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Scientific Reports· 2026Q1

Kronik koku disfonksiyonunun teşhisi ve izlenmesi için propidyum iyodür süpermomoleküler probu kullanılarak nazal cGMP'nin spektroflorometrik tayini

Spectrofluorometric determination of nasal cGMP using a propidium iodide supramolecular probe for diagnosis and monitoring of chronic olfactory dysfunction

Ali Alqahtani, Sumaiah D. Alrubiaan, Roaya S. Alqurashi, Ahmed A. M. Ibrahim

Kısa özet

Yeni geliştirilen bir spektroflorometrik yöntem, nazal cGMP seviyelerini doğru bir şekilde ölçerek, kronik koku disfonksiyonu olan hastalarda normosmik bireylere kıyasla 4.6 kat daha düşük konsantrasyon ortaya koymuştur.

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Özet (abstract)

Abstract Cyclic guanosine monophosphate (cGMP) serves as a critical second messenger in olfactory signal transduction. This study developed and validated a novel, highly sensitive spectrofluorometric method for cGMP determination in human nasal secretions based on its site-specific supramolecular interaction with propidium iodide (PI) at pH 3.0. The formation of a 1:1 ion-pair complex, stabilized by hydrogen bonding and π–π stacking, induced a significant hyperchromic shift. The fluorophore (PI) and cGMP exhibited fluorescence quantum yields of $$\:{{\Phi\:}}_{\text{P}\text{I}}$$ = 0.19 and $$\:{{\Phi\:}}_{\text{c}\text{G}\text{M}\text{P}\:}$$ = 0.07 respectively, while formation of the PI–cGMP complex increased the fluorescence quantum yield to $$\:{{\Phi\:}}_{\text{P}\text{I}-\text{c}\text{G}\text{M}\text{P}}$$ = 0.62. Under optimized conditions, the method exhibited a linear relationship over a concentration range of 1–100 ng/mL, with a limit of detection of 0.21 ng/mL and a limit of quantification of 0.63 ng/mL. Clinical application in a cohort of 100 participants revealed that normosmic individuals ( n = 50) possessed mean cGMP levels of 37.88 ± 4.25 ng/mL, whereas patients with chronic olfactory dysfunction ( n = 50) exhibited significantly decreased levels of 8.25 ± 1.14 ng/mL ( p < 0.0001). The 4.6-fold reduction in cGMP concentration underscores its potential as a robust biochemical biomarker. Compared to previously reported analytical methods, the proposed method offers a wider dynamic range and greater sensitivity, making it an objective tool for the clinical diagnosis and long-term monitoring of olfactory dysfunctions.

Yazarların özeti; kaynağından alınmıştır. Scientific Reports, 2026 · DOI ↗

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