Enteric combination therapy
11612635 · 2023-03-28
Assignee
Inventors
Cpc classification
A61P1/04
HUMAN NECESSITIES
A61K31/4025
HUMAN NECESSITIES
A61K31/4184
HUMAN NECESSITIES
A61P1/02
HUMAN NECESSITIES
A61K9/4891
HUMAN NECESSITIES
A61K31/496
HUMAN NECESSITIES
A61K31/165
HUMAN NECESSITIES
A61K31/4188
HUMAN NECESSITIES
A61K38/14
HUMAN NECESSITIES
A61K9/0053
HUMAN NECESSITIES
A61K2300/00
HUMAN NECESSITIES
A61K2300/00
HUMAN NECESSITIES
A61K31/40
HUMAN NECESSITIES
A61K9/48
HUMAN NECESSITIES
A61K31/7048
HUMAN NECESSITIES
A61K31/7036
HUMAN NECESSITIES
A61K31/7048
HUMAN NECESSITIES
A61K31/4178
HUMAN NECESSITIES
A61K45/06
HUMAN NECESSITIES
A61K31/165
HUMAN NECESSITIES
A61K31/437
HUMAN NECESSITIES
A61K31/166
HUMAN NECESSITIES
A61K31/4525
HUMAN NECESSITIES
A61K31/7036
HUMAN NECESSITIES
A61K38/14
HUMAN NECESSITIES
A61P25/28
HUMAN NECESSITIES
A61P1/00
HUMAN NECESSITIES
A61K31/196
HUMAN NECESSITIES
A61K31/496
HUMAN NECESSITIES
A61K31/166
HUMAN NECESSITIES
International classification
A61K38/14
HUMAN NECESSITIES
A61K31/165
HUMAN NECESSITIES
A61K31/166
HUMAN NECESSITIES
A61K31/196
HUMAN NECESSITIES
A61K31/40
HUMAN NECESSITIES
A61K31/4025
HUMAN NECESSITIES
A61K31/4178
HUMAN NECESSITIES
A61K31/4184
HUMAN NECESSITIES
A61K31/4188
HUMAN NECESSITIES
A61K31/437
HUMAN NECESSITIES
A61K31/4525
HUMAN NECESSITIES
A61K31/496
HUMAN NECESSITIES
A61K31/7036
HUMAN NECESSITIES
A61K31/7048
HUMAN NECESSITIES
A61K45/06
HUMAN NECESSITIES
A61K9/00
HUMAN NECESSITIES
Abstract
There is disclosed herein a composition for treating gastrointestinal or neurological disorders, constipation, functional constipation, irritable bowel syndrome, diverticulitis, travelers diarrhoea, chronic idiopathic nausea, IBD-associated constipation and diarrhoea, pseudo-obstruction, diabetic gastroparesis, cyclic vomiting, reflux esophagitis, autism enteropathy, flatulence, halitosis, chronic fatigue, bloating, proctalgia fugax, Parkinson's disease, MS, Alzheimer's Disease, Motor Neuron Disease or autism, the composition comprising: (i) at least two anti-clostridial agents selected from the group consisting of: vancomycin, vancomycin derivatives, a multi-valent polymer of vancomycin, aminoglycosides, nitroimidazoles, ansamysins, nifuroxazide, colchicine, prucalopride, prokinetic agent and 5-aminosalicylic acid; or (ii) at least one anti-clostridial agent selected from the above combined with an opioid blocking agent. There is also disclosed herein a method of treating various gastrointestinal or neurological disorders, constipation, functional constipation, irritable bowel syndrome, diverticulitis, travelers diarrhoea, chronic idiopathic nausea, IBD-associated constipation and diarrhoea, pseudo-obstruction, diabetic gastroparesis, cyclic vomiting, reflux oesophagitis, autism enteropathy, flatulence, halitosis, chronic fatigue, bloating, proctalgia fugax, Parkinson's disease, MS, Alzheimer's Disease, Motor Neuron Disease or autism, the method comprising administering orally, via enema or by suppository: (i) a composition of the invention; (ii) at least two anti-clostridial agents selected from the group consisting of: vancomycin, vancomycin derivatives, a multi-valent polymer of vancomycin, aminoglycosides, nitroimidazoles, ansamysins, nifuroxazide, colchicine, prucalopride, prokinetic agent and 5-aminosalicylic acid; or (iii) at least one anti-clostridial agent selected from the above and an opioid blocking agent to a patient in need of such treatment.
