials: In Solution, as
`Interfaces, and as Solids. Published by VSP, The Netherlands. 1995, pp 535-552.
`
`
`Amiji, M., Kamath, K., and Park, K. Albumin-modified biomaterial surfaces for reduced thrombogenicity. In Wise, D.L.,
`Altobelli, D.E., Grasser, J.D., Shwartz, E.R., Trantolo, D.J., and Yaszemski, M. (eds.) Encyclopedic Handbook of
`Biomaterials and Bioengineering - Part B Applications. Volume II. Published by Marcel Dekker, Inc., New York, NY.
`1995, pp 1057-1070.
`
`
`Amiji, M.M. Surface modification of chitosan to improve blood compatibility. In Pandalai, S.G. (eds.). Recent Research
`Developments in Polymer Science, Volume III. Published by Transworld Research Network, Trivandrum, India. 1999,
`pp 31-39.
`
`
`Hejazi, R. and Amiji, M. Chitosan-based delivery systems: physicochemical properties and pharmaceutical applications. In
`Dumitriu, S. (eds.). Polymeric Biomaterials. Second Edition, Revised and Expanded. Published by Marcel Dekker, Inc.,
`New York, NY. 2001, Chapter 10, pp 213-238.
`
`
`Kaul, G. and Amiji, M. Polymeric gene delivery systems. In. Wise, D.L., Hasirci, V., Lewandrowski, K.-U., Yaszemski, M.J.,
`Altobelli, D.W., and Trantolo, D.J. (eds.). Tissue Engineering and Novel Delivery Systems. Published by Marcel Dekker,
`Inc., New York, NY. 2004, Chapter 16, pp 333-367.
`
`
`Kommareddy, S. and Amiji, M. Targeted drug delivery to tumor cells using colloidal carriers. In Lu, D.R. and Oie, S. (eds.).
`Cellular Drug Delivery: Principles and Practice. Published by Humana Press, Inc., Totowa, NJ. 2004, Chapter 10, pp
`181-215.
`
`
`Kaul, G. and Amiji, M.M. Protein nanospheres for gene delivery. In Amiji, M.M. (ed.) Polymeric Gene Delivery: Principles
`and Applications. Published by CRC Press, LLC. Boca Raton, FL. 2004, Chapter 27, pp. 429-447.
`
`
`Kommareddy, S., Shenoy, D.B., and Amiji, M.M. Gelatin nanoparticles and their biofunctionalization. In Kumar, C. (ed.).
`Nanotechnologies for the Life Sciences, Volume 2: Biological and Pharmaceutical Nanomaterials. Published by Wiley-
`VCH, Berlin, Germany. 2005, Chapter 11, pp. 330-353.
`
`
`Bhavsar, M.D., Shenoy, D.B., and Amiji, M.M. Nanoparticles for delivery in the gastrointestinal tract. In Torchilin, V.P. (ed.).
`Nanoparticulates as Drug Carriers. Published by Imperial College Press, London, United Kingdom, 2006, Chapter 26,
`pp 609-648.
`
`
`Shenoy, D.B. and Amiji, M.M. An overview of condensing and non-condensing polymeric systems for gene delivery. In
`Friedmann, T. and Rossi, J (eds.). Gene Transfer: Delivery and Expression of DNA and RNA – A Laboratory Manual.
`Published by Cold Spring Harbor Laboratory Press, Cold Spring Harbor, NY. 2007, Chapter 34, pp 395-403.
`
`
`Kommareddy, S. and Amiji, M.M. Protein nanospheres for gene delivery: preparation and in vitro transfection studies with
`gelatin nanoparticles. In Friedmann, T. and Rossi, J. (ed.). Gene Transfer: Delivery and Expression of DNA and RNA
`– A Laboratory Manual. Published by Cold Spring Harbor Laboratory Press, Cold Spring Harbor, NY. 2007, Chapter
`52, pp 527-540.
`
`
`Kommareddy, S., Shenoy, D.B., and Amiji, M.M. Long-circulating polymeric nanocarriers for drug and gene delivery in
`cancer. In Amiji, M.M. (ed.). Nanotechnology for Cancer Therapy. Published by CRC Press, Boca Raton, FL. 2007,
`Chapter 13, pp 231-242.
`
`
`
`5
`
`

