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February 26, 2026Pharmaceuticals2 citationsOpen Access

Eco-Friendly Synthesis and Characterization of Calotropis gigantea-Derived Silver Nanoparticles for Combating Antibiotic-Resistant Helicobacter pylori and Gastric Cancer Cells

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MKMounishwaran KamalesanMRMohanraj RajaNRNeelamegam Rameshkumar

Key Points

  • To investigate the synthesis and efficacy of silver nanoparticles derived from Calotropis gigantea against Helicobacter pylori and gastric cancer cells.
  • Analyzed phytochemical composition using gas chromatography-mass spectrometry (GC-MS).
  • Synthesized silver nanoparticles (AgNPs) using aqueous leaf extract of C. gigantea.
  • Characterized AgNPs with techniques such as UV-Vis spectroscopy, XRD, FTIR, SEM, EDX, and HR-TEM.
  • Evaluated antibacterial activity through agar well diffusion and biofilm assays.
  • Measured cytotoxic effects on AGS gastric cancer cells using MTT and apoptosis assays.
  • CG-AgNPs demonstrated spherical morphology with a size range of 11–17 nm and a zeta potential of −30.2 mV.
  • Significantly inhibited H. pylori growth with a 16.00 ± 0.17 mm inhibition zone at 50 µg/mL.
  • Reduced AGS cell viability by 61% at 100 µg/mL, with apoptosis confirmed through staining techniques.
  • Showed antioxidant potential ranging from 18% to 83% (DPPH) and 74% (ABTS) at 100 µg/mL.
  • Indicated anti-inflammatory effects with BSA denaturation inhibition of 45% to 80% and membrane stabilization between 54% and 85%.

Abstract

Background: The eco-friendly synthesis of silver nanoparticles (AgNPs) utilizing medicinal flora presents a viable strategy for the development of multifunctional agents exhibiting antimicrobial, antioxidant, anti-inflammatory, and anticancer properties. This investigation aims to elucidate the phytochemical composition of Calotropis gigantea and its contribution to the synthesis of CG-AgNPs that demonstrate efficacy against Helicobacter pylori and gastric cancer cell lines. Methods: The aqueous plant leaf extract of C. gigantea underwent comprehensive analysis via gas chromatography-mass spectrometry (GC-MS), identifying a total of 25 bioactive constituents, including oleic and oxalic acid derivatives. The fabrication and analysis of silver nanoparticles (AgNPs) were performed utilizing methodologies including ultraviolet-visible (UV–Vis) spectroscopy, X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDX), high-resolution transmission electron microscopy (HR-TEM), dynamic light scattering (DLS), and assessments of zeta potential. Antibacterial efficacy was evaluated through methods including agar well diffusion, time-kill kinetics, and biofilm assays. The cytotoxic impact on AGS gastric cancer cells was investigated using MTT assays, DAPI staining, and acridine orange/ethidium bromide (AO/EtBr) staining techniques. The assessment of antioxidant potential was performed utilizing DPPH and ABTS assays. The anti-inflammatory properties were analyzed through protein denaturation and membrane stabilization tests. Results: CG-AgNPs exhibited a spherical morphology (11–17 nm) with commendable stability, denoted by using zeta potential analysis measurement of −30.2 mV. The antibacterial activity showed a significant inhibition zone of 16.00 ± 0.17 mm at a concentration of 50 µg/mL against H. pylori, in addition to notable biofilm disruption. The viability of AGS cells was reduced by 61% at a concentration of 100 micrograms per milliliter, with apoptosis being confirmed through relevant assays. The antioxidant potential varied from 18% to 83% (DPPH) and reached 74% (ABTS) at a concentration of 100 µg/mL. The anti-inflammatory assays indicated a BSA denaturation inhibition ranging from 45% to 80% and a membrane stabilization effect between 54% and 85%. Conclusions: CG-AgNPs exhibit substantial antibacterial, antioxidant, anti-inflammatory, and anticancer activities, underscoring their pharmaceutical potential, particularly for combating antibiotic-resistant pathogens and gastric malignancies.

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Cite This Study

Kamalesan et al. (2026) studied this question.

synapsesocial.com/papers/699fe40c95ddcd3a253e83d2https://doi.org/10.3390/ph19030358
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