Claims
1. A therapeutic composition comprising active agents consisting of: (a) vancomycin, a vancomycin derivative, a multi-valent polymer of vancomycin, or a combination thereof, wherein the vancomycin derivative comprises a carbohydrate-modified vancomycin, a vancomycin-disulfide derivative, a lipidated vancomycin, a chlorobiphenyl-desleucyl-vancomycin or chlorobiphenyl vancomycin; (b) rifaximin; and (c) a nitroimidazole.
2. The therapeutic composition of claim 1, wherein the nitroimidazole is selected from the group consisting of metronidazole, tinidazole, nimorazole, secnidazole, ordinazole and mixtures thereof.
3. A pharmaceutical composition consisting of: a therapeutic composition of claim 1, and a pharmaceutically acceptable carrier.
Description
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(1) There is disclosed herein a composition for treating gastrointestinal or neurological disorders, constipation, functional constipation, irritable bowel syndrome, diverticulitis, travelers diarrhoea, chronic idiopathic nausea, IBD-associated constipation and diarrhoea, pseudo-obstruction, diabetic gastroparesis, cyclic vomiting, reflux oesophagitis, autism enteropathy, flatulence, halitosis, chronic fatigue, bloating, proctalgia fugax, Parkinson's disease, MS, Alzheimer's Disease, Motor Neuron Disease or autism, the composition comprising:
(2) (i) at least two anti-clostridial agents selected from the group consisting of:
(3) vancomycin, vancomycin derivatives, a multi-valent polymer of vancomycin, aminoglycosides, nitroimidazoles, ansamysins, nifuroxazide, colchicine, prucalopride, prokinetic agent and 5-aminosalicylic acid; or
(4) (ii) at least one anti-clostridial agent selected from the above combined with an opioid blocking agent.
(5) As required, the composition may include a pharmaceutically acceptable carrier.
(6) In one embodiment the vancomycin derivative is carbohydrate-modified vancomycin, vancomycin-disulfide derivative, lipidated vancomycin, chlorobiphenyl-desleucyl-vancomycin, oritavancin, telavancin, or chlorobiphenyl vancomycin.
(7) In one embodiment the aminoglycoside is selected from the group consisting of streptomycin, neomycin, framycetin, paromomycin, ribostamycin, kanamycin, amikacin, arbekacin, beanamycin, dibekacin, tobramycin, spectinomycin, hygromycin B, paromomycin sulfate, streptomycin, gentamicin, netilmicin, sisomicin, isepamicin, verdamicin, astromicin and mixtures thereof.
(8) In one embodiment the nitroimidazole is selected from the group consisting of metronidazole, tinidazole, nimorazole, secnidazole, ordinazole and mixtures thereof.
(9) In one embodiment the ansamycin is selected from the group consisting of rifaximin, rifampicin, rifabutin, rifapentine and mixtures thereof.
(10) In one embodiment the prokinetic agents are selected from the group consisting of tegaserod, domperidone, metoclopramide, mosapride, erythromycin and mixtures thereof.
(11) In one embodiment the 5-aminosalicylic acid is selected from mesalazine, olsalazine, balsalazide and mixtures thereof.
(12) In one embodiment the antiopioid blocking agent is selected from methyl naltrexone or naloxone hydrochloride.
