panitumumab
Sources réglementaires consultées
Indications approuvées
- Chez l’adulte, cancer colorectal métastatique avec RAS de type sauvage confirmé : avec FOLFOX en première ligne ou en monothérapie après progression sous fluoropyrimidine, oxaliplatine et irinotécan.
- Chez l’adulte, cancer colorectal métastatique avec mutation KRAS G12C confirmée, en association au sotorasib après traitement antérieur par fluoropyrimidine, oxaliplatine et irinotécan.
Mises en garde cliniques
- Mise en garde encadrée · La toxicité dermatologique survient chez environ 90 % des patients et peut être sévère, infectieuse ou mortelle. Surveiller la peau et les tissus mous, limiter l’exposition au soleil et ajuster ou arrêter selon la gravité. — DailyMed, VECTIBIX set_id e0fa4bca-f245-4d92-ae29-b0c630a315c2
- Mise en garde majeure · Ne pas utiliser en monothérapie ni avec une chimiothérapie à base d’oxaliplatine dans les tumeurs RAS mutées ou de statut RAS inconnu, sauf indication KRAS G12C spécifique avec sotorasib ; il peut augmenter la progression et la mortalité. — DailyMed, VECTIBIX set_id e0fa4bca-f245-4d92-ae29-b0c630a315c2
- Mise en garde majeure · Surveiller magnésium et calcium avant, pendant et jusqu’à 8 semaines après ; corriger aussi le potassium. L’hypomagnésémie peut être sévère. — DailyMed, VECTIBIX set_id e0fa4bca-f245-4d92-ae29-b0c630a315c2
- Mise en garde majeure · Il peut provoquer des réactions mortelles à la perfusion, une insuffisance rénale aiguë par diarrhée et déshydratation, une pneumopathie interstitielle mortelle et une kératite ou perforation cornéenne. Suspendre ou arrêter selon l’événement. — DailyMed, VECTIBIX set_id e0fa4bca-f245-4d92-ae29-b0c630a315c2
- Mise en garde majeure · L’association avec bévacizumab et chimiothérapie a réduit la survie et augmenté la toxicité sévère ; ne pas utiliser cette association. — DailyMed, VECTIBIX set_id e0fa4bca-f245-4d92-ae29-b0c630a315c2
Interactions médicamenteuses
- SévèreBévacizumab avec chimiothérapie
Mécanisme: L’ajout du panitumumab a réduit la survie et augmenté les réactions de grade 3–5.
Recommandation: Ne pas utiliser l’association.
DailyMed, VECTIBIX set_id e0fa4bca-f245-4d92-ae29-b0c630a315c2https://dailymed.nlm.nih.gov/dailymed/drugInfo.cfm?setid=e0fa4bca-f245-4d92-ae29-b0c630a315c2
- FaibleSotorasib
Mécanisme: C’est une association approuvée uniquement pour le cancer colorectal métastatique avec KRAS G12C confirmé après traitement antérieur approprié.
Recommandation: Administrer la première dose de sotorasib avant la première perfusion. Si le sotorasib est suspendu temporairement, suspendre temporairement le panitumumab ; si le sotorasib est arrêté définitivement, arrêter définitivement le panitumumab.
DailyMed, VECTIBIX set_id e0fa4bca-f245-4d92-ae29-b0c630a315c2https://dailymed.nlm.nih.gov/dailymed/drugInfo.cfm?setid=e0fa4bca-f245-4d92-ae29-b0c630a315c2
Effets indésirables
Communs (≥1%)
éruption cutanée · paronychie · fatigue · nausées · diarrhée · stomatite · hypomagnésémie · prurit · sécheresse cutanée
Rares mais graves
sepsis ou fasciite nécrosante · réaction mortelle à la perfusion · insuffisance rénale aiguë · pneumopathie interstitielle mortelle · kératite ulcéreuse ou perforation cornéenne
Grossesse et allaitement
Il peut provoquer une toxicité embryofœtale. Utiliser une contraception efficace pendant le traitement et pendant 2 mois après la dernière dose. Ne pas allaiter pendant le traitement ni pendant 2 mois après. Il peut réduire de façon réversible la fertilité féminine.