`

`
`Tiwari, S.B. and Amiji, M.M. Nanoemulsions for tumor targeted drug delivery. In Amiji, M.M. (ed.). Nanotechnology for
`Cancer Therapy. Published by CRC Press, Boca Raton, FL. 2007, Chapter 35, pp 723-739.
`
`
`Iftemia, N., Amiji, M.M., and Iftemia, I. Nanotechnology applications in cancer diagnosis and therapy. In Yih, T.C. and
`Talpasanu, I. (ed.). Micro and Nano Manipulations for Biomedical Applications. Published by Springer Publishing, New
`York, NY, 2008, Chapter 2, pp 13-41.
`
`
`Magadala, P., van Vlerken, L.E. Shahiwala, A., and Amiji, M.M. Multifunctional polymeric nanosystems for tumor-targeted
`delivery. In Torchilin, V.P. (ed.). Multifunctional Pharmaceutical Nanocarriers. Published by Springer Publishing, New
`York, NY 2008, Chapter 2, pp 33-64.
`
`
`Nagesha, D., Devalapally H.K., Sridhar, S., and Amiji, M. Multifunctional magnetic nanosystems for tumor imaging, targeted
`delivery, and thermal therapy. In Torchilin, V.P. (ed.). Multifunctional Pharmaceutical Nanocarriers. Published by
`Springer Publishing, New York, NY 2008, Chapter 14, pp 381-408.
`
`
`Bhavsar, M.B., Jain, S., and Amiji, M.M. Nanotechnology in oral drug delivery. In Xu, J. J. and Ekins, S. (eds.). Drug Efficacy,
`Safety, and Biologics Discovery: Emerging Technologies and Tools. Published by Wiley Publishing, New York, NY
`2009, Chapter 10, pp. 231-275.
`
`
`Brito, L., Chadwick, S., and Amiji, M.M. Gelatin-based gene delivery systems. In Morishita, M. and Park, K. (eds.). Biodrug
`Delivery Systems: Fundamentals, Applications, and Clinical Developments”. Published by Informa Healthcare Group,
`New York, NY 2009, Chapter 20, pp 323-341.
`
`
`Ganta, S., Iyer, A.K., and Amiji, M.M. Multifunctional stimuli-responsive nanoparticles for delivery of small and
`macromolecular therapeutics. In Mahato, R.I. and Narang, A.S. (eds.). Targeted Delivery of Small and Macromolecular
`Drugs. Published by CRC Press, Inc., Boca Raton, FL, 2010 Chapter 20, pp 555-586.
`
`
`Iyer, A.K., Ganta, S., and Amiji, M.M. Polymeric nanoparticles as target-specific delivery systems. In Torchilin, V.P. and
`Amiji, M.M. (eds.). Handbook of Materials for Nanomedicine: Volume 1. Published by Pan Stanford Publishing,
`Singapore, 2010, Chapter 2, pp 81-130.
`
`
`Matthäus, C., Chernenko, T., Miljković, M., Quintero, L., Miljkovic, M., Milane, L., Kale, A., Amiji, M., Torchilin, V., and Diem,
`M. Raman microspectral imaging of cells and intracellular drug delivery using nanocarrier systems. In Dieing, T., and
`Hollricher, O., and Toporski, J. (eds.). Confocal Raman Microscopy, Springer Series in Optical Science, Volume 158.
`Published by Springer Verlag, Heidelberg, Germany. 2010, pp. 137-163.
`
`
`Iftimia, N., Amiji, M., Milane, L., and Oldenburg, A. Nanotechnology approaches for contrast enhancement in optical imaging
`and disease targeted therapy. In Iftimia, N., Brugge, W., and Hammer, D.X (eds.). Advances in Optical Imaging for
`Clinical Medicine, Chapter 16. Published by Wiley Publishing, New York, NY. 2011. Chapter 16, pp 455-504.
`
`
`Shahiwala, A., Vyas, T.K., and Amiji, M.M. Nanotechnology for targeted delivery of drugs and genes. In Nalwa, H.S. (Ed.).
`Encyclopedia of Nanoscience and Nanotechnology, 2nd Edition, Published by American Scientific Publishers, New
`York, NY. 2011. Volume 19, pp 265-295.
`
`
`Kalariya, M., Ganta, S., Attarwala, H., and Amiji, M. Multifunctional lipid nano-systems for cancer prevention and therapy.
`In Souto, E. (ed.). Advanced Anticancer Approaches with Multifunctional Lipid Nanocarriers. Published by iSmithers
`Rapra Publishing, Inc., Billingham, UK. 2011. Chapter 3, pp 29-54.
`
`
`
`6
`
`

