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RecruitingNCT07185672PReCedeNTUpdated Sep 22, 2025

PRRT Versus PRRT Plus Chemotherapy in GEP NET (PReCedeNT Trial)

A Phase 3 interventional study of Peptide Receptor Radionuclide Therapy with Lu177 DOTATATE and Capecitabine plus temozolamide in Neuroendocrine Neoplasia's (NENs), Neuroendocrine Tumor GEP Grade 1-3 and Neuroendocrine Gastroenteropancreatic Tumour, sponsored by Tata Memorial Hospital. Recruiting at 2 sites in India. Open to participants aged 18 Years and older. Per ClinicalTrials.gov, last updated 2025-09-22.

Sponsored by Tata Memorial Hospital · Phase 3, Interventional, and Treatment

From the registry’s dates

  • Registered 6 years after the study started (first participant enrolled Aug 2019, registered Aug 2025).
  • Started Aug 2019; still recruiting 7 years 2 months later.
Phase
Phase 3
Study type
Interventional
Enrollment
162
Allocation
Randomized
Ages
18 Years and older
Sex
All
01

Study summary

Neuroendocrine tumours (NETs), better defined as neoplasms (NENs), are a heterogeneous group of neoplasms that range from well-differentiated tumours to more aggressive carcinomas. Peptide receptor radionuclide therapy (PRRT) with Lutetium-177 DOTATATE is the established standard of care for patients with well-differentiated metastatic or locally advanced GEP-NETs. It has demonstrated a significant improvement in outcomes compared to Octreotide LAR, both as a first-line and second-line treatment approach, following the results of NETTER-1 and NETTER-2 trials, respectively. ENETS guidelines recommend the use of Ga-68 labeled DOTANOC/TOC/TATAE imaging only for WHO Grade 1 NET whereas FDG PET is the preferred modality for WHO Grade 3 NEN and NEC. For Grade 2 tumors (Mib index ranging from 3-20%), there are no strong recommendations for the addition of FDG PETCT in existing diagnostic algorithm. FDG PET positivity has been shown to be an independent predictor of shorter progression-free and overall survival in NET patients undergoing peptide receptor radionuclide therapy (PRRT). (8) Consequently, it is imperative to address FDG-avid tumors by integrating PRRT and chemotherapy. There are no strong recommendations for the grade wise management of GEP-NETs particularly grade 2 \& 3. Although recently published NETTER 2 trial substantiated the role of PRRT as a first line treatment for advanced grade GEP-NETs, still there is lack of evidence supporting the addition of chemotherapy in management of GEP-NETs. Given the absence of a prospective study to establish this treatment regimen, we designed a Phase 3 Randomized Controlled Trial to evaluate the combination of PRRT and CAPE-TEM-based chemotherapy in patients with FDG-positive metastatic well-differentiated NETs.

Read the detailed description

Neuroendocrine tumors (NETs) are a heterogeneous group of malignancies ranging from well- differentiated, slowly growing tumors to poorly differentiated neoplasms, which are aggressive and less frequent. Neuroendocrine cells have the ability to express several peptide receptors in high volumes, especially somatostatin receptors, which are heptahelical G-protein-coupled glycoprotein transmembrane receptors. In the most recent SEER register (SEER-17), more than half of all NETs, i.e. 61%, were gastroenteropancreatic neuroendocrine tumors (GEP-NETs), with the highest frequency being found in the rectum (17.7%), the small intestine (17.3%), and the colon (10.1%) . The tumor biology varies with the location of the primary tumors as well as with the grade and staging of the tumors. The malignant potential ranges from the most benign types of tumor to small intestinal tumors and up to neuroendocrine carcinoma (NEC) with very malignant behavior. The tumors are graded according to the classification system of the World Health Organization (WHO), wherein a new classification system is just being accepted. The tumors are divided into grade 1 NET (NET-G1), with a proliferation \<3%, NET-G2 with a proliferation between 3 and 20%, NET-G3, which is a new group with a Ki-67 >20%, and finally NEC-G3, exhibiting a Ki-67 of >20% as well (unpublished data). Of note, the difference between NET-G3 and NEC-G3 is mainly the degree of differentiation. NET-G3 are well-differentiated tumors, often with expression of somatostatin receptors. NEC-G3 are poorly differentiated tumors that usually lack expression of somatostatin receptors.