Bibliographie récente (PubMed)
KRAS G12C is a mutation that occurs in approximately 3 to 4% of patients with metastatic colorectal cancer. Monotherapy with KRAS G12C inhibitors has yielded only modest efficacy. Combining the KRAS G12C inhibitor sotorasib with panitumumab, an epidermal growth factor receptor (EGFR) inhibitor, may be an effective strategy. In this phase 3, multicenter, open-label, randomized trial, we assigned patients with chemorefractory metastatic colorectal cancer with mutated KRAS G12C who had not received previous treatment with a KRAS G12C inhibitor to receive sotorasib at a dose of 960 mg once daily plus panitumumab (53 patients), sotorasib at a dose of 240 mg once daily plus panitumumab (53 patients), or the investigator's choice of trifluridine-tipiracil or regorafenib (standard care; 54 patients). The primary end point was progression-free survival as assessed by blinded independent central review according to the Response Evaluation Criteria in Solid Tumors, version 1.1. Key secondary end points were overall survival and objective response. After a median follow-up of 7.8 months (range, 0.1 to 13.9), the median progression-free survival was 5.6 months (95% confidence interval [CI], 4.2 to 6.3) and 3.9 months (95% CI, 3.7 to 5.8) in the 960-mg sotorasib-panitumumab and 240-mg sotorasib-panitumumab groups, respectively, as compared with 2.2 months (95% CI, 1.9 to 3.9) in the standard-care group. The hazard ratio for disease progression or death in the 960-mg sotorasib-panitumumab group as compared with the standard-care group was 0.49 (95% CI, 0.30 to 0.80; P = 0.006), and the hazard ratio in the 240-mg sotorasib-panitumumab group was 0.58 (95% CI, 0.36 to 0.93; P = 0.03). Overall survival data are maturing. The objective response was 26.4% (95% CI, 15.3 to 40.3), 5.7% (95% CI, 1.2 to 15.7), and 0% (95% CI, 0.0 to 6.6) in the 960-mg sotorasib-panitumumab, 240-mg sotorasib-panitumumab, and standard-care groups, respectively. Treatment-related adverse events of grade 3 or h
Neoadjuvant chemotherapy (NAC) has potential advantages over standard postoperative chemotherapy for locally advanced colon cancer but requires formal evaluation. Patients with radiologically staged T3-4, N0-2, M0 colon cancer were randomly allocated (2:1) to 6 weeks oxaliplatin-fluoropyrimidine preoperatively plus 18 postoperatively (NAC group) or 24 weeks postoperatively (control group). Patients with RAS-wildtype tumors could also be randomly assigned 1:1 to receive panitumumab or not during NAC. The primary end point was residual disease or recurrence within 2 years. Secondary outcomes included surgical morbidity, histopathologic stage, regression grade, completeness of resection, and cause-specific mortality. Log-rank analyses were by intention-to-treat. Of 699 patients allocated to NAC, 674 (96%) started and 606 (87%) completed NAC. In total, 686 of 699 (98.1%) NAC patients and 351 of 354 (99.2%) control patients underwent surgery. Thirty patients (4.3%) allocated to NAC developed obstructive symptoms requiring expedited surgery, but there were fewer serious postoperative complications with NAC than with control. NAC produced marked T and N downstaging and histologic tumor regression (all P < .001). Resection was more often histopathologically complete: 94% (648/686) versus 89% (311/351), P < .001. Fewer NAC than control patients had residual or recurrent disease within 2 years (16.9% [118/699] v 21.5% [76/354]; rate ratio, 0.72 [95% CI, 0.54 to 0.98]; P = .037). Tumor regression correlated strongly with freedom from recurrence. Panitumumab did not enhance the benefit from NAC. Little benefit from NAC was seen in mismatch repair-deficient tumors. Six weeks of preoperative oxaliplatin-fluoropyrimidine chemotherapy for operable colon cancer can be delivered safely, without increasing perioperative morbidity. This chemotherapy regimen, when given preoperatively, produces marked histopathologic down-staging, fewer incomplete resections, and better 2-year disease c
For patients with RAS wild-type metastatic colorectal cancer, adding anti-epidermal growth factor receptor (anti-EGFR) or anti-vascular endothelial growth factor (anti-VEGF) monoclonal antibodies to first-line doublet chemotherapy is routine, but the optimal targeted therapy has not been defined. To evaluate the effect of adding panitumumab (an anti-EGFR monoclonal antibody) vs bevacizumab (an anti-VEGF monoclonal antibody) to standard first-line chemotherapy for treatment of RAS wild-type, left-sided, metastatic colorectal cancer. Randomized, open-label, phase 3 clinical trial at 197 sites in Japan in May 2015-January 2022 among 823 patients with chemotherapy-naive RAS wild-type, unresectable metastatic colorectal cancer (final follow-up, January 14, 2022). Panitumumab (n = 411) or bevacizumab (n = 412) plus modified fluorouracil, l-leucovorin, and oxaliplatin (mFOLFOX6) every 14 days. The primary end point, overall survival, was tested first in participants with left-sided tumors, then in the overall population. Secondary end points were progression-free survival, response rate, duration of response, and curative (defined as R0 status) resection rate. In the as-treated population (n = 802; median age, 66 years; 282 [35.2%] women), 604 (75.3%) had left-sided tumors. Median follow-up was 61 months. Median overall survival was 37.9 months with panitumumab vs 34.3 months with bevacizumab in participants with left-sided tumors (hazard ratio [HR] for death, 0.82; 95.798% CI, 0.68-0.99; P = .03) and 36.2 vs 31.3 months, respectively, in the overall population (HR, 0.84; 95% CI, 0.72-0.98; P = .03). Median progression-free survival for panitumumab vs bevacizumab was 13.1 vs 11.9 months, respectively, for those with left-sided tumors (HR, 1.00; 95% CI, 0.83-1.20) and 12.2 vs 11.4 months overall (HR, 1.05; 95% CI, 0.90-1.24). Response rates with panitumumab vs bevacizumab were 80.2% vs 68.6%, respectively, for left-sided tumors (difference, 11.2%; 95% CI, 4.4%-17.9%) and 74
Colorectal cancer (CRC) is one of the deadliest malignancies in the US, ranking fourth after lung, prostate, and breast cancers, respectively, in general populations. It continues to be a menace, and the incidence has been projected to more than double by 2035, especially in underdeveloped countries. This review seeks to provide some insights into the disease progression, currently available treatment options and their challenges, and future perspectives. Searches were conducted in the PubMed search engine in the university's online library. The keywords were "Colorectal Cancer" AND "disease process" OR "disease mechanisms" OR "Current Treatment" OR "Prospects". Selection criteria were original articles published primarily during the period of 2013 through 2023. Abstracts, books and documents, and reviews/systematic reviews were filtered out. Of over 490 thousand articles returned, only about 800 met preliminary selection criteria, 200 were reviewed in detail, but 191 met final selection criteria. Fifty-one other articles were used due to cross-referencing. Although recently considered a disease of lifestyle, CRC incidence appears to be rising in countries with low, low-medium, and medium social demographic indices. CRC can affect all parts of the colon and rectum but is more fatal with poor disease outcomes when it is right-sided. The disease progression usually takes between 7-10 years and can be asymptomatic, making early detection and diagnosis difficult. The CRC tumor microenvironment is made up of different types of cells interacting with each other to promote the growth and proliferation of the tumor cells. Significant advancement has been made in the treatment of colorectal cancer. Notable approaches include surgery, chemotherapy, radiation therapy, and cryotherapy. Chemotherapy, including 5-fluorouracil, irinotecan, oxaliplatin, and leucovorin, plays a significant role in the management of CRC that has been diagnosed at advanced stages. Two classes of monoc
In the phase III CodeBreaK 300 study, sotorasib 960 mg-panitumumab significantly prolonged progression-free survival (PFS) versus investigator's choice (trifluridine/tipiracil or regorafenib) in patients with KRAS G12C-mutated chemorefractory metastatic colorectal cancer (mCRC). One hundred sixty patients were randomly assigned 1:1:1 to receive sotorasib 960 mg-panitumumab (n = 53), sotorasib 240 mg-panitumumab (n = 53), or investigator's choice (n = 54; crossover permitted after primary analysis). Overall survival (OS) analysis, a key secondary end point, although not adequately powered, was prespecified at 50% maturity (after approximately 80 deaths). In this study, we report the OS, updated overall response rates (ORRs), and data for safety. After a median follow-up of 13.6 months, 24, 28, and 30 deaths occurred in the sotorasib 960 mg-panitumumab, sotorasib 240 mg-panitumumab, and investigator's choice arms, respectively; updated objective response rates (ORRs; 95% CI) were 30.2% (95% CI, 18.3 to 44.3), 7.5% (95% CI, 2.1 to 18.2), and 1.9% (95% CI, 0.0 to 9.9), respectively. Compared with investigator's choice, the hazard ratios (HRs [95% CI]) for OS were 0.70 (95% CI, 0.41 to 1.18; two-sided P = .20) with sotorasib 960 mg-panitumumab and 0.83 (95% CI, 0.49 to 1.39; two-sided P = .50) with sotorasib 240 mg-panitumumab. No new safety signals were observed. Although not statistically significant, the observed OS HR and ORR along with prior PFS and safety findings support sotorasib 960 mg-panitumumab as a standard of care in patients with chemorefractory KRAS G12C mCRC.