`

`
`Amiji, M.M. Hornicek, F., and Duan, Z.-F. Gene silencing with nanoparticle-encapsulated siRNA to overcome tumor
`multidrug resistance. In Srirajaskanthan, R. and Preedy, V.R. (eds.). Published by Nanomedicine and Cancer. Science
`Publishers-CRC Press, Enfield, NH. 2012. Chapter 15, pp 290-306.
`
`
`Jain, S. and Amiji, M. Macrophage-targeted nanoparticle delivery systems. In Pru’dhomme, R.K. and Svenson, S. (eds.).
`Multifunctional Nanoparticles for Drug Delivery Applications: Imaging, Targeting, and Delivery. Published by Springer
`Publishing, New York, NY. 2012 Chapter 4, pp 47-84.
`
`
`Jain, S. and Amiji, M. Target-specific chitosan-based nanoparticle systems for nucleic acid delivery. In Sarmento, B. and
`das Neves, J. (eds.) Chitosan-Based Systems for Biopharmaceuticals: Delivery, Targeting, and Polymer Therapeutics.
`Published by John Wiley & Sons Publishing, Chichester, West Sussex, UK. 2012 Chapter 15, pp 277-300.
`
`
`Singh, A., Chernenko, T., and Amiji. M. Theranostic applications of plasmonic nanosystems. In Hepel, M. and Zhong, C.J.
`(eds.). Functional Nanoparticles for Bioanalysis, Nanomedicine and Bioelectronic Devices. Volume 2. Published by
`American Chemical Society Publications, Washington, DC. 2012 Chapter 15, pp 383-413.
`
`
`Iyer, A., Ganesh, S., Zhou, Q.L., and Amiji, M. Multifunctional polymeric nano-systems for RNA interference therapy. In
`Wang., W. and Singh, M. (eds.) Biological Drug Products: Development and Strategies. Published by John Wiley
`Publishers, Nutley, NJ. 2013 Chapter 18, pp 569-600.
`
`
`Singh, A., Iyer, A., Ganta, S., and Amiji, M. Multifunctional nanosystems for cancer therapy. In Park, K. (ed.). Biomaterials
`for Cancer Therapeutics: Diagnosis, Prevention and Therapy. Published by Woodhead Publishing, Inc., Cambridge,
`UK. 2013 Chapter 14, pp 387-414.
`
`
`Chernenko, T., Milane, L., Matthäus, C., Diem, M., and Amiji, M. Raman microspectral imaging for label-free detection of
`nanoparticle-mediated cellular and sub-cellular drug delivery. In Li, C. and Tian, M. (eds.). Drug Delivery Applications
`of Non-Invasive Imaging: Validation from Biodistribution to Sites of Action. Published by John Wiley & Sons Publishing,
`Hoboken, NJ. 2013 Chapter 4, pp 70-90.
`
`
`Jain, S., and Amiji, M. Nanoparticles-in-microsphere oral systems (NiMOS) for nucleic acid therapy in the gastrointestinal
`tract. In Sarmento, B. and das Neves, J. (eds.) Mucosal Delivery of Biopharmaceuticals: Biology, Challenges and
`Strategies. Published by Springer Science Publishing, New York, NY. 2014 Chapter 11, pp 283-312.
`
`
`Deshpande, D., Jamal-Allial, A., Sankhe, K., and Amiji, M. Nanotechnology applications in local arterial drug delivery. In
`Domb, A. and Khan, W. (eds). Advances in Delivery Science and Technology - Focal Controlled Drug Therapy.
`Published by the Controlled Release Society - Springer Science Publishing, New York, NY. 2014 Chapter 17, pp 359-
`385.
`
`
`Ganesh, S., Iyer, A.K., and Amiji, M.M. Combinatorial-designed hyaluronic acid nanoparticles for tumor targeted drug and
`small interfering RNA delivery. In Collins, M. (ed.). Hyaluronic Acid for Biomedical and Pharmaceutical Applications.
`Published by Simthers Rapra, Shrewsbury, The United Kingdom. 2014 Chapter 3, pp 57-88.
`
`
`Iyer, A.K., Ganesh, S., and Amiji, M.M. Nano-platforms for tumor-targeted delivery of nucleic acid therapies. In Alonso, M.J.
`and Fuentes, M.G. (eds). Nano-Oncologicals: New Targeting and Delivery Approaches. Published by the Controlled
`Release Society - Springer Publishing, New York, NY. 2014 Chapter 10, pp 269-291.
`
`
`Singh, A., Oka, A.J., Pandya, P., and Amiji, M.M. Multimodal nano-systems for cancer diagnosis, imaging, and therapy. In
`Alonso, M.J. and Fuentes, M.G. (eds). Nano-Oncologicals: New Targeting and Delivery Approaches. Published by the
`Controlled Release Society - Springer Publishing, New York, NY. 2014 Chapter 13, pp 351-388.
`
`
`
`7
`
`

