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Golimumab Effect in the Modulation of Gut Microbiota in Ulcerative Colitis

Golimumab Effect in the Modulation of Gut Microbiota in Ulcerative Colitis: Pilot Study

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03018925
Acronym
GOLI2015
Enrollment
15
Registered
2017-01-12
Start date
2016-10-31
Completion date
2020-10-31
Last updated
2021-07-19

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Ulcerative Colitis

Brief summary

This study aims to characterize the changes on intestinal microbiota pattern associated with the use of golimumab in order to determine if intestinal microbiota markers may correlate with golimumab therapeutic effect in patients naïve & non-naïve to anti-TNF treatment

Detailed description

Golimumab effect in the modulation of gut microbiota in Ulcerative Colitis. Pilot Study. 1. BACKGROUND Recently, a consistent body of evidence indicates that the gut microbiota ability to modulate and direct the host immune response is considered one of the pivotal factors that modulate the delicate balance between health and disease in digestive diseases. In the case of inflammatory bowel disease (IBD), the gut microbiota has a central role in maintaining the microbiological homeostasis of the patient. Recent studies describe the existence of different patterns of intestinal microbiota from patients with IBD and healthy individuals . The alteration of the microbiological pattern not associated with disease is known as dysbiosis and is directly related to the degree of inflammation of the intestinal mucosa, and, thus, the clinic status: a greater dysbiosis, greater clinical correlation with disease state, so that the gut microbiota is a direct marker of the state of colonic inflammation . The state of dysbiosis is measured through different microbiological indices of the total population of bacteria in the colon. Changes in rates of these indices are the parameters that are measured to characterize the gut microbiota of the patients. In the case of ulcerative colitis (UC) studies have shown that intestinal microbiota is a central factor in maintaining the balance between deep remission and the presence of a flare-up. Despite advances, in-depth knowledge of how the gut microbiota interacts with the intestinal mucosa and alters the intestinal barrier and the molecular/genetic mechanism is still unknown. Some genes and associated cofactors have been identified but the exact mechanism of interaction has not yet been described. The data indicate that, presumably, the mechanism of regulation is a multifactorial process. In this way, a deep understanding of gut microbiota and its interactions with the host and the colon will be of great interest, in order to shape the future of IBD treatment, especially of UC. Thus, IBD patients' intestinal microbiota could be either a therapeutic target itself (fecal transplantation) or be consider as an adjustable adjuvant with immunomodulators The group of anti-TNF drugs are the most recently incorporated in the therapeutic arsenal of UC, in some cases changing the natural curse of the disease. However, it is still unknown how these drugs modulate the intestinal microbiota and how they interfere with it, although, probably, they develop a role. Recent results from studies by our group, indicate that on entering clinical remission, gut microbiota is modified to patterns less related with dysbiosis. Given the increasing importance of the use of anti-TNF drugs, it is of great interest to discriminate between the patterns associated with dysbiosis and those related with healthy mucosa, and how they are modified as a result of the use of anti-TNF drugs. In this way, previous results of our group analyzing the changes of intestinal microbiota associated with Adalimumab anti-TNF drug treatment have shown that during the progression of the patient into remission, the mucosal dysbiosis pattern changes. On the other hand, our group has also observed that after drug treatment failure, the gut microbiota returns to a pattern closer to dysbiosis. For that reason, gut