FATTY ACIDS AS ANTI-INFLAMMATORY AGENTS
A class of enzymatically generated electrophilic fatty acid derivatives (EFADs), or their enzymatically generated metabolites. The EFAD's and their metabolites have beneficial effects human health. According to the inventors the inventive keto fatty acids or their enzymatically generated metabolites, can inhibit inflammation by giving rise to adaptive signaling molecules in vivo.
1 . A pharmaceutical formulation comprising (a) a fatty acid according to Formula (I) or Formula (II),
wherein
X is selected from the group consisting Of-CH2—, —OH, —S, —OR t and —NR p R q ;
Y is selected from the group consisting of —C(O)—, O, —S—, and —NR p R q ;
W is selected from the group consisting of —OH, —H, —C(O)H, —C(O), —C(O)R p , —COOH, —COOR p , —Cl, —Br, —I, —F, —CF 3 , —CN, SR u , SR p , —SO 3 , —SO 2 R p , —SO 3 H, —NH 3 + , —NH 2 R p+ , —NR p R q R t , NO 2 , =0, ═NR P , ═CF 2 , and —CHF;
V is —CH— when W is selected from the group consisting of —OH, —H, —C(O)H, —C(O), —C(O)R p , —COOH, —COOR p , —Cl, —Br, —I, —F, —CF3, —CN, —SO 3 , —SO 2 R p , —SO 3 H, —NH 3 + , —NH 2 R p+ , —NR p R q R t and NO 2 and V is —C— when W is selected from the group consisting of =0, ═NR p , ═CF 2 , and ═CHF;
a, b, c, d, e, f, g, h and i independently are integers between 0 and 15 inclusive, wherein c is 0 when d is not 0;
d is 0 when c is not 0; and
the sums (a+b+c+e+f+g+h+i) and (a+b+d+e+f+g+h+i) independently are equal to an integer that conforms to the formula 2n or 2n+1, wherein n is an integer between 3 and 15 inclusive;
—R p , —R q and —R t are independently selected from the group consisting of H, (C 1 -C 8 )alkyl, (C 1 -C 8 ) hydroxyalkyl and (C 1 -C 8 )haloalkyl;
—R u is:
—R a , —R a′ , —R b , —R b′ , —R c , —R c′ , —R d , and —R d′ are independently selected from the group consisting of —H, —OH, —C(O)H, —C(O), —C(O)R p , —COOH, —COOR p , —Cl, —Br, —I, —F, —CF 3 , —CHF 2 , —CH 2 F, —CN, —SO 3 , —SO 2 R p , —SO 3 H, —NH 3 + , —NH 2 R p+ , —NR p R q R t and NO 2 ;
—R a and —R a′ do not simultaneously represent non-hydrogen groups;
—R b and —R b′ do not simultaneously represent non-hydrogen groups;
—R c and —R c′ do not simultaneously represent non-hydrogen groups;
indicates optional double bond; and
is optionally present and, when present,
together with X and Y and the carbon atom to which they are bonded represents a 5- to 6-membered heterocyclyl or heteroaryl ring; and
wherein Formula (I) or Formula (II) is not:
13-oxo-(7Z,1OZ,14A,16Z,19Z)-docosa-7,10,14,16,19-pentanoic acid,
17-oxo-(7Z,10Z,13Z,15A,19Z)-docosa-7,10,13,15,19-pentanoic acid,
13-OH(7Z,1OZ,14A,16Z,19Z)-docosa-7,10,14,16,19-pentanoic acid,
17-OH(7Z,10Z,13Z,15A,19Z)-docosa-7,10,13,15,19-pentanoic acid,
13-oxo-(4Z,7Z,1OZ,14A,16Z,19Z)-docosa-4,7,10,14,16,19-hexanoic acid,
17-oxo-(4Z,7Z,1OZ,13Z,15A,19Z)-docosa-4,7,10,13,15,19-hexanoic acid,
13-OH-(4Z,7Z,1OZ,14A,16Z,19Z)-docosa-4,7,10,14,16,19-hexanoic acid or
17-OH-(4Z,7Z,1OZ,13Z,15A,19Z)-docosa-4,7,10,13,15,19-hexanoic acid; and
where A indicates either E or Z configuration; and
(b) a pharmaceutically acceptable carrier.