NETs are characterized by a general lack of symptoms until they are in advanced phase, and early biomarkers are not as available and useful as required. Heterogeneity is an intrinsic, pivotal feature of NETs that derives from diverse causes and ultimately shapes tumor fate. The different layers that conform NET heterogeneity include a wide range of distinct characteristics, from the mere location of the tumor to its clinical and functional features, and from its cellular properties, to the core signaling and (epi)genetic components defining the molecular signature of the tumor. The importance of this heterogeneity resides in that it translates into a high variability among tumors and, hence, patients, which hinders a more precise diagnosis and prognosis and more efficacious treatment of these diseases. Heterogeneity can be assessed objectively by molecular imaging techniques. Patients with well- differentiated GEP NETs undergo imaging with Ga-68-DOTATOC PET/CT (DOTA PET/CT), which is a somatostatin-receptor (SSTR)-specific imaging tracer. PET/CT with 68Ga-DOTA-peptides has been reported to present a higher sensitivity for the detection of well-differentiated, less aggressive NETs than well tolerated with negligible grade 3/4 toxicities. After a median follow-up period of 36 months, the median OS was not achieved with a median PFS of 48 months. At 3 months after completion of combination of PRRT and chemotherapy, 2% of patients showed a complete anatomical response, 28% a partial response, 68% stable disease, and only 2% progression. On FDG PET/CT, 27% achieved a complete metabolic response during the follow-up period. A biochemical response (>25% fall in chromogranin-A levels) was seen in 45%. These results established the effectiveness of the combination of PRRT and chemotherapy which is now practiced routinely. However, there is no prospective study to establish this treatment regime. The investigators therefore propose to prospectively evaluate the combination of PRRT and chemotherapy in patients with well-differentiated NETs, in a systematic manner to generate reliable conclusions with regards to this treatment regimen for intermediate to high grade NETs. On the other hand, 18F-FDG PET/CT is preferred for more aggressive, less differentiated NETs as there is emerging evidence that the presence of increased expression of GLUT (glucose-transporter) receptors in NETs highlights an increased propensity for invasion and metastasis, and an overall poorer prognosis. In fact, a strong association has recently been shown between higher 18F-FDG uptake and worse outcome even in patients with well-differentiated or low-grade tumors, with provision of prognostic information independently of the mitotic rate. Accordingly, 18F-FDG has an important role in managing patients with NETs because of its high prognostic value and its higher sensitivity in delineating disease extent, especially in aggressive and high-grade and aggressive intermediate-grade tumors. While DOTA PET avidity is a feature of well-differentiated disease, FDG avidity tends to be associated with more aggressive, de-differentiated disease. Grade 1 NET tends to be DOTA-avid but negative on FDG PET, whereas grade 3 NEC generally shows the opposite imaging phenotype. Grade 2 NET may demonstrate uptake of both tracers. Irrespective of pathological grade, the distribution of these tracers may not be spatially concordant, with some lesions having either DOTA or FDG avidity, but not both. This highlights the limitations of relying on histopathological grade from a single biopsy site to predict disease behavior. Despite the prognostic utility of pathological grading, FDG PET positivity has been consistently shown to be independently associated with a poor prognosis. SSTR expression on the surface of NET enables the use of somatostatin analogues labelled with particle-emitting radionuclides for targeted peptide receptor radionuclide therapy (PRRT) NETTER-1 trial has established Lu-177 PRRT as standard of care in treatment of metastatic well-differentiated GEP NETs. However, FDG positivity in these tumors suggests presence of aggressive phenotypes and warrants simultaneous use of chemotherapy. Strosberg et.al, have shown exceptionally high and durable response rate with combination of Capecitabine and temozolomide in metastatic well, or moderately differentiated pancreatic neuroendocrine tumor. Combination of PRRT and chemotherapy, that is, temozolomide-capecitabine (CAP-TEM) has been therefore effective in patients showing SSTR and GLUT receptor expression on Ga-68 DOTA PET and FDG PET respectively. Kong et al studied a retrospective cohort of 52 patients selected for treatment on the basis of somatostatin-receptor imaging without spatially discordant FDG-avid disease. All patients received conventional PRRT regimen, in addition oral capecitabine was added after every PRRT cycle. Clinical, biochemical and imaging response was assessed after completion of induction. Combination of PRRT and chemotherapy was well tolerated with negligible grade 3/4 toxicities. After a median follow-up period of 36 months, the median OS was not achieved with a median PFS of 48 months. At 3 months after completion of combination of PRRT and chemotherapy, 2% of patients showed a complete anatomical response, 28% a partial response, 68% stable disease, and only 2% progression. On FDG PET/CT, 27% achieved a complete metabolic response during the follow-up period. A biochemical response (>25% fall in chromogranin-A levels) was seen in 45%. These results established the effectiveness of combination of PRRT and chemotherapy which is now practiced routinely. However, there is no prospective study to establish this treatment regime. The investigators therefore propose to prospectively evaluate combination of PRRT and chemotherapy in patients with well-differentiated NETs, in systematic manner to generate reliable conclusion with regards to this treatment regimen for intermediate to high grade NETs.