microbiota could be considered as an excellent indicator of the real drug effectiveness in the patient. Regarding Golimumab, a recently introduced anti-TNF drug therapy in UC, it is still unknown how it is able to modulate the intestinal microbiota to remission-related patterns, since to date there are not available studies about the relationship between Golimumab and this phenomenon. The use of prebiotics and probiotics has shown some effectiveness as adjuvants in the treatment of UC . For that reason, further characterization of the gut microbiota patterns is very important to develop new strategies for adjuvant ability to modulate it, especially in patients receiving anti-TNF drugs and do not achieve complete remission. Similarly to recent studies, we suggest that the modulation of gut microbiota could optimize the response outcomes in patients treated with Golimumab. In conclusion, based on current trends in the literature, we suggest that modulation of the intestinal microbiota and the characterization of remission-related patterns, will have a huge impact on the management of patients with UC. Moreover, the modulation of gut microbiota together with the anti-TNF drug effectiveness could be the most promising field in the management of inflammatory bowel disease. 2\. HYPOTHESIS AND OBJECTIVES 2.1 Hypothesis 1. Intestinal microbiota profile change according to UC activity. 2. The Intestinal microbiota profile correlated to clinical remission is represented by stable intestinal microbiota biodiversity. 3. Assess if Intestinal Microbiota is a useful tool to measure Golimumab effectiveness in patients naïve to anti-TNF treatment and patients recurrent to anti-TNF treatment. 2.2 Objectives 1. To correlate clinical remission under Golimumab treatment with normal intestinal microbiota profile biodiversity 2. To characterize the pattern of intestinal microbiota associated with the use of Golimumab and temporal dynamics of microbial change. 3. Assess the effect of golimumab on the degree of colic dysbiosis in the treatment of Ulcerative Colitis naive to Golimumab. 3\. MATERIAL AND METHODS 3.1 Type of study/design Multicenter transversal pilot Study 3.2 Study population The proposed study will include 15 UC anti-TNF naïve patients from Hospital Universitari Dr. Josep Trueta. Investigators will consider remission when patients have an endoscopic Mayo score ≤1, and activity index score, Mayo= 0 points. 3.3 Interventions NOTE: The assignment of a patient to a particular therapeutic strategy is not predetermined in advance by the study protocol, instead clinical practice. Plus, the decision to prescribe a particular drug is clearly unlinked from the decision to include the patient in the study. Patients will not undergo any intervention, whether diagnostic or monitoring, other than the usual clinical practice, and epidemiological methods shall be used for the analysis of the data collected 3.3.1 Treatments GOLIMUMAB induction with 200mg at week 0, and 100mg at week 2. Under 80kg, the follow up treatment will be 50mg/month, and 100mg/month in patients over 80kg, as clinical practice. 3.4 Variables 3.4.1 Demographic variables * Age expressed in years (y) * Sex Male (M)/ Female (F) * Body Mass Index * Ethnic: Caucasian/ African/ Asiatic/ American * Tobacco: YES / NO / EX-Smoker * Age of UC diagnosis expressed in years (y) * Familiar Antecedents (YES/NO) which kind of disease? * Localization Left (L)/ Righ (R) / extended (E) 3.4.2 Clinical variables * Mayo clinic score (Clinical colitis activity index) (Schroeder KW et al. NEngl J Med 1987; 317: 1625-9). Score range: 0-9 points * CRP (C-reactive protein): blood C-reactive protein concentration (mg/L) * Faecal calprotectin: stool sample expressed in concentration of calprotectin in ug for g of feces (ug/g) * Standard Analysis: Hemoglobin: blood hemoglobin concentration (g / dl) Platelets: blood platelets concentration (x103/ ul) Leucocytes: blood leucocytes concentration (x103/ ul) Albumin: blood albumin concentration (g / dl) Creatinine levels: blood creatinine concentration (mg/ dl) 3.4.3 Endoscopic variables • Mayo (Endoscopic score of Ulcerative Colitis) (Schroeder KW et al. 1987). Mayo Endoscopic Score is based only on Endoscopic Findings. Mayo Score range from 0 to 3. o Note: Investigators will send the image to a centralized digital platform, where Mayo score will be assessed by 2 independent professionals in order to minimize inter-observer bias. 3.4.4 Microbiological variables * Operational Taxonomic Units (OTUs) * Abundance and bacterial load. 3.5 Methods The proposed study will include 15 UC patients over 18 years with informed consent signed, under treatment with anti-TNF according to clinical practice. All of them will have been screened for opportunistic infections. Patients will be anti-TNF naïve patients. Stool samples will be collected before starting Anti-TNF treatment (A), and at weeks 4 (B), 9 (C), 13 (D), 26 (E), 39 (F), and 52 (G) to complete the study. The monitoring period will be one year. Investigators will collect demographic variables (age, sex, tobacco, age of diagnosis, localization,…), clinical data (partial Mayo clinical score, CRP, albumin, hemoglobin, creatinine, leucocytes, platelets…), and microbiological variables at A, B, C, D, E, F and G. Also, 7 calprotectin sampling (at weeks 4 (B), 9 (C), 13 (D), 26 (E), 39 (F), and 52 (G) as a clinical practice) and Mayo endoscopic index (at baseline and at the end of the monitoring period as a clinical practice). Follow-up visits will also take place within routine clinical practice. For better follow-up the evolution of the patient, investigators will perform additional tests included in routine clinical practice as a rectosigmoidoscopy at week 12 after starting Anti-TNF treatment. Investigators will consider remission when patients have an endoscopic Mayo score ≤1, and activity index score, Mayo clinical score =0 points. Moreover, depending on the evolution of the patient, additional tests will also be performed as routine clinical protocol during the monitoring period. NOTE: Any test performed during the study and / or additional testing is routine clinical practice according to clinical judgment and criteria of the physician. 3.5.1 Sample processing DNA Extraction: Before microbiological analyses, genomic DNA of 16s RNA gene will be extracted using NucleoSpin® Soil Kit (Machery-Nagel GmbH & Co., Germany). DNA concentration will be determined with Qubit® BR (Invitrogen) Kit. Bacterial 16S rRNA Gene Amplification by Pyrosequencing For pyrosequencing purposes, the 16S rRNA gene was partially amplified from extracted genomic DNA using the universal bacterial primers GC-357F 5'- CGCCCG CCGCGCCCCGCGCCCGGCCCGCCGCCCCCGCCC- CCT ACG GGA GGC AGC AG-3' (341Y357) and 907R 5'-CCG TCA ATT CCT TTG AGT TT-3' (907Y926). PCR was performed with a GeneAmp PCR System ® 2700 (AppliedBiosystems)). Then we purify the PCR product with kit Ampure (Agencourt AMPure, Beckman Coulter Inc), and quantify the PCR products with Qubit® BR (Invitrogen) Kit. The pyrosequencing will be performed with a 454 Life Genome Sciences Sequencer FLX. Sequence Editing and Analysis High-quality consensus sequences will be obtained and manually refined with the Bioedit software package. Alignments were carried out with ClustalW24 software. Consensus sequences were compared with those in GenBank and the Ribosomal Database Project by using BLASTN 2.2.10. Sequences will be grouped by number of operational taxonomic units or phylotypes with the DOTUR program26 using the farthest neighbor method at a precision level of 0.01, i.e., 99% minimum similarity for any pair of sequences to belong to the same phylotype, on a distance matrix with the Jukes-Cantor correction calculated with the DNADIST program of the Phylip software package. 3.6 Statistical analysis Statistical analysis will be performed with the SPSSx version 11.0. Significance of distances between groups was checked using an analysis of variance. Pearson\_s x2 test was used to compare the prevalence of genus and species. Clinical and laboratory data will be correlated with the values of quantitative microbial indices using Receiver Operating Characteristic (ROC) curves.