2 . The formulation according to claim 1 , wherein Y is O, X is —OH, and indicates a double bond.
3 . The formulation according to claim 1 , wherein Y is O, X is —OR′, and indicates a double bond.
4 . A pharmaceutical formulation comprising (i) a fatty acid selected from the group consisting of:
13-oxo-(7Z,1OZ,14A,16Z,19Z)-docosa-7,10,14,16,19-pentanoic acid,
17-oxo-(7Z,1OZ,13Z,15A,19Z)-docosa-7,10,13,15,19-pentanoic acid,
13-OH(7Z,1OZ,14A,16Z,19Z)-docosa-7,10,14,16,19-pentanoic acid,
17-OH(7Z,1OZ,13Z,15A,19Z)-docosa-7,10,13,15,19-pentanoic acid,
13-oxo-(4Z,7Z,1OZ,14A,16Z,19Z)-docosa-4,7,10,14,16,19-hexanoic acid,
17-oxo-(4Z,7Z,1OZ,13Z,15A,19Z)-docosa-4,7,10,13,15,19-hexanoic acid,
13-OH-(4Z,7Z,1OZ,14A,16Z,19Z)-docosa-4,7,10,14,16,19-hexanoic acid or
17-OH-(4Z,7Z,1OZ,13Z,15A,19Z)-docosa-4,7,10,13,15,19-hexanoic acid; and
where A indicates either E or Z configuration; and
(ii) a pharmaceutically acceptable carrier.
5 . The formulation according to claim 4 , wherein the fatty acid is selected from the group consisting of 13-oxo-(7Z,1OZ,14A,16Z,19Z)-docosa-7,10,14,16,19-pentanoic acid, 17-oxo-(7Z,1OZ,13Z,15A,19Z)-docosa-7,10,13,15,19-pentanoic acid, 13-oxo-(4Z,7Z,1OZ,14A,16Z,19Z)-docosa-4,7,10,14,16,19-hexanoic acid, 17-oxo-(4Z,7Z,10Z,13Z,15A,19Z)-docosa-4,7,10,13,15,19-hexanoic acid.
6 . A method for treating a subject suffering from an inflammatory condition comprising administering to the subject a therapeutically effective amount of a fatty acid according to Formula (I) or Formula (II),
wherein
X is selected from the group consisting Of-CH2-, —OH, —S, —OR t and —NR p R q ;
Y is selected from the group consisting of —C(O)—, O, —S—, and —NR p R q ;
W is selected from the group consisting of —OH, —H, —C(O)H, —C(O), —C(O)R p , —COOH, —COOR p , —Cl, —Br, —I, —F, —CF 3 , —CN, SR u , SR p , —SO 3 , —SO 2 R p , —SO 3 H, —NH 3 + , —NH 2 R p+ , —NR p R q R t , NO 2 , =0, ═NR p , ═CF 2 , and —CHF;
V is —CH— when W is selected from the group consisting of —OH, —H, —C(O)H, —C(O), —C(O)R p , —COOH, —COOR p , —Cl, —Br, —I, —F, —CF3, —CN, —SO 3 , —SO 2 R p , —SO 3 H, —NH 3 + , —NH 2 R p+ , —NR p R q R t and NO 2 and V is —C— when W is selected from the group consisting of =0, ═NR p , ═CF 2 , and ═CHF;
a, b, c, d, e, f, g, h and i independently are integers between 0 and 15 inclusive, wherein c is 0 when d is not 0;
d is 0 when c is not 0; and
the sums (a+b+c+e+f+g+h+i) and (a+b+d+e+f+g+h+i) independently are equal to an integer that conforms to the formula 2n or 2n+1, wherein n is an integer between 3 and 15 inclusive;
—R p , —R q and —R t are independently selected from the group consisting of H, (C 1 -C 8 )alkyl, (C 1 —
C 8 ) hydroxyalkyl and (C 1 -C 8 )haloalkyl;
—R u is:
—R a , —R a′ , —R b , —R b′ , —R c , —R c′ , —R d , and —R d′ are independently selected from the group consisting of —H, —OH, —C(O)H, —C(O), —C(O)R p , —COOH, —COOR p , —Cl, —Br, —I, —F, —CF 3 , —CHF 2 , —CH 2 F, —CN, —SO 3 , —SO 2 R p , —SO 3 H, —NH 3 + , —NH 2 R p+ , —NR p R q R t and NO 2 ;
—R a and —R a′ do not simultaneously represent non-hydrogen groups;
—R b and —R b′ do not simultaneously represent non-hydrogen groups;
—R c and —R c′ do not simultaneously represent non-hydrogen groups;
indicates optional double bond; and
is optionally present and, when present,
together with X and Y and the carbon atom to which they are bonded represents a 5- to 6-membered heterocyclyl or heteroaryl ring; and
wherein formula (I) and formula (II) are not:
