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Lubiprostone: RU 0211, SPI 0211.

Lubiprostone [RU 0211, SPI 0211] is a bicyclic fatty acid that acts as a chloride channel opener, increasing intestinal water secretion. Lubiprostone, an orally-administered formulation, is one of a series of functional fatty acid compounds discovered by Dr Ryuji Ueno, and is currently undergoing development for the treatment of constipation, constipation-predominant irritable bowel syndrome (IBS-C) and postoperative ileus with Sucampo Pharmaceutical's. Lubiprostone activates a specific chloride channel (CLC2) on cells lining the gut, thereby naturally increasing intestinal fluid secretion. The increased fluid level softens the stool, promotes spontaneous bowel movements, and reduces abdominal discomfort/pain and bloating. The chloride channel is a protein that controls cell membrane transport of chloride ion. Lubiprostone acts on the ClC-2 chloride channel, which is located in the apical intestinal membrane. In November 2004, Takeda Pharmaceuticals entered into a collaboration and licensing agreement for Lubiprostone with Sucampo Pharmaceuticals for the treatment of chronic constipation and constipation-predominant Irritable Bowel Syndrome (c-IBS). Under the terms of the agreement, Takeda received the right to market the product in the US and Canada, while Sucampo reserved the co-promotion rights for these countries. Takeda's wholly-owned US subsidiary, Takeda Pharmaceuticals North America Inc., will sell lubiprostone once the product is approved by the US FDA. Takeda will also receive an option for marketing rights in other territories, including Japan and Europe. Takeda and Sucampo agreed on the exclusive manufacturing and supply of Lubiprostone by R-Tech Ueno, Ltd, a member of the Sucampo Group. Sucampo has the potential to receive up to dollar US 210 million in initial and milestone payments, some of which are contingent upon the successful achievement of several milestones. Takeda will fund a major part of development costs not only for chronic constipation and c-IBS, but also for other indications in the gastroenterology field. Takeda will make royalty payments to Sucampo after the product is launched. In May 2005, Sucampo received dollar US 20 million from Takeda Pharmaceutical as payment for achieving a development milestone of initiating a phase III clinical trial of lubiprostone to treat patients with constipation-predominant irritable bowel syndrome. Sucampo Pharmaceuticals submitted a new drug application (NDA) for lubiprostone to the FDA on 31 March 2005 for approval in the treatment of chronic idiopathic constipation (CIC) and associated symptoms in adults. Sucampo completed three long-term, open-label safety studies, which will support the NDA for lubiprostone, in treating constipation. Results from its second open-label safety study with lubiprostone were announced in February 2004, with the first two studies demonstrating long-term safety and sustained effectiveness in constipated subjects. In the US, the final phase III study for chronic constipation was completed in the fourth quarter of 2004. In November 2004, Sucampo announced completing a phase II safety and efficacy study of lubiprostone for the treatment of IBS-C. This study, which was initiated in April 2003, randomised 195 patients with documented IBS into four treatment groups (three doses of SPI 0211 and placebo) from 19 locations throughout the US.

Alprostadil↗

Recovery of mucosal barrier function in ischemic porcine ileum and colon is stimulated by a novel agonist of the ClC-2 chloride channel, lubiprostone.

Previous studies utilizing an ex vivo porcine model of intestinal ischemic injury demonstrated that prostaglandin (PG)E(2) stimulates repair of mucosal barrier function via a mechanism involving Cl(-) secretion and reductions in paracellular permeability. Further experiments revealed that the signaling mechanism for PGE(2)-induced mucosal recovery was mediated via type-2 Cl(-) channels (ClC-2). Therefore, the objective of the present study was to directly investigate the role of ClC-2 in mucosal repair by evaluating mucosal recovery in ischemia-injured intestinal mucosa treated with the selective ClC-2 agonist lubiprostone. Ischemia-injured porcine ileal mucosa was mounted in Ussing chambers, and short-circuit current (I(sc)) and transepithelial electrical resistance (TER) were measured in response to lubiprostone. Application of 0.01-1 microM lubiprostone to ischemia-injured mucosa induced concentration-dependent increases in TER, with 1 microM lubiprostone stimulating a twofold increase in TER (DeltaTER = 26 Omega.cm(2); P < 0.01). However, lubiprostone (1 microM) stimulated higher elevations in TER despite lower I(sc) responses compared with the nonselective secretory agonist PGE(2) (1 microM). Furthermore, lubiprostone significantly (P < 0.05) reduced mucosal-to-serosal fluxes of (3)H-labeled mannitol to levels comparable to those of normal control tissues and restored occludin localization to tight junctions. Activation of ClC-2 with the selective agonist lubiprostone stimulated elevations in TER and reductions in mannitol flux in ischemia-injured intestine associated with structural changes in tight junctions. Prostones such as lubiprostone may provide a selective and novel pharmacological mechanism of accelerating recovery of acutely injured intestine compared with the nonselective action of prostaglandins such as PGE(2).