`

`
`Singh, A., Iyer, A., and Amiji, M. Polymeric nano-systems for integrated image-guided cancer therapy. In V.P. Torchilin
`(ed.). Handbook of Nano-Biomedical Research: Fundamentals, Applications, and Recent Developments. Volume 1:
`Materials for Nanomedicine. Published by World Scientific Publishing, Singapore. 2014 Chapter 6, pp 199-233.
`
`
`Ganta, S., Singh, A., Coleman, T.P., Williams, D., and Amiji, M. Pharmaceutical nanotechnology: overcoming drug delivery
`challenges in contemporary medicine. In Ge, Y., Li, S., Wang, S., and Moore, R. (eds.). Nanomedicine: Principles and
`Perspectives - Volumes 1 & 2. Published by Springer Publishing, New York, NY. 2014 Chapter 10, pp 191-236.
`
`
`Shah, R., Brito, L., Singh, M., O’Hagan, D., and, Amiji, M. Emulsions as vaccine adjuvants. In Foged, C., Rades, T., Perrie,
`Y., and Hook, S. (eds). Subunit Vaccine Delivery. Published by the Controlled Release Society - Springer Publishing,
`New York, NY 2014 Chapter 4, pp 59-76.
`
`
`Shah, L., Iyer, A., Talekar, M., and Amiji, M. Image-guided delivery of therapeutics to the brain. In Devarajan, P. and Jain,
`S. (eds). Targeted Drug Delivery – Concepts and Design. Published by the Controlled Release Society - Springer
`Publishing, New York, NY 2015, Chapter 4, pp 151-178.
`
`
`Attarwala, H. and Amiji, M. Multi-compartmental oral delivery systems for oligonucleotide therapeutics. In Merkel, O.M. and
`Amiji, M.M. (eds). Advances and Challenges in the Delivery of Nucleic Acid Therapeutics – Volume 2. E-Book
`Published by Future Science, LTD, London, UK. 2015, Chapter 14, pp 71-86.
`
`
`Attarwala, H. and Amiji, M. Biodegradable polyester-based multi-compartmental delivery systems for oral nucleic acid
`therapy. In Majeti, R. (ed.). Handbook of Polyester Drug Delivery Systems. Pan Stanford Publishing, Singapore. 2016,
`Chapter 13, pp 417-443.
`
`
`Singh, A., Tran, T.H., and Amiji, M. Redox-responsive nano-delivery systems for cancer therapy. In V. Weissig and A.
`Prokop (eds.). Fundamentals of Biomedical Technologies Series. Intracellular Delivery, Volume 3 – Market Entry
`Barriers of Nanomedicines. Published by Springer Publishing, New York, NY. 2016, Chapter 10, pp 255-272.
`
`
`Parayath, N., Pawar, G., Avachat, C., Miyake, M.M., Bleier, B.S., and Amiji, M.M. The biology and clinical treatment of
`neurodegenerative diseases. In Milane, L.S. and Amiji, M.M. (eds). Nanomedicine for Inflammatory Diseases.
`Published by CRC Press, LLC (a subsidiary of Taylor and Francis). Boca Raton, FL. 2017, Chapter 8, pp 289-318.
`
`
`Singh, A. and Amiji, M.M. Combinatorial approach in rationale design of polymeric nanomedicines for cancer. In Sarmento,
`B. and Das Neves, J. (eds). Biomedical Applications of Functionalized Nanomaterials. Published by Elsevier Press,
`Amsterdam, The Netherlands. 2018, Chapter 13, pp 371-398.
`
`
`Su, M.J., Parayath, N., and Amiji, M.M. Exosome-mediated communication in the tumor microenvironment. In Amiji, M.M.
`and Ramesh, R. (eds). Diagnostic and Therapeutic Applications of Exosomes in Cancer. Published by Elsevier
`Publishing Company. San Diego, CA. 2018, Chapter 11, pp 187-218.
`
`
`Singh, A. and Amiji, M.M. Regulatory and commercialization challenges with smart materials. In Singh, A. and Amiji, M.M.
`(eds). Stimuli-Responsive Drug Delivery Systems. Royal Society of Chemistry Biomaterial Series Publication. Royal
`Society of Chemistry, London, UK 2018, Chapter 14, pp 335-354.
`
`
`Singh A. and Amiji, M.M. The future of nano-biomaterials for drug delivery in cancer. In Park, K. (ed). Biomaterials for
`Cancer Therapy: Evolution and Innovation, 2nd Edition. Elsevier Press, LTD, Kidlington, UK, 2020, Chapter 21, pp 569-
`598.
`
`
`
`8
`
`

