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Oral Cavity Carcinoma clinical trials

View clinical trials related to Oral Cavity Carcinoma.

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NCT ID: NCT05973656 Recruiting - Fanconi Anemia Clinical Trials

Role of Acetaldehyde in the Development of Oral Cancer

Start date: July 8, 2022
Phase: N/A
Study type: Interventional

This is a minimal risk intervention study where healthy volunteers and individuals with Fanconi anemia will consume a single dose of alcohol and provide primarily non-invasive biological samples at various time points. Biospecimens to be collected include saliva, oral cells collected via mouthwash and cheek brush, and urine. The collection of two blood samples (5 mL each) will be optional and banked for future use.

NCT ID: NCT05536037 Terminated - Clinical trials for Oral Cavity Carcinoma

Metformin for the Prevention of Oral Cancer in Patients With Oral Premalignant Lesions

Start date: May 4, 2022
Phase: Phase 1
Study type: Interventional

This phase I trial tests whether metformin works in reducing the annual transformation (development of invasive cancer) of oral precancerous lesions into cancerous lesions. Metformin is a drug approved for the treatment of diabetes, but studies have shown that it may have some anticancer properties. Giving metformin may help prevent or slow the development of oral cancer from precancerous lesions.

NCT ID: NCT05075980 Recruiting - Clinical trials for Head and Neck Carcinoma

HEADLIGHT: Hypofractionated Proton Therapy for Head and Neck Cancers

Start date: February 16, 2022
Phase: Phase 2
Study type: Interventional

This clinical trial tests whether intensity modulated proton therapy after surgery works to shrink tumors in patients with head and neck cancer. Radiation therapy uses high energy protons to kill tumor cells and shrink tumors.

NCT ID: NCT04870762 Recruiting - Clinical trials for Head and Neck Carcinoma

Customized 3D Printed Oral Stents During Head and Neck Radiotherapy

Start date: May 26, 2021
Phase: Phase 2
Study type: Interventional

This clinical trial studies the effect of customized 3 dimensional (3D) printed oral tents on patients with head and neck cancer who are receiving radiotherapy. Oral stents are made from the impression of patients' mouth and cover patients' teeth and gums during radiation therapy. A customized, 3D-printed oral stent may help to reduce mouth blisters and/or sores that may develop in patients while receiving head and neck radiation therapy.

NCT ID: NCT04788264 Completed - Lung Carcinoma Clinical Trials

Exercise Training and Behavioral Modification for the Improvement of Physical Activity in Head and Neck Cancer Patients Undergoing Cancer Treatment

Start date: March 28, 2021
Phase: N/A
Study type: Interventional

This clinical trial evaluates the tolerability of a physical activity program in head and neck cancer patients who are undergoing cancer treatment. The goal of this trial is to give patients exercises prescribed by a physical therapist that they are able to complete regularly at home. Increasing physical activity may help patients reduce fatigue, improve mood, increase physical performance, and decrease joint pain.

NCT ID: NCT04162873 Suspended - Clinical trials for Clinical Stage III HPV-Mediated (p16-Positive) Oropharyngeal Carcinoma AJCC v8

Celecoxib Through Surgery and Radiation Therapy for the Treatment of Advanced Head and Neck Cancer

Start date: November 27, 2019
Phase: Phase 2
Study type: Interventional

This phase II trial studies how well celecoxib works through surgery and radiation therapy in treating patients with head and neck cancer that has spread to other places in the body (advanced). Celecoxib is Food and Drug Administration approved to treat arthritis, acute pain, and painful menstrual periods. Adding celecoxib to standard of care treatment may help to decrease the amount of time between surgery and radiation therapy.

