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At least 19 recordsLinked to original sources

Development of high intensity narrow-band lamps and studies of the irradiation effect on human skin. Irradiation with high intensity lamps.

A compact light source has been developed. It consists of a high-pressure mercury lamp, a shutter, and water-cooled filters for selected wavelength regions. A mixing device permits simultaneous irradiation from two lamps of different wavelengths. The spectral distribution of the light for seven filter combinations and the construction of a power meter are also described. The application of the lamps to clinical investigations is illustrated by determination of minimal erythemal and blister doses, as well as pigmentation, for various groups of patients. The light intensities available are high enough to make pain threshold measurements possible in the UV and visible regions.

Adolescent

Saliva-based RT-LAMP assays support heat shock protein 70 as a promising transcript marker for estrus identification in buffaloes.

Buffaloes do not exhibit overt estrus signs particularly during summer, leading to a significant economic loss to farmers. Previous studies have identified several candidate transcripts (HSP70, TIMP1, TLR4 and HSD17B1), abundant in buffalo saliva during estrus stage. However, there is no widely applicable technology for estrus detection targeting these transcripts. Therefore, the present study aimed to develop reverse transcription loop mediated isothermal amplification (RT-LAMP) assays for these candidate transcripts using buffalo saliva. Saliva samples were collected from 10 cyclic buffaloes and RT-LAMP assays were optimized for salivary RNA as well as direct saliva. Among the four candidate transcripts, HSP70 showed a statistically significant colour change (p-value = 0.0191) at the estrus stage compared to the diestrus stage. This abundance of HSP70 was also supported in large simulated population datasets (10,000 animals) generated using R. Further, the RT-LAMP assays were tested using direct saliva without RNA isolation, and the colour change in the samples during estrus suggested the feasibility of estrus identification using direct saliva, overcoming the tedious step of RNA isolation. The detection of HSP70 using either direct saliva or salivary RNA indicated its potential as a marker for estrus identification. Similarly, TLR4 appeared to be another potential biomarker for RT-LAMP reaction using direct saliva, but it needs further validation in both RNA and direct saliva samples. Overall, the proof-of-concept on RT-LAMP assays optimized for salivary transcripts in the present study would be useful for estrus identification in tropical production systems following further validation on a larger sample size.

Animals

Slit-lamp attachment for examination of donor corneas in McCarey-Kaufman medium.

An attachment permits slit-lamp examination of excised donor cornea in McCarey-Kaufman medium. The bottle that contains the excised cornea is placed in a holder and examined with the slit lamp by means of a mirror placed at a 45 degree angle. This mirror reflects the slit beam up through the bottom of the bottle. This allows accurate examination of the donor cornea in a stable manner that was not previously possible.

Corneal Transplantation

First report of tomato spotted wilt virus (Orthotospovirus tomatomaculae) and phytoplasma in China aster and development of duplex PCR, LAMP, and qPCR assays for rapid detection.

UNLABELLED: China aster (Callistephus chinensis) is an economically important ornamental crop widely cultivated for cut flowers and landscaping. During field surveys conducted in three districts of Karnataka, India, China aster plants exhibiting chlorotic and necrotic ring spots, leaf deformation, and witches' broom symptoms were collected and analyzed to determine the causal agents. Mechanical inoculation of symptomatic leaf sap onto cowpea (Vigna unguiculata cv. C-152) produced characteristic chlorotic and necrotic ring spots on newly emerging leaves indicating the presence of an infectious viral agent. Serological assay by DAC-ELISA followed by RT-PCR confirmed the presence of tomato spotted wilt virus (TSWV, Orthotospovirus tomatomaculae) in symptomatic plants. Similarly the plants exhibiting witches' broom symptoms tested positive for phytoplasma infection using universal and Nested primers PCR assays targeting the 16S rRNA gene. Sequence analysis of TSWV CP gene revealed more than 97% nucleotide identity with TSWV isolates reported from India and other countries. Based on these results, one representative isolate was selected for complete genome sequencing. The complete sequences of the L, M, S RNA segements were amplified cloned, and sequenced showing more than 97% nucleotide identity with global TSWV isolates available in database. Sequence analysis of 16S rRNA gene of the phytoplasma associated with witches' broom symptoms was identified as 'Candidatus Phytoplasma australasiaticum' belonging to the 16SrII-D subgroup, sharing 99.2% nucleotide identity with previously reported isolates. Phylogenetic analysis further supported the placement of both the TSWV and phytoplasma isolates within their respective taxonomic groups. To facilitate rapid and sensitive diagnosis, quantitative PCR (qPCR) and RT-LAMP assays were developed for TSWV detection. In addition a duplex PCR assay was optimized for simultaneous detection of TSWV and phytoplasma from infected China aster plants in a single reaction. This study represents the first reports of the complete genome characterization of TSWV and phytoplasma infection in China aster in India along with the development of sensitive qPCR, RT-LAMP, and duplex PCR assays for rapid detection of these pathogens providing valuable tools for disease diagnosis, epidemiological studies. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at https://doi.org/10.1007/s13205-026-05038-w.