`

`
`Parayath, N.N. and Amiji, M.M. Preparation of hyaluronic acid-based nanoparticles for macrophage-targeted microRNA
`delivery and transfection. In Soloviev, M (ed.) Nanoparticles in Biology and Medicine: Methods and Protocols, Second
`Edition. Springer Publishing Company, Totowa, NJ. 2020, Chapter 7, pp 98-110.
`
`
`Singh, A., Rawal, M., and Amiji, M.M. Combinatorial approach to polymer design for nanomedicines. In Torchilin, V.P. (ed)
`Handbook of Materials for Nanomedicine – Polymeric Nanomaterials. Pan Stanford Publishing, Singapore. 2020,
`Chapter 1, pp 8-22.
`
`
`Ahmad, G. and Amiji, M.M.. Cellular therapeutics in immuno-oncology. In Amiji, M.M. and Milane, L. (eds). Cancer
`Immunology and Immunotherapy. Volume 1. Delivery Strategies and Engineering Technologies in Cancer
`Immunotherapy. Academic Press/Elsevier Publishing Company. Oxford, The United Kingdom. CA. 2021, Chapter 8,
`pp 197-236.
`
`
`Padmakumar, S., Huang, D., Parayath, N., Milane, L., and Amiji, M.M. Local and systemic delivery strategies for glioma
`immunotherapy. In Amiji, M.M. and Milane, L (eds). Systemic Drug Delivery Strategies. Volume 2. Delivery Strategies
`and Engineering Technologies in Cancer Immunotherapy. Academic Press/Elsevier Publishing Company. Oxford, The
`United Kingdom. 2021, Chapter 12, pp 295-332.
`
`
`Lodaya, R.N., Gregory, S., Amiji, M.M. and O’Hagan, D.T. Overview of vaccine adjuvants. In Kolhe, P and Ohtake, S. (eds).
`Practical Aspects of Vaccine Development – First Edition, Elsevier Publishing Company, Inc., San Diego, CA, 2021,
`Chapter 3, pp 9-26.
`
`
`Oza, D. and Amiji, M. Delivery of oligonucleotide therapeutics for macrophage reprogramming in inflammatory diseases. In
`Gupta, S and Pathak, Y (eds). Macrophage Targeted Delivery Systems: Basic Concepts and Therapeutic Application.
`Springer Nature Publishing Company, New York, NY (In press).
`
`
`Peer-Reviewed Articles
`
`Amiji, M., Park, H., and Park, K. Study on the prevention of surface-induced platelet activation by albumin coating. Journal
`of Biomaterials Science, Polymer Edition, 3: 375-388 (1992).
`
`
`Amiji, M. and Park, K. Prevention of protein adsorption and platelet adhesion on surfaces by PEO/PPO/PEO triblock
`copolymers. Biomaterials, 13: 682-692 (1992).
`
`
`Amiji, M. and Park, K. Surface modification by radiation-induced grafting of PEO/PPO/PEO triblock copolymers. Journal of
`Colloid and Interface Science, 155: 251-255 (1993).
`
`
`Amiji, M. and Park, K. Surface modification of polymeric biomaterials with poly(ethylene oxide), albumin, and heparin for
`reduced thrombogenicity. Journal of Biomaterials Science, Polymer Edition, 4: 217-234 (1993).
`
`
`Knuth, K., Amiji, M., and Robinson, J.R. Hydrogel delivery system for vaginal and oral applications: formulation and
`biological considerations. Advances in Drug Delivery Reviews, 11: 137-167 (1993).
`
`
`Amiji, M. and K. Park. Analysis on the surface adsorption of PEO/PPO/PEO triblock copolymers by radiolabeling and
`fluorescence techniques. Journal of Applied Polymer Science, 52: 539-544 (1994).
`
`
`Amiji, M.M. Permeability and blood compatibility properties of chitosan-poly(ethylene oxide) blend membranes for
`hemodialysis. Biomaterials, 16: 593-599 (1995).
`
`
`
`9
`
`

`

`
`Amiji, M.M. Pyrene fluorescence study of chitosan self-association in aqueous solution. Carbohydrate Polymers 26: 211-
