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Apoorvi Chaudhri
Apoorvi Chaudhri
Dana Farber Cancer Institute
Verified email at dfci.harvard.edu
Title
Cited by
Cited by
Year
PD-L1 binds to B7-1 only in cis on the same cell surface
A Chaudhri, Y Xiao, AN Klee, X Wang, B Zhu, GJ Freeman
Cancer immunology research 6 (8), 921-929, 2018
1652018
A secreted PD-L1 splice variant that covalently dimerizes and mediates immunosuppression
KM Mahoney, SA Shukla, N Patsoukis, A Chaudhri, EP Browne, A Arazi, ...
Cancer Immunology, Immunotherapy 68, 421-432, 2019
1192019
Interaction of SHP-2 SH2 domains with PD-1 ITSM induces PD-1 dimerization and SHP-2 activation
N Patsoukis, JS Duke-Cohan, A Chaudhri, HI Aksoylar, Q Wang, ...
Communications biology 3 (1), 128, 2020
1102020
Emerging concepts in PD-1 checkpoint biology
KE Pauken, JA Torchia, A Chaudhri, AH Sharpe, GJ Freeman
Seminars in immunology 52, 101480, 2021
1062021
Cytotoxicity of TiO2 nanoparticles and their detoxification in a freshwater system
S Dalai, S Pakrashi, MJ Nirmala, A Chaudhri, N Chandrasekaran, ...
Aquatic Toxicology 138, 1-11, 2013
922013
Microbially derived pectinases: A review
A Chaudhri, V Suneetha
IOSR J Pharm Biol Sci 2 (2), 1-5, 2012
512012
31st annual meeting and associated programs of the society for immunotherapy of cancer (Sitc 2016): Part two: National harbor, md, USA. 9-13 November 2016
C Ager, M Reilley, C Nicholas, T Bartkowiak, A Jaiswal, M Curran, ...
Journal for ImmunoTherapy of Cancer 4, 107-221, 2016
21*2016
PD-L1 binds to B7-1 only in cis on the same cell surface. Cancer Immunol. Res. 2018; 6: 921–929. doi: 10.1158/2326-6066
A Chaudhri, Y Xiao, AN Klee, X Wang, B Zhu, GJ Freeman
CIR-17-0316.[Europe PMC free article][Abstract][CrossRef][Google Scholar], 0
17
Screening and Identification of degradable products by pectin lyase producing Actinomycetes from katpadi and chittoor fruit industrial waste enriched soil samples
RK V Suneetha, M Bishwambhar, R Gopinath, SR Shrestha, Gaurav KB Kartik, C ...
Asian Journal of Microbiology, Biotechnology & Environmental Sciences Paper …, 2012
16*2012
Microbial Derived Pectinases: A Review
C Apoorvi, S Vuppu
IOSR Journal of Pharmaceutical and Biological Sciences, 2 (2), 1-5, 2012
102012
PD-L1 Binds to B7-1 Only In Cis on the Same Cell Surface. Cancer Immunol Res 6: 921–929
A Chaudhri, Y Xiao, AN Klee, X Wang, B Zhu, GJ Freeman
52018
Enhancer reprogramming in melanoma immune checkpoint therapy resistance
M Maitituoheti, A Shi, M Tang, LL Ho, C Terranova, K Galani, EZ Keung, ...
bioRxiv, 2022.08. 31.506051, 2022
32022
The B7: CD28 family and friends: Unraveling coinhibitory interactions
KP Burke, A Chaudhri, GJ Freeman, AH Sharpe
Immunity 57 (2), 223-244, 2024
12024
The CX3CL1-CX3CR1 chemokine axis can contribute to tumor immune evasion and blockade with a novel CX3CR1 monoclonal antibody enhances response to anti-PD-1 immunotherapy
A Chaudhri, X Bu, Y Wang, M Gomez, JA Torchia, P Hua, SH Hung, ...
Frontiers in immunology 14, 1237715, 2023
12023
IMMU-15. PD-1 BLOCKADE ACTIVATES CD4 T CELLS AND THE INNATE IMMUNE RESPONSE FOR GLIOBLASTOMA ERADICATION
SR Klein, MC Speranza, PC Gokhale, MK Wilkens, KL Jones, ...
Neuro-Oncology 19 (Suppl 6), vi115, 2017
12017
Chromatin Remodelers Are Regulators of the Tumor Immune Microenvironment
A Chaudhri, G Lizee, P Hwu, K Rai
Cancer Research, 2024
2024
808 The CX3CL1-CX3CR1 chemokine axis can contribute to tumor immune evasion and blockade with a novel CX3CR1 monoclonal antibody enhances responses to anti-PD-1 immunotherapy
A Chaudhri, X Bu, Y Wang, P Hua, SH Hung, MA Davies, GA Lizee, ...
Journal for ImmunoTherapy of Cancer 11 (Suppl 1), 2023
2023
Functional roles of enhancers in immune microenvironment & immunotherapy response
K Rai, M Maitituoheti, A Shi, M Tang, LL Ho, FY Kreidieh, C Terranova, ...
Cancer Research 83 (7_Supplement), 6425-6425, 2023
2023
The Cx3Cl1-Cx3Cr1 Chemokine Axis Contributes To Tumor Immune Evasion And Its Blockade Enhances Responses To Anti-Pd-1 Immunotherapy
A Chaudhri
2023
Methods for treating cancer using combinations of anti-cx3cr1 and immune checkpoint blockade agents
GJ Freeman, A Chaudhri
US Patent App. 17/606,585, 2022
2022
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Articles 1–20