Current partner codePEPTIDESDE
NCT03686618·Phase 2·INTERVENTIONAL

Secretin for Acute Pancreatitis

Status

Unknown

Phase

Phase 2

Enrollment

40

Locations

1

Results

Not posted

Publications

12

Study summary

What the protocol is testing.

Acute pancreatitis is a frequently devastating pancreatic inflammatory process that results in extensive morbidity, mortality, and hospitalization costs. The incidence of acute pancreatitis has been increasing over the last decade with an overall mortality rate of 5%, although it may be as high as 30% in the most severe cases. It was the most common inpatient gastrointestinal diagnosis in 2009, totaling over 270,000 hospitalizations with estimated "inpatient costs" of over 2.5 billion dollars in the United States. However, despite the significant impact to both patients and the healthcare system, there is no proven pharmacologic therapy that improves important clinical outcomes in acute pancreatitis. The release of bicarbonate rich fluid into the pancreatic duct from the ductal cells is an important mechanism to protect against pancreatitis by two distinct mechanisms: 1. "Flushing" activated enzymes out of the pancreas and into the duodenum thereby preventing accumulation of activated enzymes within the pancreatic acinus 2. Directly alkalinizing the acinar cells, which limits intra-acinar cell damage by improving trafficking of inappropriately activated intra-acinar enzymes along the apical membrane. In addition to standard care, patients will be divided into 4 cohorts. Cohorts 1,2 and 3 will be treated with different doses of intravenous synthetic human secretin. Cohort X will not receive human secretin, but all datapoints and specimens will be collected. The patient cohorts will be entered into the study as follows: Cohort X; Cohort 1; Cohort 2; Cohort 3. 5 patients in each cohort will be evaluated at each center (for a total of n=10 at both centers for each cohort). Dosing will start within 24 hours of hospitalization with no further synthetic human secretin administration beyond Day 3. Patients will continue to be followed for 7 days or until discharge, whichever comes first. Any data recorded to that point would be included in an intent-to-treat analysis. The primary objective is to perform a Phase II Pilot Study to explore the efficacy of intravenous synthetic human secretin as a pharmacologic adjunct to modulate the severity of human acute (non-obstructive) pancreatitis.

Full detailed description

This is a prospective, phase II exploratory pilot study using different dose frequencies of intravenous human secretin in patients with non-obstructive, interstitial acute pancreatitis. All enrolled patients will receive standard of care therapy in regard to fluid resuscitation, pain control, CT scan or ultrasound imaging and nutritional support. In addition to standard of care, patients will be divided into 4 cohorts of 10 patients. Cohorts 1,2 and 3 will receive different doses of intravenous synthetic human secretin. Cohort X will not receive drug. Dosing will start within 24 hours of hospitalization with no further secretin administration beyond Day 3. Patients will continue to be followed until discharge. The primary study endpoint will be the decrease in serum C-reactive protein (CRP) level by 50% within 96 hours and/or at discharge compared with CRP level at admission to determine optimal frequency of dosing. Secondary study endpoints will include: 1) Serum measurements of pro- and anti-inflammatory cytokines including sCD40L, EGF, Eotaxin/CCL11, FGF-2, Flt-3 ligand, Fractalkine, G-CSF, GM-CSF, GRO, IFN-α2, IFN-γ, IL-1α, IL-1β, IL-1ra, IL-2, IL-3, IL-4, IL-5, IL-6, IL-7, IL-8, IL-9, IL-10, IL-12 (p40), IL-12 (p70), IL-13, IL-15, IL-17A, IP-10, MCP-1, MCP-3, MDC (CCL22), MIP-1α, MIP-1β, PDGF-AA, PDGF-AB/BB, RANTES, TGF-α, TNF-α, TNF-β, VEGF, HSP 27, HSP 60, HSP 70, HSP 90 at time of study enrollment, days of secretin administration, 96 hours and at discharge 2) Clinically relevant outcome measures including hemoconcentration (fall in blood urea nitrogen and hematocrit from admission), decrease in patient admission pain scores (visual analogue scale), decrease in systemic inflammatory response, and tolerance of oral nutrition 3) Calculation of the Dynamic Acute Pancreatitis Score - organ failure, systemic inflammatory response syndrome, abdominal pain, requirement for opiates and ability to tolerate oral intake 4) Length of hospitalization, need for intensive care unit transfer, mortality, need for surgical, endoscopic or percutaneous intervention 5) Development of pancreatic necrosis and/or persistent organ failure and 6) Adverse events and 30 day readmission rate.