Alprostadil↗

Effect of a selective chloride channel activator, lubiprostone, on gastrointestinal transit, gastric sensory, and motor functions in healthy volunteers.

Chloride channels modulate gastrointestinal neuromuscular functions in vitro. Lubiprostone, a selective type 2 chloride channel (ClC-2) activator, induces intestinal secretion and has been shown to relieve constipation in clinical trials; however, the effects of lubiprostone on gastric function and whole gut transit in humans are unclear. Our aim was to compare the effects of the selective ClC-2 activator lubiprostone on maximum tolerated volume (MTV) of a meal, postprandial symptoms, gastric volumes, and gastrointestinal and colonic transit in humans. We performed a randomized, parallel-group, double-blind, placebo-controlled study evaluating the effects of lubiprostone (24 microg bid) in 30 healthy volunteers. Validated methods were used: scintigraphic gastrointestinal and colonic transit, SPECT to measure gastric volumes, and the nutrient drink ("satiation") test to measure MTV and postprandial symptoms. Lubiprostone accelerated small bowel and colonic transit, increased fasting gastric volume, and retarded gastric emptying. MTV values were reduced compared with placebo; however, the MTV was within the normal range for healthy adults in 13 of 14 participants, and there was no significant change compared with baseline measurements. Lubiprostone had no significant effect on postprandial gastric volume or aggregate symptoms but did decrease fullness 30 min after the fully satiating meal. Thus the ClC-2 activator lubiprostone accelerates small intestinal and colonic transit, which confers potential in the treatment of constipation.

Adolescent↗

Lubiprostone.

Lubiprostone (Amitiza) is an oral bicyclic fatty acid that selectively activates type 2 chloride channels in the apical membrane of the gastrointestinal epithelium, resulting in increased fluid secretion. In two pivotal, randomised, double-blind, multicentre phase III studies in patients with chronic idiopathic constipation, the frequency of spontaneous bowel movements (SBMs) was significantly greater in patients receiving lubiprostone 24microg twice daily than in those receiving placebo at each weekly timepoint throughout both 4-week studies (p < 0.05). At week 1 in one pivotal trial, the mean frequency of SBMs in the lubiprostone group was 5.9 per week compared with 4.0 per week in the placebo group (p < 0.0001) [baseline SBMs 1.3 and 1.5 per week]. Significantly greater improvements occurred with lubiprostone than placebo in the degree of straining, stool consistency and constipation severity (where reported) in both pivotal studies (p < 0.05 for all comparisons at all timepoints). Lubiprostone was generally well tolerated in clinical trials with no reports of treatment-related serious adverse events in pivotal trials. Nausea was the most common adverse event, occurring in up to 31% of patients receiving lubiprostone.

Adult↗

Lubiprostone.

Sucampo Pharmaceuticals Inc and Takeda Pharmaceutical Co Ltd are developing, a ClC-2 chloride channel activator and a bicyclic member of a series of fatty acid compounds, for the potential treatment of a number of gastrointestinal conditions, including constipation, irritable bowel syndrome, postoperative bowel dysfunction and opioid bowel dysfunction.

Alprostadil↗

Treating chronic constipation : How should we interpret the recommendations?

