Compounds that selectively bind to membranes of apoptotic cells
The invention relates to compounds that selectively bind to phospholipid membranes having the features of membranes of apoptotic cells, pharmaceutical compositions comprising the same and therapeutic and diagnostic methods using thereof.
1. A compound having the structure represented by formula (V):
including pharmaceutically acceptable salts and optical isomers of the structure of formula (V), wherein R 3 , R 4 and R 6 may be the same or different, and are each selected from hydrogen; C 1 , C 2 , C 3 , C 4 , C 5 or C 6 alkyl; C 1 , C 2 , C 3 , C 4 , C 5 or C 6 hydroxyalkyl; and C 1 , C 2 , C 3 , C 4 , C 5 or C 6 fluoroalkyl.
2. A compound according to claim 1 , wherein R 3 and R 4 are each a hydrogen and R 6 are each a butyl.
3. A compound according to claim 1 having the structure represented by formula (VI):
including pharmaceutically acceptable salts and optical isomers of the structure of formula (VI), wherein b stands for an integer of 2, 3, 4, 5 or 6.
4. A compound according to claim 1 having the structure represented by formula (VII):
including pharmaceutically acceptable salts and optical isomers of the structure of formula (VII), wherein m and n each stands independently for an integer of 1, 2, 3 or 4, and k stands for an integer of 2, 3, 4 or 5.
5. A conjugate comprising a compound according to claim 1 , being linked either directly or through a linker to a marker for imaging, a pharmaceutically-useful drug or a solid support, wherein said linker is selected from C 1 , C 2 , C 3 or C 4 , C 5 or C 6 alkylene, 5 or 6 atom aromatic or heteroaromatic ring, a metal chelator and combinations thereof.
6. A conjugate according to claim 5 , wherein the marker for imaging is for detection by fluorescence, X-ray, computerized tomography (CT scan), magnetic resonance imaging (MRI), radio-isotope scan, single photon emission tomography (SPECT) or positron emission tomography (PET scan).
7. A conjugate according to claim 5 , wherein the marker for imaging is Gd, or a radioisotope of a metal selected from Tc, In, Cu, Ga, Xe, Tl and Re, or a radioisotope selected from 18 F, 15 O, 18 O, 11 C, 13 C, 124 I, 13 N and 75 Br for PET, and 123 I, 131 I for SPECT.
8. A conjugate according to claim 5 , wherein the marker for imaging is 99m Tc═O for SPECT.
9. A method for the detection of PSE-cells within a cell population comprising:
(i) contacting a cell population with a compound according to claim 1 ; and
(ii) determining the amount of said compound bound to cells, wherein a significant amount of said compound bound to a cell within said cell population indicates its being a PSE cell.
10. A method for the detection of PSE-cells in a patient or an animal, the method comprising:
(i) administering a compound according to claim 1 to the patient or animal; and
(ii) imaging the patient or animal, so as determine the amount of said compound bound to cells, wherein a significant amount of said compound bound to a cell within a cell population indicates its being a PSE-cell.
11. A method for selective targeting of a compound to a PSE cell within a cell population, comprising the step of contacting the cell population comprising said PSE-cell with a compound according to claim 1 , thereby selectively targeting the compound to said PSE-cell within said cell population.
12. A method of targeting anticancer drugs to foci of apoptotic cells in a tumor, the method comprising the step of administering a conjugate according to claim 5 , comprising a cytotoxic drug, thereby achieving targeting of said drug to the foci of apoptotic cells in said tumor.
13. A method for the detection of PSE-cells within a cell population comprising:
(i) contacting a cell population with a conjugate according to claim 5 ; and
(ii) determining the amount of said conjugate bound to cells, wherein a significant amount of said conjugate bound to a cell within said cell population indicates its being a PSE cell.
14. A method for the detection of PSE-cells in a patient or an animal, the method comprising:
(i) administering a conjugate according to claim 5 to the patient or animal; and
(ii) imaging the patient or animal, so as to determine the amount of said conjugate bound to cells, wherein a significant amount of said conjugate bound to a cell within said cell population indicates its being a PSE-cell.
15. A method for selective targeting of a conjugate to a PSE cell within a cell population, comprising the step of contacting the cell population comprising said PSE-cell with a conjugate according to claim 5 , thereby selectively targeting the conjugate to said PSE-cell within said cell population.