02

Conditions studied

  • Neuroendocrine Neoplasia's (NENs)
  • Neuroendocrine Tumor GEP Grade 1-3
  • Neuroendocrine Gastroenteropancreatic Tumour

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Keywords

  • Peptide Receptor Radionuclide Therapy
  • Lu-177 DOTATATE
  • PRRT
  • Neuroendocrine tumor
  • Capecitabine-Temozolamide
03

In context

Neuroendocrine Tumors

676 studies on the registry are indexed under Neuroendocrine Tumors; 169 are open to participants now.

This study's planned enrollment of 162 is above the median of 42 across 464 interventional studies indexed under Neuroendocrine Tumors.

Browse Neuroendocrine Tumors studies →

Lead sponsor

Tata Memorial Hospital is the lead sponsor of 97 studies on the registry; 20 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years and older
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • Male or female, age greater than 18 years
  • Histopathological diagnosis of GEP-NET, necessarily satisfying all the the criteria below
  • Well differentiated G2 (Ki67 : ≥3-20%) OR G3 (ki67- greater than 20-55%), OR
  • Well-differentiated G1 (\<3%) with disease progression in last 6 months
  • Positive Ga-68-DOTANOC PET/CT, Krennings score >/=3
  • Positive FDG PET imaging, grade 3 or 4 uptake
  • Locally advanced/inoperable disease or metastatic disease
  • Karnofsky performance-status score of at least 60 or ECOG performance status \</= 2
  • Life expectancy greater than 6 months

Exclusion criteria

Exclusion Criteria:

  • Serum creatinine level of more than 1.6 mg/dl or a creatinine clearance of less than 50 ml/min
  • Hemoglobin level of less than 8.0 g per deciliter
  • Red blood cell count noty less than 300,000/cubic millimeter White cell count of less than 2000 per cubic millimeter
  • Platelet count of less than 75,000 per cubic millimetre
  • Total bilirubin level of more than 3 times the upper limit of the normal range
  • Serum albumin level \< 3.0 g/dl
  • Treatment with more than 30 mg of octreotide LAR within 4 weeks before randomisation.
  • Peptide receptor radionuclide therapy at any time before randomisation
  • Pregnancy and Lactation
  • Patients with concurrent malignancies
05

Study design

Phase
Phase 3
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Parallel assignment
Masking
None (open label)
Enrollment
162 participants (estimated)

Study arms

  • Active comparator
    Peptide Receptor Radionuclide Therapy with Lu177 DOTATATE

    Patient in this arm will be treated only with 4 cycles of PRRT

    Radiation: Peptide Receptor Radionuclide Therapy with Lu177 DOTATATE

  • Experimental
    PRRT with Lu-177 DOTATATE PLUS Capecitabine-Temozolamide

    Patient in this arm will be treated with combination of PRRT and Chemotherapy

    Radiation: Peptide Receptor Radionuclide Therapy with Lu177 DOTATATE · Drug: Capecitabine plus temozolamide

Interventions

  • RadiationPeptide Receptor Radionuclide Therapy with Lu177 DOTATATE

    Radionuclide Therapy

    Also known as: PRRT

  • DrugCapecitabine plus temozolamide

    Chemotherapy

    Also known as: CAPE-TEM

06

What researchers measure

Primary outcomes

  1. Progression free survival

    Progression-free survival (PFS) will be defined as the time from enrolment to the time of disease progression or death, or to the date of last tumor assessment (until 36 months from last day of completion of treatment) without any such event (censored observation).