(13) In one embodiment the composition includes the combination of vancomycin and metronidazole.
(14) In another embodiment the composition includes the combination of vancomycin and rifaximin.
(15) In one embodiment the composition includes the combination of rifaximin and prucalopride.
(16) In one embodiment the composition includes the combination rifaximin, metronidazole and colchicine.
(17) In one embodiment the composition includes the combination vancomycin, metronidazole and colchicine.
(18) In one embodiment the composition incudes the combination vancomycin, aminoglycoside and colchicine.
(19) In one embodiment the composition includes the combination rifamycin, colchicine and metronidazole.
(20) In one embodiment the composition includes the combination vancomycin together with a prokinetic agent.
(21) In one embodiment the composition includes the combination vancomycin, olsalazine and colchicine.
(22) In one embodiment the composition includes the combination of vancomycin and methyl naltrexone or naloxone hydrochloride.
(23) In one embodiment the composition includes the combination of naloxone hydrochloride, vancomycin and metronidazole.
(24) In on embodiment the composition includes the combination of naloxone hydrochloride and colchicines.
(25) In one embodiment the composition includes the combination of naloxone hydrochloride, vancomycin, and rifaximin.
(26) In one embodiment the composition includes the use of naloxone hydrochloride and rifaximin.
(27) In another embodiment, the present invention relates to a method of treating various gastrointestinal or neurological disorders, constipation, functional constipation, irritable bowel syndrome, diverticulitis, travelers diarrhoea, chronic idiopathic nausea, IBD-associated constipation and diarrhoea, pseudo-obstruction, diabetic gastroparesis, cyclic vomiting, reflux oesophagitis, autism enteropathy flatulence, halitosis, chronic fatigue, bloating, proctalgia fugax, Parkinson's disease, MS, Alzheimer's Disease, Motor Neuron Disease or autism, the method comprising administering orally, via enema or by suppository;
(28) (i) a composition of the invention;
(29) (ii) at least two anti-clostridial agents selected from the group consisting of:
(30) vancomycin, vancomycin derivatives, a multi-valent polymer of vancomycin, aminoglycosides, nitroimidazoles, ansamysins, nifuroxazide, colchicine, prucalopride, prokinetic agent and 5-aminosalicylic acid; or
(31) (iii) at least one anti-clostridial agent selected from the above and an opioid blocking agent to a patient in need of such treatment
(32) In one embodiment the agent is administered in doses ranging from 50 mg per day to 500 mg per day.
(33) In one embodiment when present, the colchicine is administered in doses of 0.005 mg to 5 mg per day and the 5-aminosalicylic acid is administered in doses of 100 mg to 3 gm per day.
(34) In various embodiments, the agents are administered simultaneously such as in the form of a single composition of the invention or are administered separately in any order. In various embodiments, the agents administered may be those listed above as combinations. For example, the combination of vancomycin and metronidazole; the combination of vancomycin and rifaximin; the combination of rifaximin and prucalopride; the combination rifaximin, metronidazole and colchicine, the combination vancomycin, metronidazole and colchicine; the combination vancomycin, aminoglycoside and colchicine; the combination rifamycin, colchicine and metronidazole; the combination vancomycin together with a prokinetic agent; the combination vancomycin, olsalazine and colchicine; the combination of vancomycin and methyl naltrexone or naloxone hydrochloride, the combination of naloxone hydrochloride, vancomycin and metronidazole; the combination of naloxone hydrochloride and colchicines; the combination of naloxone hydrochloride, vancomycin, and rifaximin; or the combination of naloxone hydrochloride and rifaximin
(35) In another embodiment, the present invention relates to use of:
(36) (i) at least two anti-clostridial agents selected from the group consisting of:
(37) vancomycin, vancomycin derivatives, a multi-valent polymer of vancomycin, aminoglycosides, nitroimidazoles, ansamysins, nifuroxazide, colchicine, prucalopride, prokinetic agent and 5-aminosalicylic acid; or
(38) (ii) at least one anti-clostridial agent selected from the above combined with an opioid blocking agent.
