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Translational bioengineering strategies for peripheral nerve regeneration:opportunities,challenges,and novel concepts 被引量:1
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作者 Karim A.Sarhane Chenhu Qiu +3 位作者 Thomas G.W.Harris Philip J.Hanwright Hai-Quan Mao Sami H.Tuffaha 《Neural Regeneration Research》 SCIE CAS CSCD 2023年第6期1229-1234,共6页
Peripheral nerve injuries remain a challenging problem in need of better treatment strategies.Despite best efforts at surgical reconstruction and postoperative rehabilitation,patients are often left with persistent,de... Peripheral nerve injuries remain a challenging problem in need of better treatment strategies.Despite best efforts at surgical reconstruction and postoperative rehabilitation,patients are often left with persistent,debilitating motor and sensory deficits.There are currently no therapeutic strategies proven to enhance the regenerative process in humans.A clinical need exists for the development of technologies to promote nerve regeneration and improve functional outcomes.Recent advances in the fields of tissue engineering and nanotechnology have enabled biomaterial scaffolds to modulate the host response to tissue repair through tailored mechanical,chemical,and conductive cues.New bioengineered approaches have enabled targeted,sustained delivery of protein therapeutics with the capacity to unlock the clinical potential of a myriad of neurotrophic growth factors that have demonstrated promise in enhancing regenerative outcomes.As such,further exploration of combinatory strategies leveraging these technological advances may offer a pathway towards clinically translatable solutions to advance the care of patients with peripheral nerve injuries.This review first presents the various emerging bioengineering strategies that can be applied for the management of nerve gap injuries.We cover the rationale and limitations for their use as an alternative to autografts,focusing on the approaches to increase the number of regenerating axons crossing the repair site,and facilitating their growth towards the distal stump.We also discuss the emerging growth factor-based therapeutic strategies designed to improve functional outcomes in a multimodal fashion,by accelerating axonal growth,improving the distal regenerative environment,and preventing end-organs atrophy. 展开更多
关键词 bioengineering BIOMATERIALS growth hormone insulin-like growth factor 1 NANOTECHNOLOGY NEUROBIOLOGY peripheral nerve regeneration Schwann cells translational research
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Bioengineering liver tissue by repopulation of decellularised scaffolds
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作者 Zeeshan Afzal Emmanuel Laurent Huguet 《World Journal of Hepatology》 2023年第2期151-179,共29页
Liver transplantation is the only curative therapy for end stage liver disease,but is limited by the organ shortage,and is associated with the adverse consequences of immunosuppression.Repopulation of decellularised w... Liver transplantation is the only curative therapy for end stage liver disease,but is limited by the organ shortage,and is associated with the adverse consequences of immunosuppression.Repopulation of decellularised whole organ scaffolds with appropriate cells of recipient origin offers a theoretically attractive solution,allowing reliable and timely organ sourcing without the need for immunosuppression.Decellularisation methodologies vary widely but seek to address the conflicting objectives of removing the cellular component of tissues whilst keeping the 3D structure of the extra-cellular matrix intact,as well as retaining the instructive cell fate determining biochemicals contained therein.Liver scaffold recellularisation has progressed from small rodent in vitro studies to large animal in vivo perfusion models,using a wide range of cell types including primary cells,cell lines,foetal stem cells,and induced pluripotent stem cells.Within these models,a limited but measurable degree of physiologically significant hepatocyte function has been reported with demonstrable ammonia metabolism in vivo.Biliary repopulation and function have been restricted by challenges relating to the culture and propagations of cholangiocytes,though advances in organoid culture may help address this.Hepatic vasculature repopulation has enabled sustainable blood perfusion in vivo,but with cell types that would limit clinical applications,and which have not been shown to have the specific functions of liver sinusoidal endothelial cells.Minority cell groups such as Kupffer cells and stellate cells have not been repopulated.Bioengineering by repopulation of decellularised scaffolds has significantly progressed,but there remain significant experimental challenges to be addressed before therapeutic applications may be envisaged. 展开更多
