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Trispecific antibody targeting HIV-1 and T cells activates and eliminates latently-infected cells in HIV/SHIV infections
by
Fabozzi, Giulia
, March, Kylie
, Connors, Mark
, Levit, Mikhail
, Wei, Ronnie R.
, Rao, Ercole
, Birkenfeld, Joerg
, Yang, Zhi-yong
, Promsote, Wanwisa
, DeMouth, Megan E.
, Petrovas, Constantinos
, Koup, Richard A.
, Beninga, Jochen
, McKee, Krisha
, Lovelace, Sarah E.
, Talana, Chloe Adrienna
, Todd, John-Paul
, McCarthy, Elizabeth
, Pegu, Amarendra
, Casazza, Joseph P.
, Mascola, John R.
, Shen, Junqing
, Hataye, Jason
, Hait, Sabrina Helmold
, Nabel, Gary J.
, Doria-Rose, Nicole A.
, Hebert, Andrew T.
, Furtmann, Norbert
, Almasri, Cassandra G.
, Beck, Jeremy
, Ambrozak, David
, Zhang, Bailin
, Xu, Ling
in
101/1
/ 631/326/22/1295
/ 631/326/596/1787
/ 631/326/596/2564
/ 692/308
/ 692/699
/ Animals
/ Antibodies
/ Antigens
/ Antiretroviral therapy
/ Binding sites
/ CD28 antigen
/ CD3 antigen
/ CD4 antigen
/ CD4-Positive T-Lymphocytes
/ CD8 antigen
/ CD8-Positive T-Lymphocytes
/ Cell activation
/ HIV
/ HIV Antibodies
/ HIV Infections
/ HIV-1
/ Human immunodeficiency virus
/ Humanities and Social Sciences
/ Lymphocytes
/ Lymphocytes T
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
/ Virus Latency
2023
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Trispecific antibody targeting HIV-1 and T cells activates and eliminates latently-infected cells in HIV/SHIV infections
by
Fabozzi, Giulia
, March, Kylie
, Connors, Mark
, Levit, Mikhail
, Wei, Ronnie R.
, Rao, Ercole
, Birkenfeld, Joerg
, Yang, Zhi-yong
, Promsote, Wanwisa
, DeMouth, Megan E.
, Petrovas, Constantinos
, Koup, Richard A.
, Beninga, Jochen
, McKee, Krisha
, Lovelace, Sarah E.
, Talana, Chloe Adrienna
, Todd, John-Paul
, McCarthy, Elizabeth
, Pegu, Amarendra
, Casazza, Joseph P.
, Mascola, John R.
, Shen, Junqing
, Hataye, Jason
, Hait, Sabrina Helmold
, Nabel, Gary J.
, Doria-Rose, Nicole A.
, Hebert, Andrew T.
, Furtmann, Norbert
, Almasri, Cassandra G.
, Beck, Jeremy
, Ambrozak, David
, Zhang, Bailin
, Xu, Ling
in
101/1
/ 631/326/22/1295
/ 631/326/596/1787
/ 631/326/596/2564
/ 692/308
/ 692/699
/ Animals
/ Antibodies
/ Antigens
/ Antiretroviral therapy
/ Binding sites
/ CD28 antigen
/ CD3 antigen
/ CD4 antigen
/ CD4-Positive T-Lymphocytes
/ CD8 antigen
/ CD8-Positive T-Lymphocytes
/ Cell activation
/ HIV
/ HIV Antibodies
/ HIV Infections
/ HIV-1
/ Human immunodeficiency virus
/ Humanities and Social Sciences
/ Lymphocytes
/ Lymphocytes T
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
/ Virus Latency
2023
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Trispecific antibody targeting HIV-1 and T cells activates and eliminates latently-infected cells in HIV/SHIV infections
by
Fabozzi, Giulia
, March, Kylie
, Connors, Mark
, Levit, Mikhail
, Wei, Ronnie R.
, Rao, Ercole
, Birkenfeld, Joerg
, Yang, Zhi-yong
, Promsote, Wanwisa
, DeMouth, Megan E.
, Petrovas, Constantinos
, Koup, Richard A.
, Beninga, Jochen
, McKee, Krisha
, Lovelace, Sarah E.
, Talana, Chloe Adrienna
, Todd, John-Paul
, McCarthy, Elizabeth
, Pegu, Amarendra
, Casazza, Joseph P.
, Mascola, John R.
, Shen, Junqing
, Hataye, Jason
, Hait, Sabrina Helmold
, Nabel, Gary J.
, Doria-Rose, Nicole A.
, Hebert, Andrew T.
, Furtmann, Norbert
, Almasri, Cassandra G.
, Beck, Jeremy
, Ambrozak, David
, Zhang, Bailin
, Xu, Ling
in
101/1
/ 631/326/22/1295
/ 631/326/596/1787
/ 631/326/596/2564
/ 692/308
/ 692/699
/ Animals
/ Antibodies
/ Antigens
/ Antiretroviral therapy
/ Binding sites
/ CD28 antigen
/ CD3 antigen
/ CD4 antigen
/ CD4-Positive T-Lymphocytes
/ CD8 antigen
/ CD8-Positive T-Lymphocytes
/ Cell activation
/ HIV
/ HIV Antibodies
/ HIV Infections
/ HIV-1
/ Human immunodeficiency virus
/ Humanities and Social Sciences
/ Lymphocytes
/ Lymphocytes T
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
/ Virus Latency
2023
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Trispecific antibody targeting HIV-1 and T cells activates and eliminates latently-infected cells in HIV/SHIV infections
Journal Article
Trispecific antibody targeting HIV-1 and T cells activates and eliminates latently-infected cells in HIV/SHIV infections
2023
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Overview
Agents that can simultaneously activate latent HIV, increase immune activation and enhance the killing of latently-infected cells represent promising approaches for HIV cure. Here, we develop and evaluate a trispecific antibody (Ab), N6/αCD3-αCD28, that targets three independent proteins: (1) the HIV envelope via the broadly reactive CD4-binding site Ab, N6; (2) the T cell antigen CD3; and (3) the co-stimulatory molecule CD28. We find that the trispecific significantly increases antigen-specific T-cell activation and cytokine release in both CD4
+
and CD8
+
T cells. Co-culturing CD4
+
with autologous CD8
+
T cells from ART-suppressed HIV
+
donors with N6/αCD3-αCD28, results in activation of latently-infected cells and their elimination by activated CD8
+
T cells. This trispecific antibody mediates CD4
+
and CD8
+
T-cell activation in non-human primates and is well tolerated in vivo. This HIV-directed antibody therefore merits further development as a potential intervention for the eradication of latent HIV infection.
One of the main hurdles to curing HIV infection are viral reservoirs. Here, the authors develop a trispecific antibody and demonstrate its ability to simultaneously activate and target latently HIV−1 infected cells for elimination by T cells as an alternative strategy for HIV cure.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
/ 692/308
/ 692/699
/ Animals
/ Antigens
/ HIV
/ HIV-1
/ Human immunodeficiency virus
/ Humanities and Social Sciences
/ Science
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