Nanotheranostics: Platforms, Current Applications, and Mechanisms of Targeting in Breast and Prostate Cancers

Author:

Akpa Paul A.12ORCID,Peter Ikechukwu E.23ORCID,Onwuka Akachukwu M.23ORCID,Obi Bonaventure C.234,Akunne Maureen O.25,Nworu Chukwuemeka S.3,Ejikeme Paul M.267,Akunne Theophine C.23ORCID,Attama Anthony A.12ORCID,Akah Peter A.23

Affiliation:

1. Drug Delivery and Nanomedicines Research Laboratory, Department of Pharmaceutics, University of Nigeria, Nsukka 410105, Nigeria

2. Nanotheranostics Drug Discovery Research Group, Faculty of Pharmaceutical Sciences, University of Nigeria, Nsukka 410105, Nigeria

3. Department of Pharmacology and Toxicology, University of Nigeria, Nsukka 410105, Nigeria

4. School of Nutrition Sciences, Faculty of Health Sciences, University of Ottawa, Ottawa, ON K1H 8M5, Canada

5. Department of Clinical Pharmacy and Pharmacy Management, University of Nigeria, Nsukka 410105, Nigeria

6. Department of Pure and Industrial Chemistry, University of Nigeria, Nsukka 410105, Nigeria

7. Africa Centre of Excellence for Sustainable Power and Energy Development (ACE-SPED), University of Nigeria, Nsukka 410105, Nigeria

Abstract

Globally, cancer is one of the deadliest diseases, needing a meticulous diagnosis and targeted treatment plan to achieve an initial prognosis, followed by precision and optimization in treatment. Nonselective targeting, difficulty in accurately monitoring treatment end-results, serious drug side-effects, and severity of disease resulting in metastasis are the key flaws of traditional techniques. Nanotechnology and nanoparticles possess special features to completely transform the field of diagnosis and treatment of cancer. A holistic strategy that employs a dual function of diagnosis and therapy while utilizing a nanocarrier is referred to as a nanotheranostic. The nanotheranostic framework was created to surmount a variety of biological and physiological obstacles, effectively delivering the cargo to the intended target location, while simultaneously facilitating therapeutic intervention, surveillance, and validation to demonstrate improved treatment effectiveness. As a result, a nanotheranostic platform can be useful for targeted drug delivery, release, and distribution assessment, in addition to patient classification and survival. Nanotheranostic techniques also lead to reduced drug side-effects compared with conventional therapies. In this review, we outline current studies on nanotheranostics and their advantages over conventional treatment strategies, the applications and challenges/limitations of nanotheranostics, and the mechanisms of targeting in breast and prostate cancers.

Funder

TETFund NRF intervention 2019

Publisher

MDPI AG

Subject

Pharmacology (medical)

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