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1.
J Evid Based Med ; 2024 Aug 19.
Artículo en Inglés | MEDLINE | ID: mdl-39161209

RESUMEN

AIM: Conflicting results have been reported about the impact of neoadjuvant therapy on anastomotic leakage (AL) after esophagectomy. We aimed to unravel the potential effect of neoadjuvant therapy on AL after esophagectomy through a network meta-analysis. METHODS: A Bayesian network meta-analysis was performed by retrieving relevant literature from PubMed, EMbase, The Cochrane Library and Web of Science Core Collection. Randomized clinical trials (RCTs) and retrospective studies (RS) comparing the following treatment modalities were included: neoadjuvant chemoradiation (nCRT), neoadjuvant chemotherapy (nCT), neoadjuvant radiotherapy (nR), neoadjuvant immunochemotherapy (nICT), and surgery alone (SA). Subgroup analyses by radiation dose, examined lymph nodes (ELN), route of reconstruction, site of anastomosis, and surgical approach were also conducted. RESULTS: A total of 62 studies with 12,746 patients were included for the present study, among which 17 were RCTs. There were no significantly statistical differences observed among the five treatment modalities in AL for both RCTs (nCRT-nICT: risk ratio 1.51, 95% confidence interval 0.52-4.4; nCT-nICT: 1.71, 0.56-5.08; nICT-nR: 0.79, 0.12-8.02; nICT-SA: 0.59, 0.2-1.84) and RS (nCRT-nICT: odds ratio 1.53, 95% confidence interval 0.84-2.84; nCT-nICT: 1.56, 0.87-2.88; nICT-SA: 0.6, 0.31-1.12; nICT-nR: 1.08, 0.09-36.02). Subgroup analysis revealed that no significant difference in AL was observed among the five treatment modalities except for the impact of nCRT versus nCT (0.21, 0.05-0.73) on AL with a radiation dose ≥41.4 Gy. CONCLUSIONS: Neoadjuvant therapy do not significantly increase the incidence of AL after esophagectomy. Administration of irradiation with a moderate dose is not associated with elevated risk in AL. Clinicians can be less apprehensive about prescribing nCRT.

2.
Org Biomol Chem ; 22(25): 5112-5116, 2024 Jun 26.
Artículo en Inglés | MEDLINE | ID: mdl-38864433

RESUMEN

An air-stable quinoline-derived NNP ligand chelated Mn catalyst was developed for the efficient α-alkylation of ketones with primary alcohols via a hydrogen auto-transfer methodology. The sole by-product formed is water, rendering the protocol atom efficient. A wide range of ketone and alcohol substrates were employed, providing the α-alkylated ketones with isolated yields up to 94%. This system was also efficient for the green synthesis of quinoline derivatives while using (2-aminophenyl)methanol as an alkylating reagent.

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