Literature DB >> 33552231

What NIR photodynamic activation offers molecular targeted nanomedicines: Perspectives into the conundrum of tumor specificity and selectivity.

Chanda Bhandari1, Mina Guirguis1, N Anna Savan2, Navadeep Shrivastava1, Sabrina Oliveira3,4, Tayyaba Hasan5,6, Girgis Obaid1.   

Abstract

Near infrared (NIR) photodynamic activation is playing increasingly critical roles in cutting-edge anti-cancer nanomedicines, which include spatiotemporal control over induction of therapy, photodynamic priming, and phototriggered immunotherapy. Molecular targeted photonanomedicines (mt-PNMs) are tumor-specific nanoscale drug delivery systems, which capitalize on the unparalleled spatio-temporal precision of NIR photodynamic activation to augment the accuracy of tumor tissue treatment. mt-PNMs are emerging as a paradigm approach for the targeted treatment of solid tumors, yet remain highly complex and multifaceted. While ligand targeted nanomedicines in general suffer from interdependent challenges in biophysics, surface chemistry and nanotechnology, mt-PNMs provide distinct opportunities to synergistically potentiate the effects of ligand targeting. This review provides what we believe to be a much-need demarcation between the processes involved in tumor specificity (biomolecular recognition events) and tumor selectivity (preferential tumor accumulation) of ligand targeted nanomedicines, such as mt-PNMs, and elaborate on what NIR photodynamic activation has to offer. We discuss the interplay between both tumor specificity and tumor selectivity and the degree to which both may play central roles in cutting-edge NIR photoactivable nanotechnologies. A special emphasis is made on NIR photoactivable biomimetic nanotechnologies that capitalize on both specificity and selectivity phenomena to augment the safety and efficacy of photodynamic anti-tumor regimens.

Entities:  

Keywords:  Photodynamic therapy; photonanomedicines; selectivity; solid tumors; specificity

Year:  2020        PMID: 33552231      PMCID: PMC7864390          DOI: 10.1016/j.nantod.2020.101052

Source DB:  PubMed          Journal:  Nano Today        ISSN: 1748-0132            Impact factor:   20.722


  118 in total

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4.  Enhanced macrophage cytotoxicity against tumor cells treated with photodynamic therapy.

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6.  Targeting cancer micrometastases with monoclonal antibodies: a binding-site barrier.

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7.  Targeted iron-oxide nanoparticle for photodynamic therapy and imaging of head and neck cancer.

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Review 2.  Deep-Tissue Activation of Photonanomedicines: An Update and Clinical Perspectives.

Authors:  Nimit Shah; John Squire; Mina Guirguis; Debabrata Saha; Kenneth Hoyt; Ken Kang-Hsin Wang; Vijay Agarwal; Girgis Obaid
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Review 3.  Targeting regulated cell death in tumor nanomedicines.

Authors:  Qinghu Zeng; Xiangyi Ma; Yangmeihui Song; Qiqing Chen; Qiuling Jiao; Liqiang Zhou
Journal:  Theranostics       Date:  2022-01-01       Impact factor: 11.556

4.  Gold Nanoclusters: Imaging, Therapy, and Theranostic Roles in Biomedical Applications.

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5.  Membrane composition is a functional determinant of NIR-activable liposomes in orthotopic head and neck cancer.

Authors:  Mina Guirguis; Chanda Bhandari; Junjie Li; Menitte Eroy; Sushant Prajapati; Ryan Margolis; Navadeep Shrivastava; Kenneth Hoyt; Tayyaba Hasan; Girgis Obaid
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6.  Towards Photodynamic Image-Guided Surgery of Head and Neck Tumors: Photodynamic Priming Improves Delivery and Diagnostic Accuracy of Cetuximab-IRDye800CW.

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7.  Remediating Desmoplasia with EGFR-Targeted Photoactivable Multi-Inhibitor Liposomes Doubles Overall Survival in Pancreatic Cancer.

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Review 8.  Biomimetic Nanotechnology: A Natural Path Forward for Tumor-Selective and Tumor-Specific NIR Activable Photonanomedicines.

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  8 in total

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