Conclusions Autofluorescence spectroscopy may be a supporting tool for differential diagnosis of changes in laryngeal epithelium. Objectives Early detection and differential diagnosis of proliferative changes in the larynx are still a challenge for laryngologists. The aim of the study was to evaluate the autofluorescence spectroscopy technique to in vitro differential diagnosis of pathological changes in the epithelium of the larynx. Methods Forty-two patients aged 34-79 years were included in the study. The fifty-two tissue specimens, including 10 samples of cancerous lesion, 10 adjacent normal tissue, 10 chronic inflammation, eight cyst, three leukoplakia, four polyp, and seven Reinke's edema, were obtained during laryngological procedures. All tissue samples were independently diagnosed histopathologically. The autofluorescence emission spectra at two excitation wavelengths, 290 nm and 370 nm, were measured for every sample studied. Results The autofluorescence signals of cancerous tissue samples at both excitations exhibited identical emission band shapes of much lower intensities at their maxima as compared to the adjacent healthy tissue samples studied. The autofluorescence spectra intensities of cancerous and normal tissues varied inter-individually. Evident differences in autofluorescence intensities and its band shapes of different pathological laryngeal changes at the 290 nm excitations were demonstrated.
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http://dx.doi.org/10.3109/00016489.2016.1142116 | DOI Listing |
Taiwan J Ophthalmol
December 2024
Shri Bhagwan Mahavir Vitreoretinal Services, Medical Research Foundation, Sankara Nethralaya, Chennai, Tamil Nadu, India.
The aim of this study is to describe genotype and phenotype of patients with bestrophinopathy. The case records were reviewed retrospectively, findings of multimodal imaging such as color fundus photograph, optical coherence tomography (OCT), fundus autofluorescence, electrophysiological, and genetic tests were noted. Twelve eyes of six patients from distinct Indian families with molecular diagnosis were enrolled.
View Article and Find Full Text PDFNano Lett
January 2025
State Key Laboratory for Chemo/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, China.
J Am Chem Soc
January 2025
Department of Chemistry, Laboratory of Advanced Materials, State Key Laboratory of Molecular Engineering of Polymers, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Fudan University, Shanghai 200433, China.
Optical imaging in the second near-infrared window (NIR-II, 1000-1700 nm) holds great promise for biomedical detection due to reduced tissue scattering and autofluorescence. However, the rational design of NIR-II probes with superior excitation wavelengths to balance the effects of tissue scattering and water absorption remains a great challenge. To address this issue, here we developed a series of Ho-sensitized lanthanide (Ln) nanocrystals (NaYF: Ho, Ln@NaYF) excited at 1143 nm, featuring tunable emissions ranging from 1000 to 2200 nm for bioimaging.
View Article and Find Full Text PDFNat Commun
January 2025
Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 1, Singapore, 117585, Singapore.
Strong background interference signals from normal tissues have significantly compromised the sensitive fluorescence imaging of early disease tissues with exogenous probes in vivo, particularly for sensitive fluorescence imaging of early liver disease due to the liver's significant uptake and accumulation of exogenous nanoprobes, coupled with high tissue autofluorescence and deep tissue depth. As a proof-of-concept study, we herein report a near-infrared-II (NIR-II, 1.0-1.
View Article and Find Full Text PDFEur J Pharm Biopharm
December 2024
School of Pharmacy, College of Health and Life Sciences, Aston University, Birmingham, United Kingdom. Electronic address:
Mesoporous silica are widely utilised as drug carriers due to their large pore volume and surface area, which facilitate effective loading. Additionally, they can be used to enhance drugs stability and protect against enzymatic degradation due to their silica framework. However, without the addition of a capping material, the loaded cargo may be prematurely released before reaching the target site.
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