Chronic constipation is a multisymptom gastrointestinal motility disorder that negatively impacts the lives of those affected. New recommendations on diagnosing and treating this condition have recently been published. This review aims to assist clinicians in applying these recommendations in clinical practice. Although lifestyle interventions and bulking agents help some patients with constipation, data are lacking to support their efficacy in those with chronic constipation. If empirical treatment of patients with chronic constipation fails, osmotic laxatives (e.g. lactulose and polyethylene glycol), a serotonin (5-HT4) receptor agonist (e.g. tegaserod) or a chloride channel activator (e.g. lubiprostone) can be considered. Osmotic laxatives, though effective at increasing stool frequency, are often associated with adverse effects such as bloating and diarrhoea and typically do not effectively relieve the multiple symptoms of chronic constipation. Use of tegaserod and the recently approved lubiprostone is supported by high-quality evidence, and these agents have acceptable safety profiles in patients with chronic constipation. Recent advances in the definition of chronic constipation and in its pharmacological management have led to refinements in identifying the appropriate treatment needs of patients with this condition. It is hoped that these advancements will help clinicians select effective medical regimens for patients with chronic constipation.

Chronic Disease↗

Defecation disorders: neuromuscular aspects and treatment.

Chronic constipation and fecal incontinence affect 20% of the population and are more prevalent in women, the elderly, those of lower socioeconomic status, and nursing home residents. These disorders pose a significant economic burden and affect quality of life. During the past decade, significant strides have been made in the understanding and treatment of defecation disorders, which have led to real advances in the management of these disorders. These treatments include biofeedback therapy, tegaserod, and lubiprostone for chronic constipation.

Biofeedback, Psychology↗

Current gut-directed therapies for irritable bowel syndrome.

Irritable bowel syndrome (IBS) is a functional gastrointestinal disorder that can present with a wide array of symptoms that make treatment difficult. Current therapies are directed at relieving symptoms of abdominal pain or discomfort, bloating, constipation, and diarrhea. Pharmacologic agents used to treat IBS-associated pain include myorelaxants, peppermint oil, and peripherally acting opiates. Dicyclomine and hyoscyamine, the two myorelaxants available in the United States, have not been proven effective in reducing abdominal pain in patients with IBS. The efficacy of peppermint oil is debated, but methodological problems with existing studies preclude definitive judgment. Loperamide is ineffective for relief of abdominal pain. For IBS patients with excessive abdominal bloating, a small number of studies suggest that bacterial eradication with gut-directed antibiotics and bacterial reconstitution with nonpathogenic probiotics may reduce flatulence. For constipation-predominant (C-IBS) symptoms, current treatment options include fiber supplementation, polyethylene glycol, and tegaserod. Soluble fibers (ispaghula, calcium polycarbophil, psyllium) are more effective than insoluble fibers (wheat bran, corn fiber) in alleviating global symptoms and relieving constipation, although fiber in general has marginal benefit in treatment of overall IBS symptoms. Polyethylene glycol increases bowel frequency in chronic constipation, but its overall efficacy against IBS is unclear. Tegaserod, a 5-HT(4) agonist, demonstrates superiority over placebo in improving bowel frequency and stool consistency and alleviating abdominal pain and bloating in women with C-IBS. Overall global symptoms are modestly improved with tegaserod when compared with placebo. Additional agents under investigation for C-IBS include the ClC(2) chloride channel opener lubiprostone, mu-opioid receptor antagonist alvimopan, and 5-HT(4) agonist renzapride. For diarrhea-predominant (D-IBS) symptoms, available therapies include loperamide, alosetron, and clonidine. Alosetron, a 5-HT(3) antagonist, is superior to placebo for reducing bowel frequency, improving stool consistency, and relieving abdominal pain in women with D-IBS. However, alosetron is available under a restricted license because of concerns for ischemic colitis and severe constipation necessitating colectomy. Clonidine may be helpful in alleviating global symptoms for D-IBS patients.

Journal Article↗

SPI-0211 activates T84 cell chloride transport and recombinant human ClC-2 chloride currents.