关键词 REGENERATIVE bioengineering Scaffolds LIVER Decellularisation Recellularisation
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Bioengineering models of female reproduction 被引量:1
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作者 Maria EZubizarreta Shuo Xiao 《Bio-Design and Manufacturing》 SCIE CSCD 2020年第3期237-251,共15页
The female reproductive system consists of the ovaries,the female gonads,and the reproductive tract organs of the fallopian tubes,uterus,cervix,and vagina.It functions to provide hormonal support and anatomical struct... The female reproductive system consists of the ovaries,the female gonads,and the reproductive tract organs of the fallopian tubes,uterus,cervix,and vagina.It functions to provide hormonal support and anatomical structure for the production of new offspring.A number of endogenous and exogenous factors can impact female reproductive health and fertility,including genetic vulnerability,medications,environmental exposures,age,nutrition,and diseases.To date,due to the ethical concerns of using human subjects in biomedical research,the majority of studies use in vivo animal models and 2D cell/tissue culture models to study female reproduction.However,the complexity and species difference of the female reproductive system in humans make it difficult to compare to those of animals.Moreover,the monolayered cells cultured on flat plastics or glass lose their 3D architecture as well as the physical and/or biochemical contacts with other cells in vivo.Further,all reproductive organs do not work alone but interconnect with each other and also with non-reproductive organs to support female reproductive,endocrine,and systemic health.These facts suggest that there is an urgent and unmet need to develop representative,effective,and efficient in vitro models for studying human female reproduction.The prodigious advancements of bioengineering(e.g.,biomaterials,3D printing,and organ-on-a-chip)allow us to study female reproduction in an entirely new way.Here,we review recent advances that use bioengineering methods to study female reproduction,including the bioengineering models of the ovary,fallopian tube,uterus,embryo implantation,placenta,and reproductive disease. 展开更多
关键词 Female reproduction bioengineering BIOMATERIALS 3D printing MICROFLUIDICS
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Fractional Order Proportional Integral Derivative Controller Design and Simulation for Bioengineering Systems
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作者 Wei-Cheng Fu Chun-Yang Wang +1 位作者 Yao-Wu Shi Ying-Bin Sun 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2013年第5期46-50,共5页
This paper deals with the study of fractional order system tuning method based on Factional Order Proportional Integral Derivative( FOPID) controller in allusion to the nonlinear characteristics and fractional order m... This paper deals with the study of fractional order system tuning method based on Factional Order Proportional Integral Derivative( FOPID) controller in allusion to the nonlinear characteristics and fractional order mathematical model of bioengineering systems. The main contents include the design of FOPID controller and the simulation for bioengineering systems. The simulation results show that the tuning method of fractional order system based on the FOPID controller outperforms the fractional order system based on Fractional Order Proportional Integral( FOPI) controller. As it can enhance control character and improve the robustness of the system. 展开更多
关键词 ROBUSTNESS bioengineering systems fractional order proportional integral derivative controller
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Genetic Bioengineering in the Achievement of Algae Biofuels and High-Value Bio-products
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作者 Sukran Cakir Arica 《Management Studies》 2019年第1期60-62,共3页
The dependence to fossil fuels has increased the amount of greenhouse gases in the atmosphere.That is why,the production of renewable and sustainable biofuels has gained a long-term importance for both scientific and ... The dependence to fossil fuels has increased the amount of greenhouse gases in the atmosphere.That is why,the production of renewable and sustainable biofuels has gained a long-term importance for both scientific and political necessities.In this context,algae are promising in terms of alternative biofuels resources.For this reason,intensive scientific researches have been carried out in recent years on providing optimum efficiency in this regard.Bioengineering is a discipline that applies engineering principles of design and analysis to biological systems and biomedical technologies.Examples of bioengineering research include bacteria or microalgae engineered to produce valuable bioactive chemicals.Microalgae by target gene modification may serve as a promising source for the production of biofuels and bio-based chemicals.A lot of research has been carried out by applying microalgae genomic editing technique with the aim to produce numerous biotechnological products.Some successful previously reported research and production activities are still underway in this area.However,in order to produce the desired products efficiently with manipulated microalgae biorefinery,there is a need to overcome the problem of low biomass production despite high production costs.The aim of this work is to give special attention to the rich potential content of microalgae and to provide information on algal genetic manipulations to increase products by bioengineering methods. 展开更多
