One limitation of current biodegradable polymeric nanoparticles (NPs) is the contradiction between functional modification and maintaining formerly excellent bioproperties with simple procedures. Here, we reported a robust aptamer-polydopamine-functionalized mannitol-functionalized poly(lactide-co-glycolide) (M-PLGA)-d-alpha-tocopheryl polyethylene glycol 1000 succinate (TPGS) nanoformulation (Apt-pD-NPs) for the delivery of docetaxel (DTX) with enhanced cervical cancer therapy effects. The novel DTX-loaded Apt-pD-NPs possess satisfactory advantages: 1) increased drug loading content and encapsulation efficiency induced by star-shaped copolymer M-PLGA-TPGS; 2) significant active targeting effect caused by conjugated AS1411 aptamers; and 3) excellent long-term compatibility by incorporation of TPGS. Therefore, with simple preparation procedures and excellent bioproperties, the new functionalized Apt-pD-NPs could maximally increase the local effective drug concentration on tumor sites, achieving enhanced treatment effectiveness and minimizing side effects. In a word, the robust DTX-loaded Apt-pD-NPs could be used as potential nanotherapeutics for cervical cancer treatment, and the aptamer-polydopamine modification strategy could be a promising method for active targeting of cancer therapy with simple procedures.
Objective To develop the personalized 3D printing scaffolds for bone grafts,to meet the needs of the patients with the bone defect.Methods The model of three-dimensional woodpile structure was designed by the software of computer-aided design (CAD).The β-tricalcium phosphate (β-TCP),hydroxyapatite (HA),and polylactic acid (PLA) composite scaffolds with three-dimensional woodpile structure was simulated using 3D printing method by three-dimensional air floating platform.The three-dimensional bone graft scaffolds was then vacuum heat-treated,and the residual chloroform was detected by energy dispersive X-ray spectrometer.The morphology of the β-TCP/HMPLA scaffolds was characterized by scanning electron microscope,and in vitro cytotoxicity against osteoblasts hFOB 1.19 was assessed by thiazolyl blue tetrazolium bromide (MTT) assay.Results When the extrusion pressure of printing slurry was 137.9-413.7 kPa,the three-dimensional bone graft scaffolds could be printed out.Then the scaffolds was vacuum treated at 90 ℃ and preheated at 150 ℃,which could eliminate the solvent CHC13.The three-dimensional bone graft scaffolds,with a through-hole and rough surface,was co-cultured with osteoblasts hFOB1.19 for 7 d,and it's cytotoxicity grade was grade 0.Conclusions The three-dimensional bone graft scaffolds have a through-hole and rough surface,which is favorable to the osteoblasts culture and bone induction,indicating the advantage and development prospects of 3D printing in the preparation of porous materials for bone grafts.
从高校就业引导和服务两方面工作入手,分析了新形势下高校研究生群体择业存在的困难和误区。认为应从发挥学生作优势、开展就业实践活动、携手心理辅导部门、成立研究生职业发展协会、全校全员全程参与就业引导、重视创新创业教育等六个方面提升研究生就业引导和服务工作,以达到人职匹配。