Nova Patents
IL284501A

Modulation of splenocytes in cell therapy

Abstract

This record has no abstract on file.

IL284501A, drawing sheet 1
Sheet 1 of 47

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

16 claims: 8 independent, 8 dependent

  1. 1
    L A method for treating inflammation in a subject with an injury, the method comprising selecting cells that have a desired potency for (1) preserving splenic mass in an injury, (2) increasing splenocyte proliferation in the spleen, (3) increasing CDA and CD8 + T-cells, (4) increasing one or more of IL-10 and IL-4, (5) decreasing IL-6 and/or IL-Ιβ, (6) modulating macrophage activation;and administering the cells having the desired potency for (1) - (6) to the subject in a therapeutically effective amount and for a time sufficient to achieve (1)-(6) in the subject, the cells being nonembryonic, ποη-germ cells that express one or more of 0ct4, telomerase, rex-1, or rox-l and/or can differentiate into cell types of at least two of endodermal, ectodermal, and mesodermal germ layers.
  2. 2
    A method for constructing a cell bank, said method comprising selecting cells that have a desired potency for (1) preserving splenic mass in an injury;(2) increasing splenocyte proliferation in the spleen, (3) increasing CD4 + and CD8 + T-cells, (4) increasing one or more of IL-10 and IL-4, (5) decreasing IL-6 and/or IL-Ιβ, (6) modulating macrophage activation;and expanding and storing the cells for future administration to a subject the cells being non-embryonic, noa-germ cells that express one or more of oct4, telomerase, rex-1, or rox-l and/or can differentiate into cell types of at least two of endodermal, ectodermal, and mesodermal germ layers.
  3. 3
    A method for drug discovery, said method comprising selecting cells that have a desired potency for (1) preserving splenic mass in an injury, (2) increasing splenocyte proliferation in the spleen, (3) increasing CD4‘ and CD8 + T-cells, (4) increasing one or more of IL-10 and IL-4, (5) decreasing IL-6 and/or IL-Ιβ, (6) modulating macrophage activation;and exposing the cells to an agent to assess the effect of the agent on the ability of the cells to effect (1) - (6), the cells being nonembryonic, non-germ cells that express one or more of 0ct4, telomerase, rex-1, or rox-l and/or can differentiate into cell types of at least two of endodermal, ectodermal, and mesodermal germ layers.
  4. 4
    A method for modulating macrophage activation in an injured subject, the method comprising selecting cells that have a desired potency for (1) preserving splenic mass in an injury;(2) increasing splenocyte proliferation in the spleen, (3) increasing CD4^ and CDS' T-cells, (4) increasing one or more of IL-10 and IL-4, (5) decreasing IL-6 and/or IL-Ιβ, (6) modulating macrophage activation;and administering the cells having the desired potency for (1) - (6) to the subject in a therapeutically effective amount and for a time sufficient to achieve a therapeutic result, the cells being nonembryonic, non-germ cells that express one or more of oct4, telomerase, rex-1, or rox-l and/or can differentiate into cell types of at least two of endodermal, ectodermal, and mesodermal germ layers.
  5. 5
    A method for establishing a therapeutic regimen in a subject with a condition involving macrophage Ml :M2 polarization, die method comprising (1) establishing a baseline in the subject for any of the following measurements: (1) splenic mass, (2) CD4' lymphocytes, (3) CD8 + lymphocytes. (4) IL-10, (5) IL-4, (6) Ml macrophages. (7) M2 macrophages, (8) IL-6, (9) IL-Ιβ, and (10) T-regulatory cells, administering cells in an amount and for a time sufficient to allow the cells to interact with resident splenocytes in the spleen, assaying the subject for one or more of (1) - (10), wherein the cells that are administered are non-embtyonic non-germ cells that express one or more of 0ct4, telomerase, rex-1 or rox-1 and/or can differentiate into cell type of at least two of endodermal ectodermal, and mesodermal germ layers,
  6. 6
    A method for determining a therapeutically effective amount of cells administered to a subject, the cells being non-embryonic non-germ cells that express one or more of 0ct4, telomerase, rex-L or rox-1, and/or can differentiate into cell types of at least two of endodermal, ectodermal, or mesodermal germ layers, the method comprising (1) assessing one or more in vivo biomarkers, the biomarkers including (1) a factor secreted by activated macrophages in a subject tn vivo, and/or (2) the numbers of activated macrophages in the circulation of the subject, (3) splenic mass, (4) CD4 + Tcells, (5) CDS 4 * T-cells, (6) IL-4, (7) IL-10, (8) IL-6, and (9) IL-1 β, following administration of tire cells to the subject.
  7. 7
    A method for optimizing a route of administration for cell therapy in a subject with an injury׳, the method comprising, ascertaining splenic involvement by measuring splenic mass, and, where splenic mass is decreased, administering the cells by a route in which the administered cells interact with splenocytes in the subject’s spleen.
  8. 8
    A method to determine the use of stem cell therapy in a subject with an injury, the method comprising ascertaining splenic involvement in the subject and, where there is splenic involvement, administrating the cells.
  9. 10
    The method of any of claims 1 and 4-8 in which the cells are administered intravenously.
  10. 11
    The method of any of claims 1 and 4-6 in which the injury is stroke.
  11. 13
    The method of any of claims 1 and 4-6, in which the administered cells increase neuroprotective and/or decrease neurotoxic activation of macrophages.
  12. 14
    The method of claims 1 and 4-8, in which the subject is human.
  13. 15
    The method of claims 1 and 4-8, in which the injury selected from the group consisting of acute and chronic conditions in cardiovascular, e.g., acute myocardial infarction;central nervous system injury, e.g., stroke;peripheral vascular disease;pulmonary, e.g., asthma, ARDS;autoimmune, e.g., rheumatoid arthritis, multiple sclerosis, lupus, sclerodoma;psoriasis;gastrointestinal, e.g., graft versus-host-disease, Crohn’s disease, diabetes, ulcerative colitis, acute and chronic transplantation rejection, dermatitis, colitis, alveolitis, bronchiolitis obliterans, ileitis, pancreatitis, glomerulonephritis, uveitis, arthritis, hepatitis, enteritis, ischemic stroke, multiple sclerosis, Alzheimer’s Disease, ALS, Parkinson’s Disease, hypoxic-ischemia, neonatal hypoxic ischemia, and traumatic brain or spinal cord injury.