Interventions

DRUGGolimumab

The treatment followed was an induction of 200 mg of Golimumab at week 0, and 100 mg at week 2. Under 70 Kg, the follow-up treatment dose would be 50 mg/month, and 100 mg/month in patients above 70 Kg asindicated in standard clinical practice.

Sponsors

Institut d'Investigació Biomèdica de Girona Dr. Josep Trueta
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* \> 18 years * Signed the informed consent * Anti-TNF naïve * Screening for opportunistic infections

Exclusion criteria

* Active tuberculosis or another chronic infections * Antibiotic treatment prior 1 month * Probiotics & Prebiotics * Gestation and lactation * Heart disfunction * Colectomy

Design outcomes

Primary

MeasureTime frameDescription
Golimumab Induced Shifts in the Abundance of Bacterial MarkersBaseline (week 0); week 4; week 9; week 13; week 26; week 39; week 52Shifts of abundance of Eubacteria (EUB), A. municiphila (AKK), M. smithii (MSM), Bacteroidetes (BAC), Ruminococcus sp. (RUM), F. prausnitzii (FPRA) and E. coli (ECO) levels will be measured prior (week 0) and progressively all through golimumab therapy until week 54. Results will be expressed as 16S gene copies of microbes per gram of faeces.

Secondary

MeasureTime frameDescription
Golimumab Induced Shifts in Calprotectin Faecal Sample LevelsBaseline (week 0); week 4; week 9; week 13; week 26; week 39; week 52Shifts on calprotectin levels will be measured prior (week 0) and progressively all through golimumab therapy until week 52. Results will be expressed as microgram of calprotectin per gram of faeces
Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScoreBaseline (week 0) and week 52Change from baseline (week 0) in the Partial Mayo score at week 52 of Golimumab treatment. The clinical Mayo Score or partial Mayo Score (PMS) uses the three non-invasive components of the full Mayo Score (stool frequency, rectal bleeding and physician's global assessement), and thus excluding the endoscopic findings scoring. Maximum score values range from 0 to 9 \[Schroeder et al 2005 NEJM; Rutgeerts et al 2005 NEJM\]. Calculations are based on the sum of scores for the three parameters. Values ranging: \<2, disease in clinical remission; 2-4, mild activity; 5-7, moderate activity; and \>7 severe activity.

Countries

Spain

Participant flow

Participants by arm

ArmCount
Ulcerative Colitis
The proposed study will include 15 UC anti-TNF naïve patients . We will consider remission when patients have an endoscopic Mayo score ≤1, and activity index score, Mayo= 0 points. Stool samples will be collected before starting Anti-TNF treatment (M0), and then every 3 months (M1, M2, M3 and M4) to complete the study. GOLIMUMAB induction with 200mg at week 0, and 100mg at week 2. Under 70kg, the follow up treatment will be 50mg/month, and 100mg/month in patients over 70kg, as clinical practice. Golimumab
15
Ulcerative Colitis
The proposed study will include 15 UC anti-TNF naïve patients . We will consider remission when patients have an endoscopic Mayo score ≤1, and activity index score, Mayo= 0 points. Stool samples will be collected before starting Anti-TNF treatment (M0), and then every 3 months (M1, M2, M3 and M4) to complete the study. GOLIMUMAB induction with 200mg at week 0, and 100mg at week 2. Under 70kg, the follow up treatment will be 50mg/month, and 100mg/month in patients over 70kg, as clinical practice. Golimumab
105
Total120

Baseline characteristics

CharacteristicUlcerative Colitis
Abundance
Total abundance of AKK 16S gene copies per gram of faeces
1137084734 16S gene copies per gram of faeces
STANDARD_DEVIATION 983517092
Abundance
Total abundance of BAC 16S gene copies per gram of faeces
72930687 16S gene copies per gram of faeces
STANDARD_DEVIATION 119110706
Abundance
Total abundance of ECO 16S gene copies per gram of faeces
13920879614 16S gene copies per gram of faeces
STANDARD_DEVIATION 23430581289
Abundance
Total abundance of EUB 16S gene copies per gram of faeces
44895329 16S gene copies per gram of faeces
STANDARD_DEVIATION 60712475
Abundance
Total abundance of FPRA 16S gene copies per gram of faeces
632588897 16S gene copies per gram of faeces
STANDARD_DEVIATION 973329718
Abundance
Total abundance of MSM 16S gene copies per gram of faeces
1694557243 16S gene copies per gram of faeces
STANDARD_DEVIATION 2573008595
Abundance
Total abundance of PHG-I 16S gene copies per gram of faeces
5595001683 16S gene copies per gram of faeces
STANDARD_DEVIATION 15764400311
Abundance
Total abundance of PHG-II 16S gene copies per gram of faeces
13444198425 16S gene copies per gram of faeces
STANDARD_DEVIATION 45637222044
Abundance
Total abundance of RUM 16S gene copies per gram of faeces
266628585 16S gene copies per gram of faeces
STANDARD_DEVIATION 670089788
Age, Continuous42 years
faecal calprotectin959.52 microgram calprotectin per gram faeces
STANDARD_DEVIATION 781.41
Sex: Female, Male
Female
8 Participants
Sex: Female, Male
Male
7 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
EG003
affected / at risk
EG004
affected / at risk
EG005
affected / at risk
EG006
affected / at risk
deaths
Total, all-cause mortality
0 / 150 / 150 / 150 / 150 / 150 / 150 / 15
other
Total, other adverse events
0 / 150 / 150 / 150 / 150 / 150 / 150 / 15
serious
Total, serious adverse events
0 / 150 / 150 / 150 / 150 / 150 / 150 / 15