关键词 ALGAL biofuels ALGAL high-value bio-products bioengineering GENETIC manipulation microalgae
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Environmental Cultural Landscape Characteristics of Agricultural Vocational Colleges: A Case Study of Bioengineering Branch of Yangling Vocation and Technical College and Doucun Farm
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作者 CHEN Qi WANG Zhousuo ZHU Zhanbin 《Journal of Landscape Research》 2015年第4期25-28,共4页
Based on the overall planning of environmental cultural construction of Yangling Vocational & Technical College and the college–enterprise co-construction of Doucun Farm, this paper combined environmental cultura... Based on the overall planning of environmental cultural construction of Yangling Vocational & Technical College and the college–enterprise co-construction of Doucun Farm, this paper combined environmental cultural reformation inside and outside the college and reform of off-campus teaching experiment farm in view of outstanding agricultural characteristics of the bioengineering branch, with environmental health preservation as the fundamental goal and "health-preserving agriculture" as the link. In addition, four major characteristic landscape frameworks of "point, line, surface, and body" were established, and the effective construction approaches of health-preserving environmental cultural landscapes in vocational colleges were explored. 展开更多
关键词 bioengineering Branch Health-preserving agriculture Environmental cultural construction
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The present and the prospect of bioengineering cornea
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作者 Xin Liu Ming-Chang Zhang 《Annals of Eye Science》 2018年第1期52-57,共6页
Corneal blindness represents one of the world’s three major causes of blindness,and the fundamental problem of corneal transplantation is a severe shortage of donor tissues worldwide,resulting in approximately 1.5 mi... Corneal blindness represents one of the world’s three major causes of blindness,and the fundamental problem of corneal transplantation is a severe shortage of donor tissues worldwide,resulting in approximately 1.5 million new cases of blindness annually.To address the growing need for corneal transplants two main approaches are being pursued:allogenic and bioengineering cornea.Bioengineering corneas are constructed by naturally generating an extracellular matrix(ECM)component as the scaffold structure with or without corneal cells.It is well established that the scaffold structure directs the fate of cells,therefore,the fabrication of the correct scaffold structure components could produce an ideal corneal substitute,able to mimic the native corneal function.Another key factor in the construction of tissue engineering cornea is seed cells.However,unlike the epithelium and stroma cells,human cornea endothelium cells(HCECs)are notorious for having a limited proliferative capacity in vivo because of the mitotic block at the G1 phase of the cell cycle due to“contact-inhibition”.This review will focus on the main concepts of recent progress towards the scaffold and seed cells,especially endothelial cells for bioengineering cornea,along with future perspectives. 展开更多
关键词 bioengineering cornea endothelial cells SCAFFOLD
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Relevance of Protein Content within the Renal Scaffold for Kidney Bioengineering and Regeneration
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作者 Fatima Guerrero Andres Carmona +4 位作者 Rosa Ortega Sagrario Canadillas Rodolfo Crespo Concha Herrera Pedro Aljama 《Journal of Biomedical Science and Engineering》 2017年第11期509-526,共18页