The purpose of this study was to determine the mechanism of action of SPI-0211 (lubiprostone), a novel bicyclic fatty acid in development for the treatment of bowel dysfunction. Adult rabbit intestine was shown to contain mRNA for ClC-2 using RT-PCR, Northern blot analysis, and in situ hybridization. T84 cells grown to confluence on permeable supports were shown to express ClC-2 channel protein in the apical membrane. SPI-0211 increased electrogenic Cl- transport across the apical membrane of T84 cells, with an EC50 of approximately 18 nM measured by short-circuit current (Isc) after permeabilization of the basolateral membrane with nystatin. SPI-0211 effects on Cl- currents were also measured by whole cell patch clamp using the human embryonic kidney (HEK)-293 cell line stably transfected with either recombinant human ClC-2 or recombinant human cystic fibrosis transmembrane regulator (CFTR). In these studies, SPI-0211 activated ClC-2 Cl- currents in a concentration-dependent manner, with an EC50 of approximately 17 nM, and had no effect in nontransfected HEK-293 cells. In contrast, SPI-0211 had no effect on CFTR Cl- channel currents measured in CFTR-transfected HEK-293 cells. Activation of ClC-2 by SPI-0211 was independent of PKA. Together, these studies demonstrate that SPI-0211 is a potent activator of ClC-2 Cl- channels and suggest a physiologically relevant role for ClC-2 Cl- channels in intestinal Cl- transport after SPI-0211 administration.

Animals↗

Gateways to clinical trials.

Gateways to Clinical Trials is a guide to the most recent clinical trials in current literature and congresses. The data in the following tables has been retrieved from the Clinical Studies Knowledge Area of Prous Science Integrity, the drug discovery and development portal, http://integrity.prous.com. This issue focuses on the following selection of drugs: ABT-510, ABX-EGF, acetyldinaline, ACIDFORM, acyline, afeletecan hydrochloride, anecortave acetate, apolizumab, l-arginine hydrochloride, asimadoline, atazanavir sufate, atlizumab; BMS-181176, BMS-188667; CAB-175, carnosine, CDP-870, CEP-701, CEP-7055, CGC-1072, ChimeriVax-JE, ciclesonide, cilomilast, clofarabine, combretastatin A-4 phosphate, cryptophycin 52; Duloxetine hydrochloride; E-5564, eculizumab, elcometrine, emtricitabine, ENO, epratuzumab, eszopiclone, everolimus; Fampridine, flurbiprofen nitroxybutyl ester; Garenoxacin mesilate, gestodene, GI-181771, gimatecan, gomiliximab; Halofuginone hydrobromide, hGH, hLM609; ICA-17043, IL-1 receptor type II, IMC-1C11, iodine (I131) tositumomab, irofulven, ISAtx-247; J591; L-778123, lanthanum carbonate Lasofoxifene tartrate, LDP-02, LE-AON, leteprinim potassium, lintuzumab, liraglutide, lubiprostone, lumiracoxib, lurtotecan, LY-450108, LY-451395; MAb G250, magnesium sulfate, MDX-210, melatonin, 2-methoxy-estradiol, monophosphoryl lipid A; NM-3, nolpitantium besilate; Ocinaplon, olpadronic acid sodium salt, oral heparin; Palonosetron hydrochloride, pemetrexed disodium, PI-88, picoplatin, plevitrexed, polyphenon E, pramlintide acetate, pregabalin, prinomastat, pyrazoloacridine; Resiniferatoxin, rhEndostatin, roxifiban acetate; S-18886, siplizumab, sitaxsentan sodium, solifenacin succinate, SU-11248, SU-6668; Talampanel, TAPgen, testosterone transdermal gel, trabectedin; VEGF-2 gene therapy, visilizumab; ZD-6416, ZD-6474.

Clinical Trials as Topic↗

Gateways to clinical trials.