(39) in the manufacture of a medicament for treating various gastrointestinal or neurological disorders, constipation, functional constipation, irritable bowel syndrome, diverticulitis, travelers diarrhoea, chronic idiopathic nausea, IBD-associated constipation and diarrhoea, pseudo-obstruction, diabetic gastroparesis, cyclic vomiting, reflux esophagitis, autism enteropathy, flatulence, halitosis, chronic fatigue, bloating, proctalgia fugax, Parkinson's disease, MS, Alzheimer's Disease, Motor Neuron Disease or autism.
(40) The description of the invention is tied to the description of the causality. Mentioned above is the concept of the bowel flora being a virtual organ, consisting largely of various bacteria most of which are not known to mankind. A number of clinical observations have led the inventor to this conceptualisation of the mechanisms which have led to the invention. Firstly when patients with constipation take multiple antibiotics e.g. for treatment of Helicobacter pylori infection, it was noticed their constipation resolves and remains much better for several days even after they stop the antibiotics, suggestine that constipation is mediated by an infection of the bowel flora which was suppressed by the antibiotics. Furthermore, the use of vancomycin alone has been previously described in constipation and these points to constipation being caused by a Clostridial infection (Andrews et al Euro J Gast Hep 1992; 4:245-7, and Celik A F et al, Alimentary Pharmacol and Ther, 1995; 9:63-68). However, the inventor recognised that the use of vancomycin alone is inefficient and requires an improvement because not all patients respond and respond but partially to be clinically effective. Nevertheless, such an observation has strongly pointed to bowel flora abnormality or bowel flora infection as the primary cause of most cases idiopathic constipation. The inventor's belief that the etiology of constipation being infection was further strengthened by the use of ‘faecal bacteriotherapy’ i.e., when transplantation of bowel flora was shown to reverse constipation (T J Borody et al J Clin Gastroenterol 2004; 38:475-483). The implantation of new bacteria from a healthy donor has been definitively shown to produce prolonged reversal of constipation in the occasional patients treated (Andrews P J et al European Gastroenterology and Hepatology 1992; 4:245-247).
(41) Hence the mechanism of the abnormality appears to be an infective one and probably similar to that of Clostridium botulinum which also causes severe constipation as one of its first symptoms in babies infected with this agent. It is likely that such Clostridia release neuro-active opioid-like substances which then paralyse the bowel's motor activity (peristalsis) which is in effect, the mechanism for constipation in most patients. Such bacterial substances enter the circulation and may also paralyse the small bowel, so causing accumulation of gas in the small bowel which clinically presents as bloating. Such circulating substances are likely also to reduce gastric emptying by partial paralysis [slow gastric emptying] and by relaxing the tone of the lower oesophageal sphincter causing reflux oesophagitis—the mechanism of oeosophagitis known to be frequently associated with constipation. Blockade of these neuro-active opioid-like substances by their antagonists would be therefore expected to further help resolve the dysmotility of the colon, small bowel, stomach and oesophagus. These would include methyl naltrexone and naloxone hydrochloride in doses ranging from 0.01 mg to 1000 mg per day.
(42) Hence, the appropriate approach to the treatment of constipation would be to treat the causal infective agent or agents, even though they may not be able to be cultured and block the opioid neuropeptides they secrete.