Interventions

Treatment arms and agents.

DRUG

Secretin

Drug to stimulate pancreatic secretion

Timeline

From registration to results.

  1. First posted

    Sep 27, 2018

  2. Study start

    Oct 1, 2018

  3. Primary completion

    Oct 1, 2019

  4. Study completion

    Nov 1, 2019

  5. Results posted

    Not reported

  6. Registry updated

    Apr 10, 2019

Outcomes

What the study measures.

Primary outcomes

Change in CRP level

Time frame · 96 hours and through study completion an average of day 7

Change in serum C-reactive protein (CRP) level by 50% within 96 hours and/or at discharge compared with CRP level at admission to determine optimal frequency of dosing

Secondary outcomes

Pro- and anti-inflammatory markers

Time frame · Day 1, Day 2, Day 3, 96 hours and through study completion an average of day 7

Serum measurements of pro- and anti-inflammatory cytokines including sCD40L, EGF, Eotaxin/CCL11, FGF-2, Flt-3 ligand, Fractalkine, G-CSF, GM-CSF, GRO, IFN-α2, IFN-γ, IL-1α, IL-1β, IL-1ra, IL-2, IL-3, IL-4, IL-5, IL-6, IL-7, IL-8, IL-9, IL-10, IL-12 (p40), IL-12 (p70), IL-13, IL-15, IL-17A,IP-10, MCP-1, MCP-3, MDC (CCL22), MIP-1α, MIP-1β, PDGF-AA, PDGF-AB/BB, RANTES, TGF-α, TNF-α, TNF-β, VEGF, HSP 27, HSP 60, HSP 70, HSP 90 at time of study enrollment, days of secretin administration, 96 hours and at discharge

Eligibility

Who can take part.

Minimum age
18 Years
Maximum age
Not reported
Sex
ALL
Healthy volunteers
No

Inclusion Criteria: 1. Patient is male or female ≥18 years of age 2. Patient voluntarily signed written, informed consent agreement. 3. If patient is female and not more than 1 year post-menopausal, or surgically sterile, must use medically accepted form of contraception or abstain from sexual activities during study 4. Patient has acute pancreatitis as defined by the Atlanta Classification of 2012 5. No evidence of obstructive pancreatitis on available cross-sectional imaging Exclusion Criteria: 1. Pancreatitis with duct obstruction or severe acute pancreatitis defined by Atlanta Classification 2. Pregnant woman, nursing mothers, or women of childbearing potential not on birth control 3. Known adverse reaction to human secretin

Study locations

1 registered sites.

United States. Showing up to 24 locations stored in the fast local snapshot.

Dartmouth Hitchcock Medical Center

Lebanon, New Hampshire, United States

Publications

Results and literature.