    Time frame: From date of enrolment until the date of first documented progression or date of death from any cause, whichever came first, assessed up to 36 months

Secondary outcomes

  1. Overall survival

    The duration of overall survival (OS) will be determined by measuring the time interval from enrolment to the date of death or last observation (censored).

    Time frame: Time interval from enrolment to the date of death or last observation (censored), maximum until 24 months.

  2. Quality of Life parameters

    QOL analysis will be conducted using the following tools (with appropriate language translations) EORTC QLQ-30 EORTC G.I.NET-21

    Time frame: Day 1 of every treatment in both arms until treatment completion, and thereafter every 6 months upto 24 months

07

Study locations

2 of 2 sites recruiting
  • Tata Memorial Hospital, Mumbai, India
    Mumbai, Maharashtra 400012, India
    Recruiting
  • Advanced Centre for Treatment, Research and Education in Cancer (ACTREC)
    Navi Mumbai, Maharashtra 410210, India
    Recruiting
08

References and documents

Publications

  • Parghane RV, Ostwal V, Ramaswamy A, Bhandare M, Chaudhari V, Talole S, Shrikhande SV, Basu S. Long-term outcome of "Sandwich" chemo-PRRT: a novel treatment strategy for metastatic neuroendocrine tumors with both FDG- and SSTR-avid aggressive disease. Eur J Nucl Med Mol Imaging. 2021 Mar;48(3):913-923. doi: 10.1007/s00259-020-05004-5. Epub 2020 Sep 2. PubMed 32876706 ↗
  • Nicolini S, Bodei L, Bongiovanni A, Sansovini M, Grassi I, Ibrahim T, Monti M, Caroli P, Sarnelli A, Diano D, Di Iorio V, Grana CM, Cittanti C, Pieri F, Severi S, Paganelli G. Combined use of 177Lu-DOTATATE and metronomic capecitabine (Lu-X) in FDG-positive gastro-entero-pancreatic neuroendocrine tumors. Eur J Nucl Med Mol Imaging. 2021 Sep;48(10):3260-3267. doi: 10.1007/s00259-021-05236-z. Epub 2021 Feb 18. PubMed 33604690 ↗
  • Puranik AD, Dev ID, Yadav S, Rangarajan V, Agrawal A, Basu S, Chaudhari VA, Ramaswamy A, Ostwal V, Bhandare MS, Shrikhande SV, Parghane RV, Bhargava P, Bal MM, Yadav S, Patkar S, Goel M, Purandare NC, Shah S, Choudhury S, Ghosh S, Venkatachalam M. PReCedeNT trial: Phase III randomized-controlled trial of Lutetium - 177 DOTATATE Peptide Receptor Radionuclide Therapy (PRRT) plus Chemotherapy versus PRRT alone in FDG-avid, Well-differentiated Gastroenteropancreatic neuroendocrine tumors (GEP-NETs). BMC Cancer. 2025 Oct 28;25(1):1659. doi: 10.1186/s12885-025-15111-x. PubMed 41152774 ↗

Study documents

  • Protocol and statistical analysis plan · Feb 21, 2024
  • Informed consent form · Jul 8, 2019

Documents are hosted by the registry — open the source record to download them.

Individual participant data

Plan to share: No

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Sep 22, 2025, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT07185672
Lead sponsor
Tata Memorial Hospital
Responsible party
Ameya Puranik (Professor, Tata Memorial Hospital) — Principal investigator
First posted
Sep 22, 2025
Start date
Aug 7, 2019
Primary completion
Aug 7, 2027 (estimated)
Completion
Aug 7, 2027 (estimated)
Last update
Sep 22, 2025

Study contacts

Sushil K Yadav, MSc
Contact
sushilyadav.crc@gmail.com
912224177000 ext. 7019
Farkhanda K Khan, MSc
Contact
khanfarkhanda1998@gmail.com
912224177000 ext. 7150
Ameya Puranik, MD
principal investigator · Professor and Consultant

Oversight

Data monitoring committee
Yes
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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