Gateways to Clinical Trials is a guide to the most recent clinical trials in current literature and congresses. The data in the following tables have been retrieved from the Clinical Trials Knowledge Area of Prous Science Integrity, the drug discovery and development portal, http://integrity.prous.com. This issue focuses on the following selection of drugs: 3-AP, Adalimumab, adefovir dipivoxil, AeroDose albuterol inhaler, agalsidase alfa, alemtuzumab, aminolevulinic acid methyl ester, anidulafungin, anthrax vaccine, anti-CTLA-4 MAb, azimilide hydrochloride; Bevacizumab, BG-12, bimatoprost, bortezomib, bosentan, botulinum toxin type B; Caspofungin acetate, ceftobiprole, certolizumab pegol, CG-53135, cilansetron; Darbepoetin alfa, degarelix acetate, dimethylfumarate, duloxetine hydrochloride, dutasteride; Eicosapentaenoic acid/docosahexaenoic acid, eletriptan, entecavir, esomeprazole magnesium, exatecan mesilate, exenatide, ezetimibe; Falecalcitriol, fampridine, fondaparinux sodium, fontolizumab; Gefitinib, gepirone hydrochloride; Human insulin; IDEA-070, imatinib mesylate, iodine (I131) tositumomab; Lanthanum carbonate, lubiprostone; Mafosfamide cyclohexylamine salt, melatonin; NC-531, nemifitide ditriflutate, neridronic acid, nolatrexed dihydrochloride; Oral insulin; Palifermin, parecoxib sodium, PEG-filgrastim, peginterferon alfa-2a, peginterferon alfa-2b, plerixafor hydrochloride, posaconazole, pramlintide acetate, pregabalin, PT-141; Quercetin; Ranibizumab, renzapride hydrochloride, RSD-1235; Sabarubicin hydrochloride, semapimod hydrochloride, Semax, SHL-749; Tegaserod maleate, tenatoprazole, tetrodotoxin, tolevamer sodium, trabectedin, travoprost, travoprost/timolol; Valdecoxib, visilizumab, Xcellerated T cells, XP-828L; Zoledronic acid monohydrate.

Clinical Trials as Topic↗

Gateways to clinical trials.

Gateways to Clinical Trials are a guide to the most recent clinical trials in current literature and congresses. The data in the following tables have been retrieved from the Clinical Trials Knowledge Area of Prous Science Integrity, the drug discovery and development portal, http://integrity.prous.com. This issue focuses on the following selection of drugs: ABT-510, adalimumab, alefacept, ambrisentan, aminolevulinic acid methyl ester, armodafinil, aselizumab, asenapine maleate, azelnidipine; Bevacizumab, bexarotene, bimosiamose, biphasic insulin aspart, bortezomib, bosentan, BQ-123; C340, cannabidiol, caspofungin acetate, CC-4047, certolizumab pegol, cetuximab, ciclesonide, cilansetron, Cypher; Dabigatran etexilate, darbepoetin alfa, darifenacin hydrobromide, desloratadine, dexosome vaccine (melanoma), dimethyl fumarate, dronabinol/cannabidiol, drospirenone, drospirenone/estradiol, drotrecogin alfa (activated), duloxetine hydrochloride, dutasteride; Efalizumab, eglumetad hydrate, emoxipin hydrochloride, eplerenone, erlotinib hydrochloride, escitalopram oxalate, etonogestrel/ethinylestradiol; Garenoxacin mesilate, gamma-hydroxybutyrate sodium, gefitinib; H5N1 pandemic influenza vaccine, human growth hormone-(177-191), human insulin; Indacaterol, INKP-100, INKP-102, insulin glargine, i.v. gamma-globulin; KLH; Lapatinib, L-arginine hydrochloride, lasofoxifene tartrate, levocetirizine, licochalcone A, LMI vaccine, lomefloxacin, lubiprostone, lumiracoxib; Miglustat, mycograb; Natalizumab, NCX-4016, nortopixantrone hydrochloride; Olmesartan medoxomil, omalizumab, oral insulin, OrM3; Parathyroid hormone (human recombinant), parecoxib sodium, PCK-3145, PEG-filgrastim, peginterferon alfa-2a, pemetrexed disodium, pexelizumab, photochlor, pimecrolimus, pneumococcal 7-valent conjugate vaccine, polyphenon E; R-126638, R-411, resveratrol, roflumilast, RS-86, ruboxistaurin mesilate hydrate, rupatadine fumarate; Sipuleucel-T, somatropin, St. John's Wort extract; Tadalafil, Taxus, telbivudine, telithromycin, temsirolimus, teriparatide, teverelix, tigecycline, tiotropium bromide, tolterodine, tolvaptan, treprostinil sodium, typhoid vaccine; Vardenafil hydrochloride hydrate, vildagliptin, voriconazole; Ximelagatran; Zanolimumab, zileuton.

