4.7 Article

Multifunctional theranostic applications of biocompatible green-synthesized colloidal nanoparticles

Journal

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
Volume 102, Issue 10, Pages 4393-4408

Publisher

SPRINGER
DOI: 10.1007/s00253-018-8928-2

Keywords

Phyto-nanotechnology; Green synthesis of nanoparticles; Green nanotechnology; Biological potential of nanoparticles; Nanoparticle drug delivery; Biocompatible nanoparticles

Funding

  1. PAK-NORWAY Institutional Cooperation Program [PK3004]
  2. COMSTECH-TWAS project [12-198 RG/PHA/AS_C-UNESCO FR3240270874]

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Phytochemicals offer immense promise for sustainable development and production of nanotechnology-enabled products. In the present study, Olax nana Wall. ex Benth. (family: Olacaceae) aqueous extract was used as an effective stabilizing agent to produce biogenic silver (ON-AgNPs) and gold nanoparticles (ON-AuNPs), which were investigated for biocompatibility and prospective biomedical applications (antibacterial, anticancer, antileishmanial, enzyme inhibition, antinociceptive, and anti-inflammatory activities). Various characterization techniques (XRD, FTIR, SEM, TEM, DLS, EDX, and SAED) revealed efficient biosynthesis of ON-AgNPs (26 nm) and ON-AuNPs (47 nm). In the toxicological assessment, ON-AgNPs and ON-AuNPs were found biocompatible towards human RBCs and macrophages (IC50 > 200 mu g/mL). In a concentration range of 62.5-2000 mu g/mL, a strong antibacterial effect was produced by ON-AgNPs against Staphylococcus epidermidis (MIC = 7.14 mu g/mL) and Escherichia coli (8.25 mu g/mL), while ON-AuNPs was only active against Staphylococcus aureus (9.14 mu g/mL). At a concentration of 3.9-500 mu g/mL, a dose-dependant inhibition of HepG2 cancer cells was produced by ON-AgNPs (IC50 = 14.93 mu g/mL) and ON-AuNPs (2.97 mu g/mL). Both ON-AgNPs and ON-AuNPs were found active against Leishmania tropica (KMH23) promastigotes (IC50 = 12.56 and 21.52 mu g/mL) and amastigotes (17.44 and 42.20 mu g/mL), respectively, after exposure to a concentration range of 1-200 mu g/mL for 72 h. Preferential enzyme inhibition against urease and carbonic anhydrase II were noted for ON-AgNPs (39.23 and 8.89%) and ON-AuNPs (31.34 and 6.34%), respectively; however, these were found inactive against xanthine oxidase at 0.2 mg/mL. In the in vivo antinociceptive (acetic acid-induced abdominal constrictions) and anti-inflammatory (carrageenan-induced paw edema) activities, ON-AgNPs and ON-AuNPs at doses of 40 and 80 mg/kg, significantly attenuated the tonic nociception (P < 0.001) and ameliorated the carrageenan-induced inflammation (P < 0.01, P < 0.001). The results of in vitro and in vivo activities indicated that the biogenic nanoparticles can be used as valuable theranostic agents for further exploration of diverse biomedical applications.

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