China aster

Treatment of psoriasis with trioxsalen baths and dysprosium lamps.

Photochemotherapeutic treatment of psoriasis with trioxsalen baths (0.5 mg/1) for 15 minutes followed by irradiation with dysprosium lamps (Osram HQI-TS) healed or nearly healed the psoriatic lesions in 18 patients within 3-5 weeks. A control area treated with the Ingram method showed a slower healing in 9 of these patients. Methoxsalen bath was not as effective in healing at the concentration used (1 mg/l). The bath method is easy to administer and cosmetically acceptable. Sensitisation to light is maximal immediately after the bath and disappears more quickly than after painting with an alcoholic trioxsalen solution. By using baths, there is less risk of accidental burns or uneven pigmentation than with the often time-consuming local application of psoralen solutions. Toxic systemic effects, which are possible with oral treatment, are less apt to occur. The dysprosium lamps give high intensity in the UV-A region. Exposure times of 10 seconds to 8 minutes are effective in the treatment of psoriasis, where both the UV-B region itself and the UV-A in combination with trioxsalen have psoriasis-healing properties.

Adolescent

Multiplexed RT-LAMP Assays in Handheld Devices for In-Situ Detection of Chikungunya, Dengue, Mayaro, and Zika Viruses.

Mosquito-borne viruses pose a significant global health challenge, particularly in resource-limited settings where multiple viruses often cause illnesses with similar symptoms that require different treatment. We introduce the first 7-plex reverse transcription loop-mediated isothermal amplification (RT-LAMP) assay in a hand-held device capable of detecting the presence of Chikungunya virus (CHIKV), dengue virus serotypes (DENV 1-4), Mayaro virus (MAYV), and Zika virus (ZIKV) in a single test. If the result is positive from the single-plex device for the 7-plex assay, 3-plex and 4-plex devices are then used to identify the exact virus within a specimen. In-situ detection is achieved by integrating valve-enabled, paper-based sample preparation with fluorescence detection using a blue LED flashlight as a light source and a yellow plastic film as a filter, allowing visual discrimination between positive and negative samples by the naked eye or by recording images using a smart phone. The detection limits ranged from 2 genome equivalents (GE)/reaction (for ZIKV) to 92 GE/reaction (for DENV-3) across 7 types of viruses when 1 μL of viral RNA was used. We observed 90% overall agreement between the point-of-care (POC) device and lab-based reverse transcription polymerase chain reactions (RT-PCR) when blinded clinical specimens were tested. This assay and device have a potential to address critical surveillance gaps in endemic regions, enabling timely detection of multiple mosquito-borne viruses to guide appropriate clinical management and public health countermeasures in settings where laboratory resources are scarce.

Nucleic Acid Amplification Techniques

A comparison of mercury arc lamp and laser illumination for flow cytometers.

Optical differences between a mercury arc lamp and a laser-illuminated flow cytometer are compared. The distributions of spectral intensities of the two light sources are shown in relation to the excitation characteristics of the fluorescent dyes acriflavine, chromomycin A3, mithramycin, ethidium bromide, Hoechst 33258, and 4,6-diamidino-2-phenylindole (DAPI). Fluorescence intensities of microspheres and Hoechst 33258-stained mouse sperm are compared in the two cytometers. The optical efficiencies are similar and depend on the match of the excitation characteristics of the stain with the emission spectra of the light source.

Animals

Donor corneal endothelium: slit-lamp examination of buttons in storage medium.

The integrity of the corneal endothelium is vital to the maintenance of a clear graft. The slit-lamp examination of the cornea from the endothelial surface, as described, allows the exclusion from transplantation of buttons with obvious endothelial trauma or disease. The use of this method at the Wilmer Institute during the last four years has been part of the preoperative assessment of all corneal donor buttons and has helped to reduce the rate of early graft failure.

Cornea

Use of a xenon flash tube as the excitation source in a new slit-lamp fluorophotometer.

A new objective fluorophotometer measures fluorescein mass or concentration in the cornea or anterior chamber. The excitation source is a xenon flash tube that allows the measurement of fluorescence to be made rapidly and conveniently. The instrument is designed for use in clinical studies requiring quantitative measurements of fluorescence in the tears, the cornea, and the aqueous humor.

Animals