Outcome results

Primary

Golimumab Induced Shifts in the Abundance of Bacterial Markers

Shifts of abundance of Eubacteria (EUB), A. municiphila (AKK), M. smithii (MSM), Bacteroidetes (BAC), Ruminococcus sp. (RUM), F. prausnitzii (FPRA) and E. coli (ECO) levels will be measured prior (week 0) and progressively all through golimumab therapy until week 54. Results will be expressed as 16S gene copies of microbes per gram of faeces.

Time frame: Baseline (week 0); week 4; week 9; week 13; week 26; week 39; week 52

ArmMeasureGroupValue (MEAN)Dispersion
Ulcerative Colitis BaselineGolimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-1 gene copies/gr1554167134258 16S gene copies per gram of faecesStandard Deviation 4379000086392
Ulcerative Colitis BaselineGolimumab Induced Shifts in the Abundance of Bacterial Markers16S RUM gene copies/gr177752390157 16S gene copies per gram of faecesStandard Deviation 446726525618
Ulcerative Colitis BaselineGolimumab Induced Shifts in the Abundance of Bacterial Markers16S ECO gene copies/gr3314495146263 16S gene copies per gram of faecesStandard Deviation 5578709830918
Ulcerative Colitis BaselineGolimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-2 gene copiese/gr3734499562508 16S gene copies per gram of faecesStandard Deviation 12677006123368
Ulcerative Colitis BaselineGolimumab Induced Shifts in the Abundance of Bacterial Markers16S MSM gene copies/gr1412131035956 16S gene copies per gram of faecesStandard Deviation 2144173829971
Ulcerative Colitis BaselineGolimumab Induced Shifts in the Abundance of Bacterial Markers16S AKK gene copies/gr631713741289 16S gene copies per gram of faecesStandard Deviation 546398384696
Ulcerative Colitis BaselineGolimumab Induced Shifts in the Abundance of Bacterial Markers16S BAC gene copies/gr24310229086 16S gene copies per gram of faecesStandard Deviation 39703568898
Ulcerative Colitis BaselineGolimumab Induced Shifts in the Abundance of Bacterial Markers16S FPRA gene copies/gr175719138207 16S gene copies per gram of faecesStandard Deviation 270369366223
Ulcerative Colitis BaselineGolimumab Induced Shifts in the Abundance of Bacterial Markers16S EUB gene copies/gr14965109899 16S gene copies per gram of faecesStandard Deviation 20237491739
Ulcerative Colitis Week 4Golimumab Induced Shifts in the Abundance of Bacterial Markers16S AKK gene copies/gr676730972613383 16S gene copies per gram of faecesStandard Deviation 619061596613631
Ulcerative Colitis Week 4Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-2 gene copiese/gr4224010739381 16S gene copies per gram of faecesStandard Deviation 15618887473109
Ulcerative Colitis Week 4Golimumab Induced Shifts in the Abundance of Bacterial Markers16S BAC gene copies/gr1154472147552 16S gene copies per gram of faecesStandard Deviation 2014237593970
Ulcerative Colitis Week 4Golimumab Induced Shifts in the Abundance of Bacterial Markers16S FPRA gene copies/gr170223467854756 16S gene copies per gram of faecesStandard Deviation 236215626215223
Ulcerative Colitis Week 4Golimumab Induced Shifts in the Abundance of Bacterial Markers16S MSM gene copies/gr1448338957715 16S gene copies per gram of faecesStandard Deviation 103802651252363
Ulcerative Colitis Week 4Golimumab Induced Shifts in the Abundance of Bacterial Markers16S ECO gene copies/gr3181151220276 16S gene copies per gram of faecesStandard Deviation 3126128990251
Ulcerative Colitis Week 4Golimumab Induced Shifts in the Abundance of Bacterial Markers16S EUB gene copies/gr132857054401767 16S gene copies per gram of faecesStandard Deviation 113260468624418
Ulcerative Colitis Week 4Golimumab Induced Shifts in the Abundance of Bacterial Markers16S RUM gene copies/gr875769282253977 16S gene copies per gram of faecesStandard Deviation 107172042366984
Ulcerative Colitis Week 4Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-1 gene copies/gr2287342976506 16S gene copies per gram of faecesStandard Deviation 5800677622879
Ulcerative Colitis Week 9Golimumab Induced Shifts in the Abundance of Bacterial Markers16S RUM gene copies/gr94665231220 16S gene copies per gram of faecesStandard Deviation 103802651252