Chronic kidney disease is currently a major public health problem around the world. Although hemodialysis increases survival of patients with end-stage renal disease, kidney transplantation remains the only potentiall... Chronic kidney disease is currently a major public health problem around the world. Although hemodialysis increases survival of patients with end-stage renal disease, kidney transplantation remains the only potentially curative treatment. However, transplantation as a therapeutic option is limited by availability of suitable donor organs. This situation highlights the urgent need to find new and potentially inexhaustible sources of transplantable organs. Perfusion decellularizarion of whole organs is a novel approach to organ engineering and regeneration. In the present research, we used a continuous perfusion decellularization protocol to eliminate cellular componet of kidney and evaluated residual scaffold components after decellularizarion process by proteomics analysis. Our proteomic data show that this protocol results in incomplete removal of cellular proteins. However, unlike other authors, we assume that proteins retained within decellularized kidney scaffold could be the basis for specific homing and celular differentation in the recellularization process. 展开更多
关键词 bioengineering KIDNEY DECELLULARIZATION SCAFFOLD PROTEOMIC
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New approaches to increase intestinal length: Methods used for intestinal regeneration and bioengineering
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作者 Ali Shirafkan Mauro Montalbano +2 位作者 Joshua Mc Guire Cristiana Rastellini Luca Cicalese 《World Journal of Transplantation》 2016年第1期1-9,共9页
Inadequate absorptive surface area poses a great challenge to the patients suffering a variety of in-testinal diseases causing short bowel syndrome. To date, these patients are managed with total parenteral nutrition ... Inadequate absorptive surface area poses a great challenge to the patients suffering a variety of in-testinal diseases causing short bowel syndrome. To date, these patients are managed with total parenteral nutrition or intestinal transplantation. However, these carry significant morbidity and mortality. Currently, by emergence of tissue engineering, anticipations to utilize an alternative method to increase the intestinal absorptive surface area are increasing. In this paper, we will review the improvements made over time in attempting elongating the intestine with surgical techniques as well as using intestinal bioengineering. Performing sequential intestinal lengthening was the preliminary method applied in humans. However, these methods did not reach widespread use and has limited outcome. Subsequent experimental methods were developed utilizing scaffolds to regenerate intestinal tissue and organoids unit from the intestinal epithelium. Stem cells also have been studied and applied in all types of tissue engineering. Biomaterials were utilized as a structural support for naive cells to produce bio-engineered tissue that can achieve a near-normal anatomical structure. A promising novel approach is the elongation of the intestine with an acellular biologic scaffold to generate a neoformed intestinal tissue that showed, for the first time, evidence of absorption in vivo. In the large intestine, studies are more focused on regeneration and engineering of sphincters and will be briefly reviewed. From the review of the existing literature, it can be concluded that significant progress has been achieved in these experimental methods but that these now need to be fully translated into a pre-clinical and clinical experimentation to become a future viable therapeutic option. 展开更多
关键词 Bioengineered INTESTINE Tissue engineered Scaffolds ORGANOIDS Stem cells INTESTINAL ELONGATION techniques
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Bioengineering extracellular vesicles as novel nanocarriers towards brain disorders 被引量:1
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作者 Jie Wu Lei Ma +7 位作者 Danni Sun Xinru Zhang Jiwei Cui Yingjiang Du Yumiao Guo Xue Wang Liuqing Di Ruoning Wang 《Nano Research》 SCIE EI CSCD 2023年第2期2635-2659,共25页
Despite noteworthy technological progress and promising preclinical trials,brain disorders are still the leading causes of death globally.Extracellular vesicles(EVs),nano-/micro-sized membrane vesicles carrying bioact... Despite noteworthy technological progress and promising preclinical trials,brain disorders are still the leading causes of death globally.Extracellular vesicles(EVs),nano-/micro-sized membrane vesicles carrying bioactive molecules,are involved in cellular communication.Based on their unique properties,including superior biocompatibility,non-immunogenicity,and blood-brain barrier(BBB)penetration,EVs can shield their cargos from immune clearance and transport them to specific site,which have attracted increasing interests as novel nanocarriers for brain disorders.However,considering the limitations of native EVs,such as poor encapsulation efficiency,inadequate targeting capability,uncontrolled drug release,and limited production,researchers bioengineer EVs to fully exploit the clinical potential.Herein,this review initially describes the basic properties,biogenesis,and uptake process of EVs from different subtypes.Then,we highlight the application of EVs derived from different sources for personalized therapy and novel strategies to construct bioengineered EVs for enhanced diagnosis and treatment of brain disorders.Besides,it also presents a systematic comparison between EVs and other brain-targeted nanocarriers.Finally,existing challenges and future perspectives of EVs have been discussed,hoping to bolster the research from benchtop to bedside. 展开更多
