From February 1992 to November 1993, forty patients with operable breast cancer tumors larger than three centimeters were enrolled in this study of accelerated neo-adjuvant chemotherapy. Thirty-seven patients are evaluable: one patient was excluded from the protocol and two refused to continue treatment after the first cycle. Chemotherapy consisted of three presurgical cycles of CNF [cyclophosphamide at 600 mg/m2, mitoxantrone (Novantrone) at 10 mg/m2 and 5-fluorouracil at 600 mg/m2] administered every 2 weeks, plus G-CSF (5 microg/kg s.c./day on days 7-12). Twenty-six of 37 patients (70%) achieved objective tumor response and were submitted to quadrantectomy. Toxicity was easily manageable. After a median 55-month follow-up (range 48-70), no locoregional recurrences were observed. Distant metastases occurred in 12/37 (32%) patients. The five-year disease-free (DFS) and overall (OS) survival were 58% and 80%, respectively. Accelerated CNF plus G-CSF proved to be a safe and tolerable regimen yielding a good clinical response thereby increasing the possibility of breast conservation surgery for patients otherwise candidates for mastectomy.
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http://dx.doi.org/10.3892/ijo.12.5.1177 | DOI Listing |
Dalton Trans
January 2025
Key Laboratory for Photonic and Electronic Bandgap Materials, Ministry of Education, School of Physics and Electronic Engineering, Harbin Normal University, Harbin 150025, People's Republic of China.
A binder-free and freestanding electrode was designed by uniformly immobilizing carbon quantum dot (CQD)-anchored polyaniline (PANI) heterostructures onto electrospun carbon nanofibers (CNFs) a facile hierarchical assembly process. The fabricated freestanding CNF/PANI/CQD electrode exhibits a unique three-dimensional (3D) network nanostructure, which accelerates ion migration between the interior and surface of the electrode, thereby enhancing its charging and discharging performance. Moreover, the functional groups on the surface of CQDs could anchor PANI through possible chemical bonding, which not only improves the stability of the PANI/CQD heterojunction but also creates an additional conductive channel for the PANI polymer.
View Article and Find Full Text PDFMembranes (Basel)
December 2024
Department of Chemical & Biological Engineering, Hanbat National University, Daejeon 34158, Republic of Korea.
This study addresses the critical challenge of carbon corrosion in proton exchange membrane fuel cells (PEMFCs) by developing hybrid supports that combine the high surface area of carbon black (CB) with the superior crystallinity and graphitic structure of carbon nanofibers (CNFs). Two commercially available CB samples were physically activated and composited with two types of CNFs synthesized via chemical vapor deposition using different carbon sources. The structure, morphology, and crystallinity of the resulting CNF-CB hybrid supports were characterized, and the performances of these hybrid supports in mitigating carbon corrosion and enhancing the PEMFC performance was evaluated through full-cell testing in collaboration with a membrane electrode assembly (MEA) manufacturer (VinaTech, Seoul, Republic, of Korea), adhering to industry-standard fabrication and evaluation procedures.
View Article and Find Full Text PDFAAPS PharmSciTech
December 2024
Shobhaben Pratapbhai Patel School of Pharmacy & Technology Management, SVKMs NMIMS, V.L. Mehta Road, Vile Parle (W), Mumbai, Maharashtra, 400056, India.
This research aimed to develop a mupirocin-doped α-cellulose nanopaper (MDAC-NP) as a wound dressing to accelerate wound healing while limiting localized bacterial growth. The α-cellulose nanofibrils suspension was prepared by ultrasonication followed by microfluidization and subsequently doped with 0.05% w/v mupirocin to prepare nanopaper (MDAC-NP-A).
View Article and Find Full Text PDFInorg Chem
November 2024
School of Environmental and Chemical Engineering, Jiangsu University of Science and Technology, Zhenjiang, Jiangsu 212003, China.
To solve large volume change and low conductivity of BiS-based anodes, a coordination regulation strategy is proposed to prepare BiS nanoparticles dispersed in carbon fiber (BiS@CNF) composites. It has been discovered that introducing trimesic acid as a ligand can significantly improve the loading and dispersion of Bi in polyacrylonitrile fibers. The results exhibit that BiS nanoparticles of 200-300 nm are uniformly anchored on the superficial surface layer of CNFs, and BiS nanoparticles of about 20 nm are evenly dispersed in the interior of CNFs.
View Article and Find Full Text PDFACS Nano
October 2024
School of Polymer System/Department of Fiber Convergence Materials Engineering, Dankook University, Yongin 16890, Republic of Korea.
We report a design for a synergistic lithium (Li) metal hosting layer for high-loading Li(Ni,Co,Al)O (NCA) (≥5 mA h cm)||Li-metal full cells in carbonate electrolytes. Based on density functional theory calculations, the hosting layer was designed as a three-dimensional silver/carbon composite nanofiber (Ag/CNF) network with high Li affinity and a platinum (Pt)-coated polypropylene separator with low Li affinity. This design enabled the tailoring of horizontal Li deposition on the Ag/CNF hosting layer.
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