Multifunctional Silver-based Nanomaterials for Non-conventional Oral Cancer Therapy Through Simultaneous LOX and Selective COX-۲ inhibition

Publish Year: 1401
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_IJMSEI-19-2_010

تاریخ نمایه سازی: 25 دی 1401

Abstract:

Neoplastic cells have co-opted inflammatory receptors and signaling molecules that potentiate inflammation. Activated inflammatory pathways lead to neo-angiogenesis, lymph-angiogenesis, immunosuppression, tumor growth, proliferation and metastasis. This cancer-sustaining inflammation is a critical target to arrest cancer growth. Multiple drug resistance, high cost, low oral bioavailability and serious side effects have rendered conventional cytotoxic chemotherapeutics less impressive. The aim of this research was to achieve cancer debulking and proliferation prevention by limiting ‘cancer-sustaining’ tumor niche inflammation through non-conventional oral approach employing anti-inflammatory agents and avoiding conventional cytotoxic agents. Synergistic anti-inflammatory agents, i.e. celecoxib as selective COX-۲ inhibitor and montelukast as cysteinyl leukotriene receptor antagonist, were selected. Silver nanoparticles (AgNPs) were used as nanocarriers because of their efficient synergistic anti-neoplastic effects and excellent oral drug delivery potential. Specifically, selected drugs were co-conjugated onto AgNPs. Synthesized nanoparticles were then surface-modified with poly(vinyl alcohol) to control particle size, avoid opsonization/preferred cellular uptake and improve dispersion. Surface plasmon resonance analysis, particle size analysis, DSC, TGA, XRD, FTIR and LIBS analysis confirmed the successful conjugation of drugs and efficient polymer coating with high loading efficiency. In-vitro, the nanoparticles manifested best and sustained release in moderately acidic (pH ۴.۵) milieu enabling passive tumor targeting potential. In-vivo, synthesized nanoparticles exhibited efficient dose-dependent anti-inflammatory activity reducing the dose up to ۲۵-fold. The formulation also manifested hemo-compatibility, potent anti-denaturation activity and dose-dependent in-vitro and in-vivo anti-cancer potential against MCF-۷ breast cancer and Hep-G۲ liver cancer cell lines in both orthotopic and subcutaneous xenograft cancer models. The anti-inflammatory nanoparticles manifested tumor specific release potential exhibiting selective cytotoxicity at cancerous milieu with slightly acidic environment and activated inflammatory pathways. The formulation displayed impressive oral bioavailability, sustained release, negligible cytotoxicity against THLE-۲ normal human hepatocytes, low toxicity (high LD۵۰) and wide therapeutic window. Results suggest promise of developed nanomaterials as hemo-compatible, potent, cheaper, less-toxic oral anti-inflammatory and non-conventional anti-cancer agents.

Authors

Fiza ur Rehman

Saulat Institute of Pharmaceutical Sciences, Quaid-i-Azam University, Islamabad, Pakistan.

Syeda Sohaila Naz

Nanosciences and Technology Department, National Centre for Physics (NCP), Islamabad, Pakistan.

Muhammad Junaid Dar

Department of Pharmacy, The University of Lahore, Islamabad, Pakistan.

Annum Malik

Saulat Institute of Pharmaceutical Sciences, Quaid-i-Azam University, Islamabad, Pakistan.

Maimoona Qindeel

Hamdard institute of Pharmaceutical Sciences, Hamdard University, Islamabad campus, Islamabad.

Francesco Baino

Institute of Materials Physics and Engineering, Applied Science and Technology Department, Politecnico di Torino, Torino, Italy.

Fazli Wahid

COMSATS University, Abbotabad, Pakistan.

Abbas Rahdar

Deparment of Physics, University of Zabol, Zabol, Iran.

Saeeda Munir

Institute of Biomedical and Genetic Engineering (IBGE), Islamabad, Pakistan.

Sara Qaisar

Nanosciences and Technology Department, National Centre for Physics (NCP), Islamabad, Pakistan.

Kifayat Ullah Shah

Quaid-i-Azam University

Mahtab Razlansari

. Inorganic Chemistry Department, Faculty of Chemistry, Razi University, Kermanshah, Iran

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