(43) Given the background given above and the results from the treatment of numerous patients, the invention constitutes an antimicrobial combination therapy that would pass down the bowel and suppress or eradicate the culprit infective agent or agents and in some circumstances opioid blockers to make the treatment more effective. Various agents are capable of inhibiting Clostridia and cause laxation. The foremost of these is vancomycin or vancomycin derivative when used orally as it is mostly not absorbed by the gut. The antimicrobial agents include vancomycin, a multi-valent polymer of vancomycin, aminoglycosides including streptomycin, neomycin, framycetin, paromomycin, ribostamycin, kanamycin, amikacin, arbekacin, beanamycin, dibekacin, tobramycin, spectinomycin, hygromycin B, paromomycin sulfate, streptomycin, gentamicin, netilmicin, sisomicin, isepamicin, verdamicin and astromicin. Other anti-infective agents that can be used include nitroimidazoles such as metronidazole, tinidazole, nimorazole, secnidazole and ordinazole. Another group of agents that is active is rifaximin, a semi synthetic rifamicin based agent from a larger family of Ansamycin's which includes rifampicin and rifabutin as well as rifapentine. Rifaximin is preferable because it is not absorbed from the intestine. Another useful agent to be in combination with those mentioned includes nifuroxazide—another non-absorbed product. Various medications which can increase water secretion in the bowel such as colchicine and prucalopride can also be effectively combined. Opioid blocking agents include methyl naltrexone and naloxone hydrochloride.
(44) The pharmacological combinations that have been found to be useful include a composition of two or more anti-clostridial alone or anti-clostridial agents combined with other medications enumerated. The invention describes compositions and use thereof for the manufacture of a medication for the treatment of constipation and constipation-associated conditions. The best disclosed compositions include that of vancomycin and metronidazole, vancomycin and rifaximin, vancomycin and naloxone hydrochloride and rifaximin and naloxone hydrochloride. These can be taken orally in doses of these medications ranging from 0.01 mg per day through to 5000 mg per day. The combination can be taken as the currently available capsules and tablets in single or divided dosing regimens. Another and preferable combination is that of a capsule or tablet which is enteric coated so that it opens in the distal small bowel or the large bowel so reducing any absorption of absorbable drugs e.g. metronidazole. The medication can be taken long term to suppress the Clostridial super-infection of the bowel flora which so helps to increase gut motility. Other combinations include rifaximin and prucalopride in same covered dose ranges in single or divided doses, rifaximin, metronidazole and colchicine, and vancomycin, metronidazole and colchicine—colchicine in doses of 0.005 mg-5 mg per day. This combination can also be as an enteric-coated product to limit absorption. A combination of vancomycin, aminoglycosides and colchicine is yet another composition. Rifamycin, colchicine and metronidazole is yet another combination.
(45) A further set of agents which can be added to single antibiotics or combined antibiotics include prokinetic agents such as tegaserod, domperidone, metoclopramide, mosapride, erythromycin and 5-aminosalicylic acid products which also inhibit Clostridia including mesalazine, olsalazine and balsalazide. In respect to these, one could combine vancomycin with olsalazine—the latter 100 mg-3 gm per day, or vancomycin with any other prokinetic agent used in accepted appropriate doses. In a further combination the use of vancomycin, olsalazine and colchicine can be combined. In fact any of the groups above can be combined in two or more combinations to control the constipation of bacterial infection.
(46) Apart from describing the various compositions useful in the treatment of various gastrointestinal disorders, it should be mentioned that a number of often disparate disorders have been noticed to respond well to these combinations, indicating a microbiologic etiology of such disorders. These include constipation, functional constipation, irritable bowel syndrome, diverticulitis, traveler's diarrhoea, chronic idiopathic nausea, IBD-associated constipation and diarrhoea, pseudo-obstruction, diabetic gastroparesis, cyclic vomiting, reflux oesophagitis, autism enteropathy, flatulence, halitosis, chronic fatigue, bloating and proctalgia fugax and in the above neurological disorders.
(47) The invention will now be described with reference to the following examples which should not be construed as limiting on the invention.
