6 citations
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June 2025 in “Nano Biomedicine and Engineering” Smart nano-PROTACs improve cancer treatment by targeting proteins more precisely and reducing side effects.
46 citations
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October 2022 in “Biomaterials” March 2016 in “RepositóriUM (Universidade do Minho)” Molecular dynamics simulations help understand keratin's properties and predict hair's response to treatments.
15 citations
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January 2014 in “Medicinal chemistry” Some new isatin compounds could be strong cancer-fighting drugs because they fit well in cancer-related proteins and have good drug-like properties.
94 citations
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July 2020 in “European Journal of Human Genetics” The guidelines ensure accurate genetic testing and reporting for 21-hydroxylase deficiency.
9 citations
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April 2019 in “Food Chemistry” Created large amounts of grape seed compounds using a new method.
33 citations
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August 2024 in “Frontiers in Drug Discovery” Drug repurposing is a faster, cheaper way to develop new treatments using existing drugs.
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April 2024 in “Life Medicine” Standardizing and engineering organoids can improve their use in medicine and drug testing.
13 citations
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July 2017 in “Annals of Oncology” Chemotherapy toxicity might be reduced by using DNA neutralizing agents.
5 citations
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January 2024 in “Egyptian Dental Journal /Egyptian Dental Journal” Anti-cancer drugs are diverse and hard to classify due to their different forms and actions.
13 citations
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October 2017 in “Bioorganic & Medicinal Chemistry” Optimizing the structure of a specific compound greatly improved its effectiveness and precision for treating diabetic complications.
January 2024 in “African Journal of Biomedical Research” Repurposing existing drugs can quickly and cheaply find new treatments for unmet medical needs.
3 citations
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July 2015 in “oURspace (University of Regina)” The method effectively grouped tweets into categories without knowing the number of groups beforehand.
August 2025 in “MedScien” Tumor-targeted drug carriers can improve chemotherapy precision and reduce side effects.
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October 2022 in “Frontiers in Surgery” Proteomics combined with other technologies can lead to a better understanding of skin diseases.
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October 2004 in “Organic Process Research & Development” The document reviews 20 U.S. patents from July and August 2004 about new drug forms, cancer treatments, aroma chemicals, statin drugs, and various chemical production methods.
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July 2025 in “Annals of the New York Academy of Sciences” Combining skeletal and molecular anthropology improves identifying human remains.
77 citations
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December 2004 in “Choice Reviews Online” The document summarized how various modern drugs are made.
The new sensor can detect a toxic chemical in water with high sensitivity and accuracy.
106 citations
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April 2010 in “ACS Nano” C60 fullerenes can alter protein function and may help develop new disease inhibitors.
110 citations
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February 2024 in “Journal of Chemical Information and Modeling” PandaOmics uses AI to find new disease treatment targets and biomarkers.
November 2025 in “PLoS ONE” Nucleic acids trigger chemokine production in skin cells, affecting skin inflammation.
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January 2013 in “Medicinal chemistry” The compound 4c showed strong potential as an anticancer agent.
April 2020 in “The FASEB journal” Poncirin is a promising inhibitor of Janus Kinase 3, potentially better than tofacitinib.
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June 2016 in “Experimental Dermatology” Metabolomics can identify hair damage markers, but its use in creating treatments is uncertain.
6 citations
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April 2024 in “Journal of Investigative Dermatology” CRISPR-based tools improve understanding and treatment of skin development and conditions.
3 citations
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August 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” The DNN-DTIs method accurately predicts drug-target interactions and is useful for drug repositioning.
March 2025 in “MINAR International Journal of Applied Sciences and Technology” Certain genes can predict how well breast cancer patients respond to chemotherapy.
January 2000 in “Expert Opinion on Therapeutic Patents” The document highlights various patents for new compounds with potential treatments for multiple diseases, including cancer, hormonal disorders, and diabetes.
Finding functions for unknown GPCRs is hard but key for making new drugs.