C12N2502/11

PROCESSES FOR PRODUCTION OF TUMOR INFILTRATING LYMPHOCYTES AND USES OF SAME IN IMMUNOTHERAPY
20220362301 · 2022-11-17 ·

The present invention provides improved and/or shortened methods for expanding TILs and producing therapeutic populations of TILs, including novel methods for expanding TIL populations in a closed system that lead to improved efficacy, improved phenotype, and increased metabolic health of the TILs in a shorter time period, while allowing for reduced microbial contamination as well as decreased costs. Such TILs find use in therapeutic treatment regimens.

PROCESSES FOR PRODUCTION OF TUMOR INFILTRATING LYMPHOCYTES AND USES OF THE SAME IN IMMUNOTHERAPY
20230172987 · 2023-06-08 ·

The present invention provides improved and/or shortened methods for expanding TILs and producing therapeutic populations of TILs, including novel methods for expanding TIL populations in a closed system that lead to improved efficacy, improved phenotype, and increased metabolic health of the TILs in a shorter time period, while allowing for reduced microbial contamination as well as decreased costs. Such TILs find use in therapeutic treatment regimens.

NOVEL PEPTIDES AND COMBINATION OF PEPTIDES FOR USE IN IMMUNOTHERAPY AGAINST VARIOUS CANCERS

The present invention relates to peptides, proteins, nucleic acids and cells for use in immunotherapeutic methods. In particular, the present invention relates to the immunotherapy of cancer. The present invention furthermore relates to tumor-associated T-cell peptide epitopes, alone or in combination with other tumor-associated peptides that can for example serve as active pharmaceutical ingredients of vaccine compositions that stimulate anti-tumor immune responses, or to stimulate T cells ex vivo and transfer into patients. Peptides bound to molecules of the major histocompatibility complex (MHC), or peptides as such, can also be targets of antibodies, soluble T-cell receptors, and other binding molecules.

METHOD FOR RESISTING AGING AND ENHANCING STEMNESS CHARACTERISTICS OF HUMAN MESENCHYMAL STEM CELLS

Disclosed is a method for resisting aging and enhancing stemness characteristics of human mesenchymal stem cells. Through co-culture of immune cells in human peripheral blood and aging human mesenchymal stem cells in cell-to-cell contact mode, the method can significantly reverse the aging characteristics of the aging human mesenchymal stem cells, including reducing expressions of cell aging markers such as β-galactosidase, P21 and P16 proteins, and can regulate the cell cycle of the aging human mesenchymal stem cells, specifically by reducing the number of cells in G1 phase and increasing the number of cells in S phase. More importantly, the method can significantly enhance the stemness characteristics of the aging human mesenchymal stem cells, such as abilities of self-renewal, proliferation and multidirectional differentiation potential, and the cells obtained by the culture method are used to treat disease models, which is safe and effective. The present invention can be directly applied to long-term in vitro expansion of the human mesenchymal stem cells, solves the problem of cell aging in the expansion process, restores cell vitality, and improves clinical application effects.

Immunotherapy against melanoma and other cancers

The present invention relates to peptides, proteins, nucleic acids and cells for use in immunotherapeutic methods. In particular, the present invention relates to the immunotherapy of cancer. The present invention furthermore relates to tumor-associated T-cell peptide epitopes, alone or in combination with other tumor-associated peptides that can for example serve as active pharmaceutical ingredients of vaccine compositions that stimulate anti-tumor immune responses, or to stimulate T cells ex vivo and transfer into patients. Peptides bound to molecules of the major histocompatibility complex (MHC), or peptides as such, can also be targets of antibodies, soluble T-cell receptors, and other binding molecules.

Cell culture medium
09790464 · 2017-10-17 · ·

The present invention relates to a cell culture medium for culturing human cells comprising an anti-coagulated total blood material wherein the hemoglobin level is from about 8 to about 16 g/dl. More particularly, the invention provides a cell culture medium in which cells present in the blood are disrupted and the insoluble remnants of the lysated cells are removed. Further, the invention provides a method for the preparation of a cell culture medium for culturing human cells, according to the invention.

Engineered artificial antigen presenting cells for tumor infiltrating lymphocyte expansion

In some embodiments, compositions and methods relating to isolated artificial antigen presenting cells (aAPCs) are disclosed, including aAPCs comprising a myeloid cell transduced with one or more viral vectors, such as a MOLM-14 or a EM-3 myeloid cell, wherein the myeloid cell endogenously expresses HLA-AB/C, ICOS-L, and CD58, and wherein the one or more viral vectors comprise a nucleic acid encoding CD86 and a nucleic acid encoding 4-1BBL and/or OX40L and transduce the myeloid cell to express CD86 and 4-1BBL and/or OX40L proteins. In some embodiments, methods of expanding tumor infiltrating lymphocytes (TILs) with aAPCs and methods of treating cancers using TILs after expansion with aAPCs are also disclosed.

A HUMAN LIVER MICROPHYSIOLOGY PLATFORM AND SELF ASSEMBLY LIVER ACINUS MODEL AND METHODS OF THEIR USE
20170292117 · 2017-10-12 ·

Microfluidic devices for modeling three-dimensional tissue structures and methods for making and using the same are described herein.

Processes for production of tumor infiltrating lymphocytes and uses of same in immunotherapy

The present invention provides improved and/or shortened methods for expanding TILs and producing therapeutic populations of TILs, including novel methods for expanding TIL populations in a closed system that lead to improved efficacy, improved phenotype, and increased metabolic health of the TILs in a shorter time period, while allowing for reduced microbial contamination as well as decreased costs. Such TILs find use in therapeutic treatment regimens.

Processes for production of tumor infiltrating lymphocytes and uses of same in immunotherapy

The present invention provides improved and/or shortened methods for expanding TILs and producing therapeutic populations of TILs, including novel methods for expanding TIL populations in a closed system that lead to improved efficacy, improved phenotype, and increased metabolic health of the TILs in a shorter time period, while allowing for reduced microbial contamination as well as decreased costs. Such TILs find use in therapeutic treatment regimens.