EXAMPLES
Example 1
(48) A 38 year old female patient with life-long constipation, defecating between 0-2 times per week, had multiple investigations carried out and no abnormalities were found with respect to the colon or the bowel flora, and had failed known standard therapies. She was not hypothyroid and had otherwise normal blood tests. She was given a trial of Vancomycin 500 mg bd and Metronidazole 200 mg bd and began defecating by day 3 of the treatment. She was able to continue defecating normally with her constipation completely being reversed while she took the therapy for 4 weeks. After stopping the therapy, within 2 weeks the constipation started recurring. Restarting the treatment again allowed her to defecate normally. Apart from the constipation her bloating was markedly reduced during treatment, and her sensation of ‘fullness’ was improved and her reflux symptoms also lessened. Her previous tiredness was markedly reduced during treatment.
Example 2
(49) An elderly gentleman with severe constipation requiring 6 coloxyl tablets per day and Parkinson's disease was commenced on Vancomycin 500 mg bd, Metronidazole 400 mg bd and Colchicine 0.5 mg bd. Within 3 days he was defecating normally and was able to stop taking the Coloxyl. Unexpectedly, by week 4 his Parkinson's disease had improved quite dramatically. In spite of still-continuing to take Sinemet in his original dose, he no longer experiences any tremor and over the period of several months his gait improved and ‘Glabellar tap’ test reversed to normality. Continuing the treatment for over a year—his constipation remained completely gone, his Parkinson's was virtually undetectable and he was able to reduce his dose of Sinemet, suggesting his Parkinson's disease neurotoxicity may have originated from the bowel flora.
Example 3
(50) A 41 year old female with a 10 year constipation history associated bloating, tiredness and headaches was commenced on 500 mg of Vancomycin twice daily and Rifaximin 200 mg twice daily. After a week's treatment her constipation improved markedly but the Rifaximin had to be increased to 400 mg twice daily for the constipation and other symptoms to be virtually completely undetectable. Progressively her bloating improved and her tiredness and headaches improved. She continued on treatment now for over 3 months and continues well on the therapy not wanting to stop the treatment because she feels so well.
Example 4
(51) An 8 year old male with constipation alternating at times with diarrhea with Autism Spectrum Disorder was commenced on Vancomycin 250 mg twice daily together with Naloxone hydrochloride 10 mg twice daily. After 3 weeks of treatment the constipation was completely resolved but in addition his behavior and lethargy changed. He became affectionate and relatively calm, achieving toilet retraining which he had never previously achieved. His vocabulary began to increase quite rapidly, his on task performance, compliance with parental requests and awareness of surroundings improved quite quickly and he was engaging in positive activities. Repetitive and self stimulatory behaviors were reduced. The improvement lasted for the duration of four months treatment as various parameters kept on improving.
Example 5
(52) Elderly male with severe constipation, bloating and abdominal pain and early Parkinson's disease characterized by stiffness was commenced on Vancomycin 500 mg twice daily together with Rifaximin 500 mg twice daily and Naloxone hydrochloride 10 mg twice daily. Within a week he was defecating normally. I was able to stop the various teas and Normacol together with Movicol which he was using for constipation. By week 6 his stiffness had markedly improved, he had stopped “freezing” while attempting to initiate walking and his fine tremor, previously present, was no longer detectable. Cogwheel rigidity also improved and he was able to reduce his anti-Parkinsonian treatment by about 30% at this stage. He continued the treatment for 6 months and his Parkinsonian symptoms further regressed although they were not completely undetectable at this stage.
Example 6
(53) A 52 year old female with lifelong constipation associated with marked bloating was commenced on 500 mg Vancomycin twice daily, 500 mg Rifaximin twice daily and Naloxone hydrochloride 10 mg twice daily. After one week of treatment her constipation improved markedly and kept on improving over the next 2-3 weeks. Her bloating took some time to resolve and about 5 weeks she was not able to detect bloating even though she may have eaten a fatty meal. She continued on therapy for 6 months without changing and she was asymptomatic at that time.
(54) Although the invention has been described with reference to specific examples, it will be appreciated to those skilled in the art that the invention may be embodiment in many other forms.