13-oxo-(7Z,1OZ,14A,16Z,19Z)-docosa-7,10,14,16,19-pentanoic acid,
17-oxo-(7Z,10Z,13Z,15A,19Z)-docosa-7,10,13,15,19-pentanoic acid,
13-OH(7Z,1OZ,14A,16Z,19Z)-docosa-7,10,14,16,19-pentanoic acid,
17-OH(7Z,10Z,13Z,15A,19Z)-docosa-7,10,13,15,19-pentanoic acid,
13-oxo-(4Z,7Z,1OZ,14A,16Z,19Z)-docosa-4,7,10,14,16,19-hexanoic acid,
17-oxo-(4Z,7Z,1OZ,13Z,15A,19Z)-docosa-4,7,10,13,15,19-hexanoic acid,
13-OH-(4Z,7Z,1OZ,14A,16Z,19Z)-docosa-4,7,10,14,16,19-hexanoic acid or
17-OH-(4Z,7Z,1OZ,13Z,15A,19Z)-docosa-4,7,10,13,15,19-hexanoic acid; and
where A indicates either E or Z configuration.
7 . A method for treating an inflammatory condition comprising administering to a subject a pharmaceutical formulation comprising a fatty acid selected from the group consisting of
13-oxo-(7Z,1OZ,14A,16Z,19Z)-docosa-7,10,14,16,19-pentanoic acid,
17-oxo-(7Z,1OZ,13Z,15A,19Z)-docosa-7,10,13,15,19-pentanoic acid,
13-OH(7Z,1OZ,14A,16Z,19Z)-docosa-7,10,14,16,19-pentanoic acid,
17-OH(7Z,10Z,13Z,15A,19Z)-docosa-7,10,13,15,19-pentanoic acid,
13-oxo-(4Z,7Z,1OZ,14A,16Z,19Z)-docosa-4,7,10,14,16,19-hexanoic acid,
17-oxo-(4Z,7Z,1OZ,13Z,15A,19Z)-docosa-4,7,10,13,15,19-hexanoic acid,
13-OH-(4Z,7Z,1OZ,14A,16Z,19Z)-docosa-4,7,10,14,16,19-hexanoic acid or
17-OH-(4Z,7Z,1OZ,13Z,15A,19Z)-docosa-4,7,10,13,15,19-hexanoic acid; and
where A indicates either E or Z configuration.
8 . The method according to claim 6 , wherein the inflammatory condition is selected from the group consisting of organ preservation for transplantation, osteoarthritis, chronic obstructive pulmonary disease (COPD), atherosclerosis, hypertension, allograft rejection, pelvic inflammatory disease, ulcerative colitis, Crohn's disease, allergic inflammation in the lung, cachexia, stroke, congestive heart failure, pulmonary fibrosis, hepatitis, glioblastoma, Guillain-Barre Syndrome, systemic lupus erythematosus viral myocarditis, posttransplantation organ protection, acute pancreatitis, irritable bowel disease general inflammation, autoimmune disease, autoinflammatory disease, arterial stenosis, organ transplant rejection and burns, chronic lung injury and respiratory distress, insulin-dependent diabetes, non-insulin dependent diabetes, hypertension, obesity, arthritis, neurodegenerative disorders, lupus, Lyme's disease, gout, sepsis, hyperthermia, ulcers, enterocolitis, osteoporosis, viral or bacterial infections, cytomegalovirus, periodontal disease, glomerulonephritis, sarcoidosis, lung disease, lung inflammation, fibrosis of the lung, asthma, acquired respiratory distress syndrome, tobacco induced lung disease, granuloma formation, fibrosis of the liver, graft vs. host disease, postsurgical inflammation, coronary and peripheral vessel restenosis following angioplasty, stent placement or bypass graft, coronary artery bypass graft (CABG), acute and chronic leukemia, B lymphocyte leukemia, neoplastic diseases, arteriosclerosis, atherosclerosis, myocardial inflammation, psoriasis, immunodeficiency, disseminated intravascular coagulation, systemic sclerosis, amyotrophic lateral sclerosis, multiple sclerosis, Parkinson's disease, Alzheimer's disease, encephalomyelitis, edema, inflammatory bowel disease, hyper IgE syndrome, cancer metastasis or growth, adoptive immune therapy, reperfusion syndrome, radiation burns, alopecia areta, ischemia, myocardial infarction, arterial stenosis, rheumatoid arthritis, coronary restenosis, neurocognitive decline and insulin resistance.