`213 (1995).
`
`
`Amiji, M., Shah, E., and Boroujerdi, M. Photophysical characterization of insulin denaturation and aggregation at
`hydrophobic interfaces. Drug Development and Industrial Pharmacy, 21: 1661-1669 (1995).
`
`
`Patel, V.R. and Amiji, M.M. pH-sensitive swelling and drug release properties of chitosan-poly(ethylene oxide) semi-
`interpenetrating polymer network. In R. Ottenbrite, S. Huang, and K. Park (eds.) Hydrogels and Biodegradable
`Polymers for Bioapplications. American Chemical Society Symposium Series Publication. Volume 627. American
`Chemical Society, Washington, DC. 1996, pp 209-220.
`
`
`Patel, V.R. and Amiji, M.M. Preparation and characterization of freeze-dried chitosan-poly(ethylene oxide) hydrogels for
`site-specific antibiotic delivery in the stomach. Pharmaceutical Research 13: 588-593 (1996).
`
`
`Amiji, M.M. Surface modification of chitosan membranes by complexation-interpenetration of anionic polysaccharides for
`improved blood compatibility in hemodialysis. Journal of Biomaterials Science, Polymer Edition, 8: 281-298 (1996).
`
`
`Amiji, M., Tailor, R., Ly, M., and Goreham, J. Gelatin-poly(ethylene oxide) semi-interpenetrating polymer network with pH-
`sensitive swelling and enzyme-degradable properties for oral drug delivery. Drug Development and Industrial
`Pharmacy, 23: 575-582 (1997).
`
`
`Amiji, M.M. Synthesis of anionic poly(ethylene glycol) derivative for chitosan surface modification in blood-contacting
`applications. Carbohydrate Polymers, 32: 193-199 (1997).
`
`
`Amiji, M.M. Platelet adhesion and activation on an amphoteric chitosan derivative bearing sulfonate groups. Colloids and
`Surfaces. Part B: Biointerfaces, 10: 263-271 (1998).
`
`
`Qaqish, R.B. and Amiji, M.M. Synthesis of fluorescent chitosan derivative and its application for the study of chitosan-mucin
`interactions. Carbohydrate Polymers, 38: 99-107 (1999).
`
`
`Shah, S., Qaqish, R., Patel, V., and Amiji. M. Evaluation of the factors influencing stomach-specific delivery of antibacterial
`agents for Helicobacter pylori infection. Journal of Pharmacy and Pharmacology, 51: 667-672 (1999).
`
`
`Anderson, D., Nguyen, T., and Amiji, M. Chitosan-Pluronic® physical interpenetrating network: membrane fabrication and
`protein permeability studies. In M. El-Nokaly and H. Soini (eds.). Polysaccharides in Pharmaceutical and Cosmetic
`Applications. American Chemical Society Symposium Series Publication, Volume 737. American Chemical Society,
`Washington, DC 1999, pp 178-186.
`
`
`McQueen, C., Silvia, A., Lai, P.K., and Amiji, M. Surface and blood interaction properties of poly(ethylene oxide)-modified
`chitosan microspheres. S.T.P Pharma Sciences, 10: 95-100 (2000). [Year 2000 thematic issue on “Chitosan in Drug
`Delivery Systems”].
`
`
`Anderson, D., Nguyen, T., Lai, P.K., and Amiji, M. Evaluation of the permeability and blood-compatibility properties of
`membranes formed by physical interpenetration of chitosan with PEO/PPO/PEO triblock copolymers. Journal of
`Applied Polymer Science, 80: 1274-1284 (2001).
`
`
`Anderson, D. and Amiji, M. Preparation and evaluation of sustained drug release from Pluronic® polyol rectal suppositories.
`International Journal of Pharmaceutical Compounding, 5: 234-237 (2001).
`
`
`
`10
`
`

