Nih Gene And Drug Delivery Study Section

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GDD NIH Center for Scientific Review

    https://public.csr.nih.gov/StudySections/DBIB/BST/GDD
    The Gene and Drug Delivery Systems (GDD) study section considers grant applications focused on fundamental aspects of gene and drug delivery, including delivery vehicle development, targeting strategies, and biological barriers. Applications are typically focused on bioengineering principles and may not be hypothesis driven.

HVCD NIH Center for Scientific Review

    https://public.csr.nih.gov/StudySections/DABP/AARR/HVCD
    Gene and Drug Delivery Systems Study Section (GDD): The GDD study section reviews applications on fundamental aspects of gene and drug delivery, including delivery vehicle development, targeting strategies, and biological barriers.

BTSS NIH Center for Scientific Review

    https://public.csr.nih.gov/StudySections/DTCS/SBIB/BTSS
    There are shared interests with Gene and Drug Delivery Systems Study Section [GDD] in the areas of drug and gene delivery devices and vehicles as well as electroporation. Applications which focus on development and delivery of drugs, genes, and gene products that alter gene function or expression in the living organism, mostly in tissue culture and animal models are appropriate for GDD .

AUD NIH Center for Scientific Review

    https://public.csr.nih.gov/StudySections/DNDA/IFCN/AUD
    Gene and Drug Delivery Systems Study Section [GDD] reviews drug discovery and drug delivery applications for hearing loss when the emphasis is more methodological, and potentially generalizable, whereas AUD reviews them when the emphasis is more specific to auditory system function.

Drug-delivery technology leads to sustained HIV antibody ...

    https://www.nih.gov/news-events/news-releases/drug-delivery-technology-leads-sustained-hiv-antibody-production-nih-study
    Mar 09, 2020 · The drug-delivery system developed by scientists at NIAID’s Vaccine Research Center (VRC) uses adeno-associated virus serotype 8 (AAV8) to deliver an antibody gene. AAVs — small viruses that do not cause disease in humans — have proven to be safe, well-tolerated vectors for gene therapy.

Drug-Delivery Technology Leads to ... - niaid.nih.gov

    https://www.niaid.nih.gov/news-events/drug-delivery-technology-leads-sustained-hiv-antibody-production-nih-study
    This drug-delivery technology uses a harmless virus to deliver an antibody gene into human cells, enabling the body to generate the antibody over an extended time. With further development, such a strategy could be applied to prevent and treat a wide variety of infectious diseases, according to the study investigators.

BST NIH Center for Scientific Review

    https://public.csr.nih.gov/StudySections/DBIB/BST
    The Bioengineering Sciences and Technologies (BST) IRG reviews grant applications that focus on fundamental aspects of bioengineering and technology development in the following areas: gene and drug delivery systems, nanotechnology, high-throughput screening, modeling of biological systems, bioinformatics and computer science, data management, instrumentation, chips and microarrays, …

Ultrasound-Responsive Materials for Drug/Gene Delivery

    https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7005489/
    Jan 31, 2020 · To address the shortcomings of chemical and gene drugs in clinical practices, drug-delivery carriers are used to encapsulate drugs to improve the water solubility of lipophilic drugs, enhance the penetration of hydrophilic drugs into cells, and decrease the side-effect of drugs.Author: Xiaowen Cai, Yuan Jiang, Mei Lin, Jiyong Zhang, Huanhuan Guo, Fanwen Yang, Wingnang Leung, Chuanshan...

DMP NIH Center for Scientific Review

    https://public.csr.nih.gov/StudySections/DTCS/OTC/DMP
    The Drug Discovery and Molecular Pharmacology (DMP) Study Section reviews cancer-related applications focused on the discovery, design, identification, isolation, development and/or synthesis of new molecular agents that are potentially useful in cancer therapy of solid tumors and leukemias.

NANO NIH Center for Scientific Review

    https://public.csr.nih.gov/StudySections/DBIB/BST/NANO
    There are shared interests with Biomaterials and Biointerfaces Study Section (BMBI). Applications that focus on the biocompatibility and toxicities associated with nanomaterials may be assigned to NANO. Applications that address the use of nanomaterial based approaches for tissue engineering may be assigned to BMBI.

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