PMID 19245868Everhart JE, Ruhl CE. Burden of digestive diseases in the United States Part III: Liver, biliary tract, and pancreas. Gastroenterology. 2009 Apr;136(4):1134-44. doi: 10.1053/j.gastro.2009.02.038. Epub 2009 Feb 24. No abstract available.PMID 27959604Forsmark CE, Vege SS, Wilcox CM. Acute Pancreatitis. N Engl J Med. 2016 Nov 17;375(20):1972-1981. doi: 10.1056/NEJMra1505202.PMID 22885331Peery AF, Dellon ES, Lund J, Crockett SD, McGowan CE, Bulsiewicz WJ, Gangarosa LM, Thiny MT, Stizenberg K, Morgan DR, Ringel Y, Kim HP, DiBonaventura MD, Carroll CF, Allen JK, Cook SF, Sandler RS, Kappelman MD, Shaheen NJ. Burden of gastrointestinal disease in the United States: 2012 update. Gastroenterology. 2012 Nov;143(5):1179-1187.e3. doi: 10.1053/j.gastro.2012.08.002. Epub 2012 Aug 8.PMID 7680018Lerch MM, Saluja AK, Runzi M, Dawra R, Saluja M, Steer ML. Pancreatic duct obstruction triggers acute necrotizing pancreatitis in the opossum. Gastroenterology. 1993 Mar;104(3):853-61. doi: 10.1016/0016-5085(93)91022-a.PMID 8865463Rattner DW. Experimental models of acute pancreatitis and their relevance to human disease. Scand J Gastroenterol Suppl. 1996;219:6-9. doi: 10.3109/00365529609104991.PMID 20876773Hegyi P, Pandol S, Venglovecz V, Rakonczay Z Jr. The acinar-ductal tango in the pathogenesis of acute pancreatitis. Gut. 2011 Apr;60(4):544-52. doi: 10.1136/gut.2010.218461. Epub 2010 Sep 28.PMID 8760102Grady T, Saluja A, Kaiser A, Steer M. Edema and intrapancreatic trypsinogen activation precede glutathione depletion during caerulein pancreatitis. Am J Physiol. 1996 Jul;271(1 Pt 1):G20-6. doi: 10.1152/ajpgi.1996.271.1.G20.PMID 1744444Prinz RA. Mechanisms of acute pancreatitis. Vascular etiology. Int J Pancreatol. 1991 Summer;9:31-8. doi: 10.1007/BF02925576.PMID 25921231Hegyi P, Rakonczay Z Jr. The role of pancreatic ducts in the pathogenesis of acute pancreatitis. Pancreatology. 2015 Jul;15(4 Suppl):S13-7. doi: 10.1016/j.pan.2015.03.010. Epub 2015 Apr 7.PMID 26526716Song L, Wormann S, Ai J, Neuhofer P, Lesina M, Diakopoulos KN, Ruess D, Treiber M, Witt H, Bassermann F, Halangk W, Steiner JM, Esposito I, Rosendahl J, Schmid RM, Riemann M, Algul H. BCL3 Reduces the Sterile Inflammatory Response in Pancreatic and Biliary Tissues. Gastroenterology. 2016 Feb;150(2):499-512.e20. doi: 10.1053/j.gastro.2015.10.017. Epub 2015 Oct 23.PMID 26112745Vege SS, Atwal T, Bi Y, Chari ST, Clemens MA, Enders FT. Pentoxifylline Treatment in Severe Acute Pancreatitis: A Pilot, Double-Blind, Placebo-Controlled, Randomized Trial. Gastroenterology. 2015 Aug;149(2):318-20.e3. doi: 10.1053/j.gastro.2015.04.019. Epub 2015 Jun 23.PMID 25500204Noel P, Patel K, Durgampudi C, Trivedi RN, de Oliveira C, Crowell MD, Pannala R, Lee K, Brand R, Chennat J, Slivka A, Papachristou GI, Khalid A, Whitcomb DC, DeLany JP, Cline RA, Acharya C, Jaligama D, Murad FM, Yadav D, Navina S, Singh VP. Peripancreatic fat necrosis worsens acute pancreatitis independent of pancreatic necrosis via unsaturated fatty acids increased in human pancreatic necrosis collections. Gut. 2016 Jan;65(1):100-11. doi: 10.1136/gutjnl-2014-308043. Epub 2014 Dec 10.

Primary links

Continue at the source.

Related trials

More studies on Secretin.

Related PeptideStat pages

Put the record in context.

Research pages describe evidence. Vendor pages, where available, describe independently tracked research-product listings and are not clinical recommendations.