Ulcerative Colitis Week 9Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-2 gene copiese/gr2856262666851 16S gene copies per gram of faecesStandard Deviation 11831601059514
Ulcerative Colitis Week 9Golimumab Induced Shifts in the Abundance of Bacterial Markers16S EUB gene copies/gr12779328208 16S gene copies per gram of faecesStandard Deviation 9068076455
Ulcerative Colitis Week 9Golimumab Induced Shifts in the Abundance of Bacterial Markers16S FPRA gene copies/gr155540451664 16S gene copies per gram of faecesStandard Deviation 189790530774
Ulcerative Colitis Week 9Golimumab Induced Shifts in the Abundance of Bacterial Markers16S AKK gene copies/gr648849626045 16S gene copies per gram of faecesStandard Deviation 560073798388
Ulcerative Colitis Week 9Golimumab Induced Shifts in the Abundance of Bacterial Markers16S MSM gene copies/gr1154472147552 16S gene copies per gram of faecesStandard Deviation 2014237593970
Ulcerative Colitis Week 9Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-1 gene copies/gr1443246127037 16S gene copies per gram of faecesStandard Deviation 4465319951431
Ulcerative Colitis Week 9Golimumab Induced Shifts in the Abundance of Bacterial Markers16S ECO gene copies/gr2987333503143 16S gene copies per gram of faecesStandard Deviation 3353864671731
Ulcerative Colitis Week 9Golimumab Induced Shifts in the Abundance of Bacterial Markers16S BAC gene copies/gr25492065263 16S gene copies per gram of faecesStandard Deviation 41712078985
Ulcerative Colitis Week 13Golimumab Induced Shifts in the Abundance of Bacterial Markers16S AKK gene copies/gr656752409224 16S gene copies per gram of faecesStandard Deviation 555980667881
Ulcerative Colitis Week 13Golimumab Induced Shifts in the Abundance of Bacterial Markers16S EUB gene copies/gr12851286145 16S gene copies per gram of faecesStandard Deviation 9017866924
Ulcerative Colitis Week 13Golimumab Induced Shifts in the Abundance of Bacterial Markers16S FPRA gene copies/gr156132981396 16S gene copies per gram of faecesStandard Deviation 89588898844
Ulcerative Colitis Week 13Golimumab Induced Shifts in the Abundance of Bacterial Markers16S ECO gene copies/gr2953273068761 16S gene copies per gram of faecesStandard Deviation 3369672897008
Ulcerative Colitis Week 13Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-1 gene copies/gr1454728431339 16S gene copies per gram of faecesStandard Deviation 4462926477230
Ulcerative Colitis Week 13Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-2 gene copiese/gr2850757893262 16S gene copies per gram of faecesStandard Deviation 11832638079600
Ulcerative Colitis Week 13Golimumab Induced Shifts in the Abundance of Bacterial Markers16S RUM gene copies/gr89460668888 16S gene copies per gram of faecesStandard Deviation 98352969991
Ulcerative Colitis Week 13Golimumab Induced Shifts in the Abundance of Bacterial Markers16S MSM gene copies/gr1324144197647 16S gene copies per gram of faecesStandard Deviation 2030070772991
Ulcerative Colitis Week 13Golimumab Induced Shifts in the Abundance of Bacterial Markers16S BAC gene copies/gr25406506889 16S gene copies per gram of faecesStandard Deviation 41440365839
Ulcerative Colitis Week 26Golimumab Induced Shifts in the Abundance of Bacterial Markers16S MSM gene copies/gr1419822238221 16S gene copies per gram of faecesStandard Deviation 2125371379113
Ulcerative Colitis Week 26Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-1 gene copies/gr1486551880693 16S gene copies per gram of faecesStandard Deviation 4369653984051
Ulcerative Colitis Week 26Golimumab Induced Shifts in the Abundance of Bacterial Markers16S EUB gene copies/gr12454690659 16S gene copies per gram of faecesStandard Deviation 12454690659854
Ulcerative Colitis Week 26Golimumab Induced Shifts in the Abundance of Bacterial Markers16S ECO gene copies/gr2670971592149 16S gene copies per gram of faecesStandard Deviation 3245749806014
Ulcerative Colitis Week 26Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-2 gene copiese/gr3374769646848 16S gene copies per gram of faecesStandard Deviation 12473113644843
