Induction of Antigen Specific Immunological Tolerance Using Inducible Pluripotent Stem Cell Derived Veto Cells
US-2024374723-A1 · Nov 14, 2024 · US
US10731129B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10731129-B2 |
| Application number | US-201314383358-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 7, 2013 |
| Priority date | Mar 7, 2012 |
| Publication date | Aug 4, 2020 |
| Grant date | Aug 4, 2020 |
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Artificial tissue constructs (TCs), methods of making the TCs, uses thereof, and kits comprising the TCs are provided. TCs are useful for vaccine evaluation for human adult, human non-newborn, and newborns.
Opening claim text (preview).
The invention claimed is: 1. A method comprising: a) obtaining autologous human CD4+CD45RA+CD4RO negative naïve newborn human T cells from a subject; b) co-culturing the autologous human CD4+CD45RA+CD4RO negative naïve newborn human T cells with a first population of human dendritic cells in the presence of human non-heat activated platelet-poor plasma; c) incubating the co-culture of dendritic cells and naïve T cells at least 7 days, about 7 days, or about 7-15 days sufficient to cause activation of the CD4+CD45RA+CD4RO negative naïve T cells to become CD4+CD45RO+ activated T cells; d) introducing to the CD4+CD45RO+ activated T cells from the culture of step b to a second population of human dendritic cells in the presence of human platelet-poor plasma and Bacille Calmette-Guérin (BCG), Pneumococcal conjugate vaccine (PCV), and/or Hepatitis B vaccine (HBV), and a stimulating agent; e) co-culturing the second population of dendritic cells and the CD4+CD45RO+ activated T cells of step c for a period of time; f) analyzing the co-culture media from step d to assess the stimulating agent's reactogenicity by comparing the lymphocyte proliferation of the BCG, PCV, HCV and stimulating agent samples and determining if the stimulating agent stimulated lymphocyte proliferation is at least as detected for the PCV sample; and g) further analyzing the co-culture of step d for Th2 polarization of neonatal immune responses by detecting the IL-4 secretion in the BCG, PCV, HBV and stimulating agent samples and determining if the stimulating agent is at least as potent to stimulate secretion of IL-4 as detected as for the PCV sample; h) assessing the determination of steps e and f and if the stimulating agent stimulated the lymphocyte proliferation at least as detected as for the PCV sample and the I1-4 secretion is at least as for the PCV sample, thereby determining reactogenicity and Th2 polarization of the stimulating agent; and i) administering the stimulating agent to the subject when the reactogenicity and Th2 polarization of the stimulating agent is determined to be less than that of PCV. 2. The method of claim 1 , wherein (A) (i) the human CD4+CD45RA+naïve T cells are newborn cells and are CD45RO negative, or (ii) the human CD4+CD45RA+naïve T cells are newborn cells, the dendritic cells and the human newborn platelet poor plasma are autologous, meaning they come from one donor, and/or (B) the human platelet poor plasma is not heat inactivated, and/or (C) (i) the period of time sufficient to cause activation of the naïve T cells in culture is at least one day, and/or (ii) the method further comprises analyzing the cells of step (e) for cell proliferation wherein an increase in cell proliferation or cell number over that in the absence of added dendritic cells indicates that the antigen is effective in stimulating human naïve antigen-specific immune response and/or, (D) the stimulating agent is a vaccine to be evaluated, and/or (E) the stimulating agent being evaluated is the stimulating agent used in vitro to produce the first and second population of human dendritic cells, and/or (F) the method further comprises challenging the cells in culture of step (d) with a third population of human dendritic cells prior to analysis for cytokines and/or cell proliferation, wherein the third population of human dendritic cells were exposed to the same stimulating agent as the first and second population of human newborn dendritic cells in steps (a) and (d), optionally wherein the third population of human dendritic cells is also produced with the same stimulating agent being evaluated, and/or (G) the cytokine analyzed is selected from a group consisting of IL-1, IL-10, IL-12, IL-2, IL-4, IFN-gamma and TNF-alpha. 3. The method of claim 1 , wherein the population of human dendritic cells is prepared by an in vitro method comprising: a) introducing an agent in the presence of human platelet-poor plasma to a tissue construct, wherein the tissue construct comprising: i. a cushion of extracellular matrix; ii. a monolayer human endothelial cells on the top of the cushion wherein the human endothelial cells were cultured to a monolayer in human serum albumin; and iii. human mononuclear cells (MCs) that have extravasated through the monolayer of human endothelial cells and are embedded and colonized the cushion of extracellular matrix; b) incubating the tissue culture for a period of time sufficient for the extravasated human MCs to reverse-transmigrate across the monolayer of human endothelial cells; and c) collecting the reverse-transmigrated human MCs which have developed into antigen-presenting dendritic cells in the presence of the agent. 4. The method of claim 3 , wherein (A) the human MCs are human CD 33+ and/or CD14+ monocytes, optionally wherein the human CD 33+ and/or CD14+ monocytes are from one donor, optionally wherein the human CD 33+ and/or CD14+ monocytes are not pooled from more than one donor, and/or (B) the human CD 33+ and/or CD14+ monocytes are obtained from human umbilical cord blood, and/or (C) the human serum albumin is pyrogen-free, and/or (D) the human serum albumin is clinical grade human serum albumin, and/or (E) the human MCs are not cultured in the presence of exogenous cytokines or immune response stimulating agent, and/or (F) the human MCs are not cultured in the presence of GM-CSF, and/or (G) the human MCs are not cultured in the presence of IL-4, and/or (H) the human CD 33+ and/or CD14+ monocytes or human MCs and the human platelet poor plasma are autologous, meaning they come from one donor, and/or (I) the human CD 33+ and/or CD14+ monocytes are obtained from human umbilical cord blood, and/or (J) the human CD 33+ and/or CD14+ monocytes has been previously been cryopreserved, and/or (K) the agent is any agent that can induce or stimulate development and transformation of the human MCs to antigen-presenting dendritic cells, optionally wherein the agent is a vaccine or an adjuvant, and/or wherein the agent is a pathogen, optionally wherein the pathogen is a fragment or an incomplete portion thereof or a whole intact pathogen, and/or (L) the agent is any agent that is to be tested for its ability to induce or stimulate development and transformation of the human MCs to antigen-presenting dendritic cells, and/or (M) the human platelet poor plasma is not heat inactivated, and/or (N) the human platelet poor plasma is used at least at 50% in step b, and/or (O) the human platelet poor plasma is used at about 50%-100% in step b, and/or (P) the human platelet poor plasma is used at 100% in step b, and/or (Q) the period of time sufficient to allow reverse-transmigration of the MCs across the monolayer of endothelial cells is at least 24 h, and/or (R) the period of time sufficient to allow reverse-transmigration of the MCs across the monolayer of endothelial cells is about 24-48 h, and/or (S) the period of time sufficient to allow reverse-transmigration of the MCs across the monolayer of endothelial cells is 48 h, and/or (T) the human plasma, human newborn platelet poor plasma or human serum albumin does not contain a chelating agent, and/or (U) the human plasma, human platelet poor plasma or human serum albumin is prepared with heparin, and/or (V) the human plasma, human platelet poor plasma or human serum albumin is prepared in the absence of a chelating agent. 5. The method of claim 3 , wherein (A) the cushion of extracellular matrix comprises collagen, optionally, (i) wherein the collagen is human collagen, optionally wherein the human collagen is human Type 1 collagen, and/or wherein the collagen is glycated or wherein the cushion of extracellular matrix further comprising fibronectin, optionally wherein the fibronectin is human fibronectin, and/or wherein the h
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