9 . A method for detecting a metabolite of a fatty acid according to Formula (I) or Formula (II), said method comprising the steps of:
(a) contacting a biological sample at least one fatty acid according to Formula (I) or Formula (II),
wherein
X is selected from the group consisting Of-CH2-, —OH, —S, —OR t and —NR p R q ;
Y is selected from the group consisting of —C(O)—, O, —S—, and —NR p R q ;
W is selected from the group consisting of —OH, —H, —C(O)H, —C(O), —C(O)RP, —COOH, —COOR p , —Cl, —Br, —I, —F, —CF 3 , —CN, SR u , SR p , —SO 3 , —SO 2 R p , —SO 3 H, —NH 3 + , —NH 2 R p+ , —NR p R q R t , NO2, =0, ═NR p , ═CF 2 , and —CHF;
V is —CH— when W is selected from the group consisting of —OH, —H, —C(O)H, —C(O), —C(O)R p , —COOH, —COOR p , —Cl, —Br, —I, —F, —CF3, —CN, —SO 3 , —SO 2 R p , —SO 3 H, —NH 3 + , —NH 2 R p+ , —NR p R q R t and NO 2 and V is —C— when W is selected from the group consisting of =0, ═NR p , ═CF 2 , and ═CHF;
a, b, c, d, e, f, g, h and i independently are integers between 0 and 15 inclusive, wherein c is 0 when d is not 0;
d is 0 when c is not 0; and
the sums (a+b+c+e+f+g+h+i) and (a+b+d+e+f+g+h+i) independently are equal to an integer that conforms to the formula 2n or 2n+1, wherein n is an integer between 3 and 15 inclusive;
—R p , —R q and —R t are independently selected from the group consisting of H, (C 1 -C 8 )alkyl, (C 1 -C 8 ) hydroxyalkyl and (C 1 -C 8 )haloalkyl;
—R u is:
—R a , —R a′ , —R b , —R b′ , —R c , —R c′ , —R d , and —R d′ are independently selected from the group consisting of —H, —OH, —C(O)H, —C(O), —C(O)R p , —COOH, —COOR p , —Cl, —Br, —I, —F, —CF 3 , —CHF 2 , —CH 2 F, —CN, —SO 3 , —SO 2 R p , —SO 3 H, —NH 3 + , —NH 2 R p+ , —NR p R q R t and NO 2 ;
—R a and —R a′ do not simultaneously represent non-hydrogen groups;
—R b and —R b′ do not simultaneously represent non-hydrogen groups;
—R c and —R c′ simultaneously represent non-hydrogen groups;
indicates optional double bond; and
is optionally present and, when present,
together with X and Y and the carbon atom to which they are bonded represents a 5- to 6-membered heterocyclyl or heteroaryl ring
(b) optionally preparing a cellular lysate from the biological sample;
(c) incubating the biological sample from (a) or the cellular lysate obtained in (b) with 0-mercaptoethanol for a time sufficient to allow formation of a mixture containing one or more covalent /3-mercaptoethanol-fatty acid adducts; and
(d) subjecting the mixture from (c) to analysis by mass spectrometry to identify one or more fatty acid metabolites of formula (I) or formula (II).