Clinical Trials as Topic↗

Gateways to clinical trials.

Gateways to Clinical Trials are a guide to the most recent clinical trials in current literature and congresses. The data in the following tables have been retrieved from the Clinical Trials Knowledge Area of Prous Science Integrity, the drug discovery and development portal, http://integrity.prous.com This issue focuses on the following selection of drugs: A-007, A6, adalimumab, adenosine triphosphate, alefacept, alemtuzumab, AllerVax Ragweed, amphora, anakinra, angiotensin-(1-7), anidulafungin, apomine, aripiprazole, atomoxetine hydrochloride, avanafil; BAL-8557, becatecarin, bevacizumab, biphasic insulin aspart, BMS-188797, bortezomib, bosentan, botulinum toxin type B, brivudine; Calcipotriol/betamethasone dipropionate, caspofungin acetate, catumaxomab, certolizumab pegol, cetuximab, CG-0070, ciclesonide, cinacalcet hydrochloride, clindamycin phosphate/benzoyl peroxide, cryptophycin 52, Cypher; Dabigatran etexilate, darapladib, darbepoetin alfa, decitabine, deferasirox, desloratadine, dexanabinol, dextromethorphan/quinidine sulfate, DMF, drotrecogin alfa (activated), duloxetine hydrochloride; E-7010, edaravone, efalizumab, emtricitabine, entecavir, eplerenone, erlotinib hydrochloride, escitalopram oxalate, estradiol valerate/dienogest, eszopiclone, exenatide, ezetimibe; Fondaparinux sodium, fulvestrant; Gefitinib, gestodene, GYKI-16084; Hyaluronic acid, hydralazine hydrochloride/isosorbide dinitrate; Imatinib mesylate, indiplon, insulin glargine; Juzen-taiho-to; Lamivudine/zidovudine/abacavir sulfate, L-arginine hydrochloride, lasofoxifene tartrate, L-BLP-25, lenalidomide, levocetirizine, levodopa/carbidopa/entacapone, lexatumumab, lidocaine/prilocaine, lubiprostone, lumiracoxib; MAb-14.18, mitoquidone; Natalizumab, neridronic acid, neuradiab; Olpadronic acid sodium salt, omalizumab; p53-DC vaccine, parathyroid hormone (human recombinant), peginterferon alfa-2a, peginterferon alfa-2b, pemetrexed disodium, perifosine, pimecrolimus, prasterone, prasugrel, PRO-2000, Pseudostat; R24, rasburicase, RHAMM R3 peptide, rilonacept, rosuvastatin calcium, rotavirus vaccine, rufinamide; Sabarubicin hydrochloride, SHL-749, sirolimus-eluting stent, SLx-2101, sodium butyrate, sorafenib, SU-6668; TachoSil, tadalafil, taxus, tegaserod maleate, telbivudine, tenofovir disoproxil fumarate, teriparatide, tetramethylpyrazine, teverelix, tiotropium bromide, tipifarnib, tirapazamine, tolvaptan, TransvaxTM hepatitis C vaccine, treprostinil sodium; Valganciclovir hydrochloride, valsartan/amlodipine, vandetanib, vardenafil hydrochloride hydrate, vatalanib succinate, veglin, voriconazole; Yttrium 90 (90Y) ibritumomab tiuxetan; Zileuton, zotarolimus, zotarolimus-eluting stent.

Clinical Trials as Topic↗

Chronic constipation: let symptom type and severity direct treatment.

Increased fiber intake through diet or fiber supplements is an appropriate initial therapy for chronic constipation. Osmotic and stimulant laxatives may be administered to patients who do not respond to more conservative measures if the limitations of these agents are explained. Tegaserod, a selective 5-hydroxytryptamine type 4 (5-HT4) receptor partial agonist, is more effective than placebo at relieving symptoms of chronic idiopathic constipation in patients younger than 65 years of age. Patients with suspected defecation disorders and those with treatment-refractory symptoms should be referred to a gastroenterologist for further evaluation.

Alprostadil↗