ENRICHMENT OF NKX6.1 AND C-PEPTIDE CO-EXPRESSING CELLS DERIVED IN VITRO FROM STEM CELLS
The present invention relates to method of enriching NKX6.1 and C-peptide co-expressing cell aggregates derived in vitro from stem cells said method comprising the steps of dissociating the endocrine cell aggregates into single cells, treating the single cells with cryopreservation medium and lowering temperature to obtain cryopreserved cells, thawing the cryopreserved cells; and re-aggregating the cells obtained after thawing into endocrine cells.
1 . A method of cryopreserving pancreatic endocrine cell aggregates derived in vitro from stem cells comprising the following steps:
(i) dissociating said pancreatic endocrine cell aggregates into single cells;
(ii) treating said single cells with cryopreservation medium and lowering temperature to obtain cryopreserved single cells.
2 . The method of cryopreserving pancreatic endocrine cell aggregates according to claim 1 , wherein said endocrine cells are endocrine cells co-expressing NKX6.1 and C-peptide or endocrine progenitor cells co-expressing NKX2.2 and NKX6.1.
3 . A method of enriching endocrine cell aggregates derived in vitro from stem cells with endocrine cells co-expressing NKX6.1 and C-peptide or with endocrine progenitor cells co-expressing NKX2.2 and NKX6.1 said method comprising the following steps:
(i) dissociating said endocrine cell aggregates into single cells;
(ii) treating said single cells with cryopreservation medium and lowering temperature to obtain cryopreserved endocrine cells,
(iii) thawing said cryopreserved endocrine cells; and
(iv) re-aggregating said endocrine cells obtained after thawing;
4 . The method of enriching endocrine cell aggregates according to claim 3 , wherein said endocrine cells of step (i) are endocrine cells co-expressing NKX6.1 and C-peptide or endocrine progenitor cells co-expressing NKX2.2 and NKX6.1.
5 . The method of enriching endocrine cell aggregates according to claim 4 , wherein when said endocrine cells of step (i) are endocrine progenitor cells co-expressing NKX2.2 and NKX6.1, said method further comprises a step (v) of differentiating said endocrine progenitor cells co-expressing NKX2.2 and NKX6.1 into endocrine cell aggregates co-expressing NKX6.1 and C-peptide.
6 . The method according to claim 1 , wherein said stem cells are embryonic stem cells, preferentially human embryonic stem cells.
7 . Cryopreserved single endocrine cells co-expressing NKX2.2 and NKX6.1 or co-expressing NKX6.1 and C-peptide.
8 . Cryopreserved single endocrine cells obtained according to the method of cryopreserving according to claim 1 .
9 . Cryopreserved single endocrine cells according to claim 7 for use in the transplantation into a subject or for use in treating diabetes.
10 . Re-aggregated endocrine cells comprising at least 50%, preferentially at least 60%, more preferentially at least 70%, even more preferentially at least 80% of endocrine cells co-expressing NKX6.1 and C-peptide or endocrine progenitor cells co-expressing NKX2.2 and NKX6.1.
11 . Re-aggregated endocrine cells obtained according to the method of enriching endocrine cell aggregates according to claim 3 .
12 . Re-aggregated endocrine cells according to claim 10 for use in the transplantation into a subject or for use in treating diabetes or for use as a medicament.
13 . Composition containing re-aggregated endocrine cells according to claim 10 for use in the transplantation into a subject or for use in treating diabetes or for use as a medicament.
14 . Medicament containing re-aggregated endocrine cells according to claim 12 .
15 . (canceled)