NCT ID: NCT03488095 Completed - Clinical trials for Oral Cavity Carcinoma

Behavior Changing Intervention for Smokeless Tobacco and Betel Quid Use in Adolescents

Start date: May 1, 2016
Phase: N/A
Study type: Interventional

Smokeless tobacco (SLT) is a known risk factor for Oral, Pharyngeal and Esophageal carcinoma. Three-quarters global SLT consumption is among the South Asian Population. The habit of SLT chewing commences at a very young age which has an underpinning of socio-cultural dimension in South Asian population which perhaps due to its more addictive potential, has more dependency. Youth also perceives SLT as a part of confectionery, which is socially served in South Asian ceremonies. There exists very little or no evidence regarding efficacy of SLT cessation interventions in this population. Most of the existing interventions are based in western world with little or no cultural sensitivities pertinent to South Asia. In this study, a culturally rooted behavior changing intervention (BCI) to alter SLT use prevalence, perceptions pertinent to the deleterious effects of SLT use in the etiology of oral cancers and help youth quit SLT in Karachi, Pakistan. Baseline demography and SLT use prevalence will be ascertained among 11-16-year-old school going children from both government and private schools. Multi stage cluster sampling will randomly recruit forty clusters (schools) from within 6 districts of Karachi, which will then be divided into intervention and control groups (clusters) using block randomization based on proportionate number of each school type present (Government and Private). Both groups' participants will complete all questionnaires pre and post intervention as described elsewhere and will also undergo screening for oral cancer and oral potentially malignant lesions (OPMLs). Students in intervention cluster will be given BCI and printed pamphlets along with a gift pack (reminder for SLT quit, a branded tooth paste and a tooth brush) while students in control cluster will only differ in that they will not be exposed to BCI. BCI was designed after reviewing literature and consulting specialist group for all untoward effects of SLT use in Oral Cavity that have a potential of transforming into oral carcinoma. A follow up after 12 weeks will be conducted to re-assess their SLT use prevalence, perceptions regarding hazardous effects of SLT use in oral cavity, dependency on SLT and success in quit (among users in both groups), and perception regarding warning labels on SLT product packet

NCT ID: NCT02882282 Active, not recruiting - Clinical trials for Oral Cavity Carcinoma

Pembrolizumab in Treating Patients With High Risk Oral Intraepithelial Neoplasia

Start date: June 14, 2017
Phase: Phase 2
Study type: Interventional

This randomized phase II trial studies how well pembrolizumab works in treating patients with high risk oral intraepithelial neoplasia. Immunotherapy with monoclonal antibodies, such as pembrolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread.

NCT ID: NCT02834013 Active, not recruiting - Clinical trials for Nasopharyngeal Carcinoma

