Chadman, K.K.; Adayev, T.; Udayan, A.; Ahmed, R.; Dai, C.-L.; Goodman, J.H.; Meeker, H.; Dolzhanskaya, N.; Velinov, M.
Efficient Delivery of FMR1 across the Blood Brain Barrier Using AAVphp Construct in Adult FMR1 KO Mice Suggests the Feasibility of Gene Therapy for Fragile X Syndrome. Genes 2023, 14, 505.
https://doi.org/10.3390/genes14020505
AMA Style
Chadman KK, Adayev T, Udayan A, Ahmed R, Dai C-L, Goodman JH, Meeker H, Dolzhanskaya N, Velinov M.
Efficient Delivery of FMR1 across the Blood Brain Barrier Using AAVphp Construct in Adult FMR1 KO Mice Suggests the Feasibility of Gene Therapy for Fragile X Syndrome. Genes. 2023; 14(2):505.
https://doi.org/10.3390/genes14020505
Chicago/Turabian Style
Chadman, Kathryn K., Tatyana Adayev, Aishwarya Udayan, Rida Ahmed, Chun-Ling Dai, Jeffrey H. Goodman, Harry Meeker, Natalia Dolzhanskaya, and Milen Velinov.
2023. "Efficient Delivery of FMR1 across the Blood Brain Barrier Using AAVphp Construct in Adult FMR1 KO Mice Suggests the Feasibility of Gene Therapy for Fragile X Syndrome" Genes 14, no. 2: 505.
https://doi.org/10.3390/genes14020505
APA Style
Chadman, K. K., Adayev, T., Udayan, A., Ahmed, R., Dai, C.-L., Goodman, J. H., Meeker, H., Dolzhanskaya, N., & Velinov, M.
(2023). Efficient Delivery of FMR1 across the Blood Brain Barrier Using AAVphp Construct in Adult FMR1 KO Mice Suggests the Feasibility of Gene Therapy for Fragile X Syndrome. Genes, 14(2), 505.
https://doi.org/10.3390/genes14020505