Novel App knock-in mouse model shows key features of amyloid pathology and reveals profound metabolic dysregulation of microglia.
- DOI
- 10.1186/s13024-022-00547-7
- Published
- 2022 Jun 11
- Container
- Molecular neurodegeneration
- Publisher
- Not recorded
- Open access
- yes
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Cite this work
BibTeX
@article{allodium:10.1186/s13024-022-00547-7,
title = {Novel App knock-in mouse model shows key features of amyloid pathology and reveals profound metabolic dysregulation of microglia.},
author = {Xia D and Lianoglou S and Sandmann T and Calvert M and Suh JH and Thomsen E and Dugas J and Pizzo ME and DeVos SL and Earr TK and Lin CC and Davis S and Ha C and Leung AW and Nguyen H and Chau R and Yulyaningsih E and Lopez I and Solanoy H and Masoud ST and Liang CC and Lin K and Astarita G and Khoury N and Zuchero JY and Thorne RG and Shen K and Miller S and Palop JJ and Garceau D and Sasner M and Whitesell JD and Harris JA and Hummel S and Gnörich J and Wind K and Kunze L and Zatcepin A and Brendel M and Willem M and Haass C and Barnett D and Zimmer TS and Orr AG and Scearce-Levie K and Lewcock JW and Di Paolo G and Sanchez PE},
year = {2022},
journal = {Molecular neurodegeneration},
doi = {10.1186/s13024-022-00547-7},
url = {https://doi.org/10.1186/s13024-022-00547-7}
}RIS
TY - JOUR TI - Novel App knock-in mouse model shows key features of amyloid pathology and reveals profound metabolic dysregulation of microglia. AU - Xia D AU - Lianoglou S AU - Sandmann T AU - Calvert M AU - Suh JH AU - Thomsen E AU - Dugas J AU - Pizzo ME AU - DeVos SL AU - Earr TK AU - Lin CC AU - Davis S AU - Ha C AU - Leung AW AU - Nguyen H AU - Chau R AU - Yulyaningsih E AU - Lopez I AU - Solanoy H AU - Masoud ST AU - Liang CC AU - Lin K AU - Astarita G AU - Khoury N AU - Zuchero JY AU - Thorne RG AU - Shen K AU - Miller S AU - Palop JJ AU - Garceau D AU - Sasner M AU - Whitesell JD AU - Harris JA AU - Hummel S AU - Gnörich J AU - Wind K AU - Kunze L AU - Zatcepin A AU - Brendel M AU - Willem M AU - Haass C AU - Barnett D AU - Zimmer TS AU - Orr AG AU - Scearce-Levie K AU - Lewcock JW AU - Di Paolo G AU - Sanchez PE PY - 2022 JO - Molecular neurodegeneration DO - 10.1186/s13024-022-00547-7 UR - https://doi.org/10.1186/s13024-022-00547-7 ER -
APA
D, X., S, L., T, S., M, C., JH, S., E, T., J, D., ME, P., SL, D., TK, E., CC, L., S, D., C, H., AW, L., H, N., R, C., E, Y., I, L., H, S., ST, M., CC, L., K, L., G, A., N, K., JY, Z., RG, T., K, S., S, M., JJ, P., D, G., M, S., JD, W., JA, H., S, H., J, G., K, W., L, K., A, Z., M, B., M, W., C, H., D, B., TS, Z., AG, O., K, S., JW, L., G, D. P., & PE, S. (2022). Novel App knock-in mouse model shows key features of amyloid pathology and reveals profound metabolic dysregulation of microglia.. Molecular neurodegeneration. https://doi.org/10.1186/s13024-022-00547-7
Source records
- pubmed · retrieved 2026-09-25T23:54:15.809Z