Publications by authors named "J Dinithi Perera"

Plastic Recovery Facilities are typically designed to process a specific, predetermined mix of plastic in the infeed. However, in many cases, the composition of the infeed varies seasonally and regionally. These variations may result in bottlenecks within sorting machines, thereby causing inconsistencies in the quality and quantity of recovered material.

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The aminopeptidase, endoplasmic reticulum aminopeptidase 1 (ERAP1), trims peptides for loading into major histocompatibility complex class I (MHC class I), and loss of this activity has broad effects on the MHC class I peptidome. Here, we investigated the impact of targeting ERAP1 in immune checkpoint blockade (ICB), as MHC class I interactions mediate both activating and inhibitory functions in antitumor immunity. Loss of ERAP sensitized mouse tumor models to ICB, and this sensitivity depended on CD8 T cells and natural killer (NK) cells.

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Article Synopsis
  • The study aimed to validate the Cardiff Acne Disability Index (CADI) in Tamil to better assess the quality of life (QoL) in Tamil-speaking patients with acne, as nearly 90 million people speak Tamil.
  • 150 Sri Lankan young adults with acne participated, where the translated CADI and Dermatology Life Quality Index (DLQI) were used alongside the Global Acne Grading System (GAGS) to measure severity and validate results.
  • The findings revealed that CADI-Tamil is a reliable (Cronbach's alpha = 0.83) and valid tool for evaluating QoL in Tamil-speaking patients, providing insights for clinicians on how acne affects their patients' lives.
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Background: Cystic Fibrosis (CF) is an autosomal recessive genetic disease caused by mutations in the gene encoding the cystic fibrosis transmembrane conductance regulator (CFTR) protein for which there is no cure. One approach to cure CF is to correct the underlying mutations in the CFTR gene. We have used triplex-forming peptide nucleic acids (PNAs) loaded into biodegradable nanoparticles (NPs) in combination with donor DNAs as reagents for correcting mutations associated with genetic diseases including CF.

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Background: Sepsis claims 1 in 5 lives annually as per global statistics. Sepsis incidence in recent studies represents at least 35 % of all ICU admissions and has a high mortality rate, especially in the presence of co-existing morbidities. The challenge has been to accurately diagnose the causative organism, considering factors such as possible polymicrobial infections, commensals and environmental contaminants.

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