Nivolumab and Ipilimumab in Treating Patients With Rare Tumors

Start date: January 30, 2017
Phase: Phase 2
Study type: Interventional

This phase II trial studies nivolumab and ipilimumab in treating patients with rare tumors. Immunotherapy with monoclonal antibodies, such as nivolumab and ipilimumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. This trial enrolls participants for the following cohorts based on condition: 1. Epithelial tumors of nasal cavity, sinuses, nasopharynx: A) Squamous cell carcinoma with variants of nasal cavity, sinuses, and nasopharynx and trachea (excluding laryngeal, nasopharyngeal cancer [NPC], and squamous cell carcinoma of the head and neck [SCCHN]) B) Adenocarcinoma and variants of nasal cavity, sinuses, and nasopharynx (closed to accrual 07/27/2018) 2. Epithelial tumors of major salivary glands (closed to accrual 03/20/2018) 3. Salivary gland type tumors of head and neck, lip, esophagus, stomach, trachea and lung, breast and other location (closed to accrual) 4. Undifferentiated carcinoma of gastrointestinal (GI) tract 5. Adenocarcinoma with variants of small intestine (closed to accrual 05/10/2018) 6. Squamous cell carcinoma with variants of GI tract (stomach small intestine, colon, rectum, pancreas) (closed to accrual 10/17/2018) 7. Fibromixoma and low grade mucinous adenocarcinoma (pseudomixoma peritonei) of the appendix and ovary (closed to accrual 03/20/2018) 8. Rare pancreatic tumors including acinar cell carcinoma, mucinous cystadenocarcinoma or serous cystadenocarcinoma. Pancreatic adenocarcinoma is not eligible (closed to accrual) 9. Intrahepatic cholangiocarcinoma (closed to accrual 03/20/2018) 10. Extrahepatic cholangiocarcinoma and bile duct tumors (closed to accrual 03/20/2018) 11. Sarcomatoid carcinoma of lung 12. Bronchoalveolar carcinoma lung. This condition is now also referred to as adenocarcinoma in situ, minimally invasive adenocarcinoma, lepidic predominant adenocarcinoma, or invasive mucinous adenocarcinoma 13. Non-epithelial tumors of the ovary: A) Germ cell tumor of ovary B) Mullerian mixed tumor and adenosarcoma (closed to accrual 03/30/2018) 14. Trophoblastic tumor: A) Choriocarcinoma (closed to accrual) 15. Transitional cell carcinoma other than that of the renal, pelvis, ureter, or bladder (closed to accrual) 16. Cell tumor of the testes and extragonadal germ tumors: A) Seminoma and testicular sex cord cancer B) Non seminomatous tumor C) Teratoma with malignant transformation (closed to accrual) 17. Epithelial tumors of penis - squamous adenocarcinoma cell carcinoma with variants of penis (closed to accrual) 18. Squamous cell carcinoma variants of the genitourinary (GU) system 19. Spindle cell carcinoma of kidney, pelvis, ureter 20. Adenocarcinoma with variants of GU system (excluding prostate cancer) (closed to accrual 07/27/2018) 21. Odontogenic malignant tumors 22. Pancreatic neuroendocrine tumor (PNET) (formerly named: Endocrine carcinoma of pancreas and digestive tract.) (closed to accrual) 23. Neuroendocrine carcinoma including carcinoid of the lung (closed to accrual 12/19/2017) 24. Pheochromocytoma, malignant (closed to accrual) 25. Paraganglioma (closed to accrual 11/29/2018) 26. Carcinomas of pituitary gland, thyroid gland parathyroid gland and adrenal cortex (closed to accrual) 27. Desmoid tumors 28. Peripheral nerve sheath tumors and NF1-related tumors (closed to accrual 09/19/2018) 29. Malignant giant cell tumors 30. Chordoma (closed to accrual 11/29/2018) 31. Adrenal cortical tumors (closed to accrual 06/27/2018) 32. Tumor of unknown primary (Cancer of Unknown Primary; CuP) (closed to accrual 12/22/2017) 33. Not Otherwise Categorized (NOC) Rare Tumors [To obtain permission to enroll in the NOC cohort, contact: S1609SC@swog.org] (closed to accrual 03/15/2019) 34. Adenoid cystic carcinoma (closed to accrual 02/06/2018) 35. Vulvar cancer (closed to accrual) 36. MetaPLASTIC carcinoma (of the breast) (closed to accrual) 37. Gastrointestinal stromal tumor (GIST) (closed to accrual 09/26/2018) 38. Perivascular epithelioid cell tumor (PEComa) 39. Apocrine tumors/extramammary Paget's disease (closed to accrual) 40. Peritoneal mesothelioma 41. Basal cell carcinoma (temporarily closed to accrual 04/29/2020) 42. Clear cell cervical cancer 43. Esthenioneuroblastoma (closed to accrual) 44. Endometrial carcinosarcoma (malignant mixed Mullerian tumors) (closed to accrual) 45. Clear cell endometrial cancer 46. Clear cell ovarian cancer (closed to accrual) 47. Gestational trophoblastic disease (GTD) 48. Gallbladder cancer 49. Small cell carcinoma of the ovary, hypercalcemic type 50. PD-L1 amplified tumors 51. Angiosarcoma 52. High-grade neuroendocrine carcinoma (pancreatic neuroendocrine tumor [PNET] should be enrolled in Cohort 22; prostatic neuroendocrine carcinomas should be enrolled into Cohort 53). Small cell lung cancer is not eligible (closed to accrual) 53. Treatment-emergent small-cell neuroendocrine prostate cancer (t-SCNC)

NCT ID: NCT02581137 Active, not recruiting - Oral Leukoplakia Clinical Trials

Metformin Hydrochloride in Preventing Oral Cancer in Patients With an Oral Premalignant Lesion

Start date: June 10, 2016
Phase: Phase 2
Study type: Interventional

This phase IIa trial studies how well metformin hydrochloride works in preventing oral cancer in patients with an oral premalignant lesion (oral leukoplakia or erythroplakia). Oral premalignant lesions look like red or whitish plaques or lesions in the mouth that do not rub off and can be associated with a higher risk of cancer. Metformin hydrochloride may help prevent oral cancer from forming in patients with an oral premalignant lesion.