`

`
`Lynn, D.M., Amiji, M.M., and Langer, R. pH-responsive biodegradable polymer microspheres: rapid release of encapsulated
`material within the range of intracellular pH. Angewandte Chemie, International Edition, 40(9): 1707-1710 (2001).
`
`
`Amiji, M.M., Lai, P.-K., Shenoy, D.B., and Rao, M. Intratumoral administration of paclitaxel in an in situ gelling poloxamer
`407 formulation. Pharmaceutical Developm

This document is available on Docket Alarm but you must sign up to view it.


Or .

Accessing this document will incur an additional charge of $.

After purchase, you can access this document again without charge.

Accept $ Charge
throbber

Still Working On It

This document is taking longer than usual to download. This can happen if we need to contact the court directly to obtain the document and their servers are running slowly.

Give it another minute or two to complete, and then try the refresh button.

throbber

A few More Minutes ... Still Working

It can take up to 5 minutes for us to download a document if the court servers are running slowly.

Thank you for your continued patience.

This document could not be displayed.

We could not find this document within its docket. Please go back to the docket page and check the link. If that does not work, go back to the docket and refresh it to pull the newest information.

Your account does not support viewing this document.

You need a Paid Account to view this document. Click here to change your account type.

Your account does not support viewing this document.

Set your membership status to view this document.

With a Docket Alarm membership, you'll get a whole lot more, including:

  • Up-to-date information for this case.
  • Email alerts whenever there is an update.
  • Full text search for other cases.
  • Get email alerts whenever a new case matches your search.

Become a Member

One Moment Please

The filing “” is large (MB) and is being downloaded.

Please refresh this page in a few minutes to see if the filing has been downloaded. The filing will also be emailed to you when the download completes.

Your document is on its way!

If you do not receive the document in five minutes, contact support at support@docketalarm.com.

Sealed Document

We are unable to display this document, it may be under a court ordered seal.

If you have proper credentials to access the file, you may proceed directly to the court's system using your government issued username and password.


Access Government Site

We are redirecting you
to a mobile optimized page.





Document Unreadable or Corrupt

Refresh this Document
Go to the Docket

We are unable to display this document.

Refresh this Document
Go to the Docket