Ulcerative Colitis Week 26Golimumab Induced Shifts in the Abundance of Bacterial Markers16S BAC gene copies/gr24041089844 16S gene copies per gram of faecesStandard Deviation 39392492447
Ulcerative Colitis Week 26Golimumab Induced Shifts in the Abundance of Bacterial Markers16S RUM gene copies/gr175237205610 16S gene copies per gram of faecesStandard Deviation 443046731406
Ulcerative Colitis Week 26Golimumab Induced Shifts in the Abundance of Bacterial Markers16S AKK gene copies/gr631530294495 16S gene copies per gram of faecesStandard Deviation 541410081002
Ulcerative Colitis Week 26Golimumab Induced Shifts in the Abundance of Bacterial Markers16S FPRA gene copies/gr147240545450 16S gene copies per gram of faecesStandard Deviation 178731186533
Ulcerative Colitis Week 39Golimumab Induced Shifts in the Abundance of Bacterial Markers16S FPRA gene copies/gr147465572493 16S gene copies per gram of faecesStandard Deviation 178661245731
Ulcerative Colitis Week 39Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-1 gene copies/gr1484947845315 16S gene copies per gram of faecesStandard Deviation 4370115404158
Ulcerative Colitis Week 39Golimumab Induced Shifts in the Abundance of Bacterial Markers16S MSM gene copies/gr1378914738249 16S gene copies per gram of faecesStandard Deviation 2079724959914
Ulcerative Colitis Week 39Golimumab Induced Shifts in the Abundance of Bacterial Markers16S EUB gene copies/gr12503490379 16S gene copies per gram of faecesStandard Deviation 8532885467
Ulcerative Colitis Week 39Golimumab Induced Shifts in the Abundance of Bacterial Markers16S RUM gene copies/gr140434420342 16S gene copies per gram of faecesStandard Deviation 366893347216
Ulcerative Colitis Week 39Golimumab Induced Shifts in the Abundance of Bacterial Markers16S ECO gene copies/gr2676569979573 16S gene copies per gram of faecesStandard Deviation 3242227933303
Ulcerative Colitis Week 39Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-2 gene copiese/gr3377322959435 16S gene copies per gram of faecesStandard Deviation 12472534823110
Ulcerative Colitis Week 39Golimumab Induced Shifts in the Abundance of Bacterial Markers16S BAC gene copies/gr24145355533 16S gene copies per gram of faecesStandard Deviation 39357796954
Ulcerative Colitis Week 39Golimumab Induced Shifts in the Abundance of Bacterial Markers16S AKK gene copies/gr624464830535 16S gene copies per gram of faecesStandard Deviation 541709460521
Ulcerative Colitis Week 52Golimumab Induced Shifts in the Abundance of Bacterial Markers16S FPRA gene copies/gr147013558563 16S gene copies per gram of faecesStandard Deviation 220645931988
Ulcerative Colitis Week 52Golimumab Induced Shifts in the Abundance of Bacterial Markers16S AKK gene copies/gr588975881273 16S gene copies per gram of faecesStandard Deviation 573284067068
Ulcerative Colitis Week 52Golimumab Induced Shifts in the Abundance of Bacterial Markers16S ECO gene copies/gr2862128876536 16S gene copies per gram of faecesStandard Deviation 3694099594126
Ulcerative Colitis Week 52Golimumab Induced Shifts in the Abundance of Bacterial Markers16S RUM gene copies/gr183217036465 16S gene copies per gram of faecesStandard Deviation 470624954343
Ulcerative Colitis Week 52Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-1 gene copies/gr2264764764378 16S gene copies per gram of faecesStandard Deviation 5588585629983
Ulcerative Colitis Week 52Golimumab Induced Shifts in the Abundance of Bacterial Markers16S MSM gene copies/gr1354846963287 16S gene copies per gram of faecesStandard Deviation 2528371614749
Ulcerative Colitis Week 52Golimumab Induced Shifts in the Abundance of Bacterial Markers16S EUB gene copies/gr12813434576 16S gene copies per gram of faecesStandard Deviation 10526337966
Ulcerative Colitis Week 52Golimumab Induced Shifts in the Abundance of Bacterial Markers16S BAC gene copies/gr26282792708 16S gene copies per gram of faecesStandard Deviation 45453286920
Ulcerative Colitis Week 52Golimumab Induced Shifts in the Abundance of Bacterial Markers16S PHG-2 gene copiese/gr4956971378048 16S gene copies per gram of faecesStandard Deviation 16148476082404
Secondary

Golimumab Induced Shifts in Calprotectin Faecal Sample Levels

Shifts on calprotectin levels will be measured prior (week 0) and progressively all through golimumab therapy until week 52. Results will be expressed as microgram of calprotectin per gram of faeces

Time frame: Baseline (week 0); week 4; week 9; week 13; week 26; week 39; week 52

ArmMeasureValue (MEAN)Dispersion
Ulcerative Colitis BaselineGolimumab Induced Shifts in Calprotectin Faecal Sample Levels1379.78 mg/gStandard Deviation 761.52
Ulcerative Colitis Week 4Golimumab Induced Shifts in Calprotectin Faecal Sample Levels626.79 mg/gStandard Deviation 800.3
Ulcerative Colitis Week 9Golimumab Induced Shifts in Calprotectin Faecal Sample Levels1267.50 mg/gStandard Deviation 811.18
Ulcerative Colitis Week 13Golimumab Induced Shifts in Calprotectin Faecal Sample Levels1036.68 mg/gStandard Deviation 883.24
Ulcerative Colitis Week 26Golimumab Induced Shifts in Calprotectin Faecal Sample Levels994.39 mg/gStandard Deviation 714.6
Ulcerative Colitis Week 39Golimumab Induced Shifts in Calprotectin Faecal Sample Levels545.64 mg/gStandard Deviation 635.46
Ulcerative Colitis Week 52Golimumab Induced Shifts in Calprotectin Faecal Sample Levels478.50 mg/gStandard Deviation 881.02
Secondary

Golimumab Induced Shifts in Clinical Response Based on Partial Mayo Score

Change from baseline (week 0) in the Partial Mayo score at week 52 of Golimumab treatment. The clinical Mayo Score or partial Mayo Score (PMS) uses the three non-invasive components of the full Mayo Score (stool frequency, rectal bleeding and physician's global assessement), and thus excluding the endoscopic findings scoring. Maximum score values range from 0 to 9 \[Schroeder et al 2005 NEJM; Rutgeerts et al 2005 NEJM\]. Calculations are based on the sum of scores for the three parameters. Values ranging: \<2, disease in clinical remission; 2-4, mild activity; 5-7, moderate activity; and \>7 severe activity.

Time frame: Baseline (week 0) and week 52

Population: Baseline (week 0) and week 52

ArmMeasureGroupValue (NUMBER)
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 12 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 98 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 53 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 102 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 32 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 113 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 66 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 122 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 29 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 133 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 75 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 143 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 40 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 154 score on a scale
Ulcerative Colitis BaselineGolimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 87 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 151 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 25 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 30 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 10 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 50 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 60 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 72 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 80 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 90 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 101 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 110 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 125 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 130 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 141 score on a scale
Ulcerative Colitis Week 4Golimumab Induced Shifts in Clinical Response Based on Partial Mayo ScorePatient 40 score on a scale

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026