关键词 brain disorders extracellular vesicles drug delivery platforms bioengineering strategies responsive materials
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Enhanced extracellular production of alpha-lactalbumin from Bacillus subtilis through signal peptide and promoter screening
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作者 Yuqi Zhu Pengdong Sun +6 位作者 Chunjian Li Yu Zhang Yu Wang Jingyuan Li Yanfeng Liu Jian Chen Yang Deng 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第4期2310-2316,共7页
Alpha-lactalbumin(α-LA)is a major whey protein found in breast milk and plays a crucial role in the growth and development of infants.In this study,Bacillus subtilis RIK1285 harboring AprE signal peptide(SP)was selec... Alpha-lactalbumin(α-LA)is a major whey protein found in breast milk and plays a crucial role in the growth and development of infants.In this study,Bacillus subtilis RIK1285 harboring AprE signal peptide(SP)was selected as the original strain for the production ofα-LA.It was found thatα-LA was identified in the pellet after ultrasonic disruption and centrifugation instead of in the fermentation supernatant.The original strain most likely only producedα-LA intracellular,but not extracellular.To improve the expression and secretion ofα-LA in RIK1285,a library of 173 homologous SPs from the B.subtilis 168 genome was fused with target LALBA gene in the pBE-S vector and expressed extracellularly in RIK1285.SP YjcN was determined to be the best signal peptide.Bands in supernatant were observed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and purified by nickel column to calculate the highest yield signal peptide.In addition,different promoters(P_(aprE),P_(43),and P_(glv))were compared and applied.The results indicated that the strain RIK1285-pBE-P_(glv)-YjcN-LALBA had the highestα-LA yield,reaching 122.04μg/mL.This study demonstrates successful expression and secretion of humanα-LA in B.subtilis and establishes a foundation for simulating breast milk for infant formulas and developing bioengineered milk. 展开更多
关键词 Bacillus subtilis ALPHA-LACTALBUMIN bioengineering milk Signal peptide Promoter screening
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基于OBE理念的生物工程综合实验课程探索与实践
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作者 曾昕 徐大勇 +3 位作者 信丙越 张龙 赵德印 吴晓敏 《淮北师范大学学报(自然科学版)》 CAS 2024年第1期92-96,共5页
基于成果导向教育(OBE)理念,旨在构建以培养科技创新型、实践应用型人才为目标的生物工程综合实验教学体系。教学内容源自授课老师科研课题,汇聚生物工程上、中、下游关键环节。课程设计采用教师课题背景介绍、学生自主实验设计、师生... 基于成果导向教育(OBE)理念,旨在构建以培养科技创新型、实践应用型人才为目标的生物工程综合实验教学体系。教学内容源自授课老师科研课题,汇聚生物工程上、中、下游关键环节。课程设计采用教师课题背景介绍、学生自主实验设计、师生讨论细化步骤、实验实践验证结果、结果分析总结5个步骤,以此锻炼学生的创新思维及实践能力。采用多元化评价考核体系界定学生实验成绩,用以涵盖学生获得的综合研究能力和理工科创新能力。此实验课程激活学生自主创新和解决复杂生物工程问题的能力,并获得一系列科研成果。本课程培养目标及执行效果与国家“创新驱动”发展战略契合,相关经验可为其他理工科专业教学改革提供参考。 展开更多
关键词 生物工程综合实验 教学改革 教学实践 OBE理念
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课程思政融入生物工程专业前沿课程的教学探索
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作者 张琴 李艳宾 +1 位作者 唐松 王远丽 《高教学刊》 2024年第13期93-96,共4页
科学有效地将课程思政融入专业课程建设,可为新时代人才培养开辟新方向。针对生物工程专业前沿课程的特点提出思政元素融入该课程教学的必要性,并从课程教学设计和教学方法改革、课程思政元素和资源深入挖掘、课程考核模式改革等方面阐... 科学有效地将课程思政融入专业课程建设,可为新时代人才培养开辟新方向。针对生物工程专业前沿课程的特点提出思政元素融入该课程教学的必要性,并从课程教学设计和教学方法改革、课程思政元素和资源深入挖掘、课程考核模式改革等方面阐述生物工程专业前沿课程思政元素挖掘与融入的策略与实施路径,为生物工程专业本科生的培养起到知识引领和思想引导的作用。 展开更多
关键词 课程思政 生物工程专业前沿 教学探索 人才培养 实施路径
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Durable endothelium-mimicking coating for surface bioengineering cardiovascular stents 被引量:3
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作者 Qing Ma Xiuying Shi +9 位作者 Xing Tan Rui Wang Kaiqin Xiong Manfred F.Maitz Yuanyuan Cui Zhangmei Hu Qiufen Tu Nan Huang Li Shen Zhilu Yang 《Bioactive Materials》 SCIE 2021年第12期4786-4800,共15页
Mimicking the nitric oxide(NO)-release and glycocalyx functions of native vascular endothelium on cardiovascular stent surfaces has been demonstrated to reduce in-stent restenosis(ISR)effectively.However,the practical... Mimicking the nitric oxide(NO)-release and glycocalyx functions of native vascular endothelium on cardiovascular stent surfaces has been demonstrated to reduce in-stent restenosis(ISR)effectively.However,the practical performance of such an endothelium-mimicking surfaces is strictly limited by the durability of both NO release and bioactivity of the glycocalyx component.Herein,we present a mussel-inspired amine-bearing adhesive coating able to firmly tether the NO-generating species(e.g.,Cu-DOTA coordination complex)and glycocalyx-like component(e.g.,heparin)to create a durable endothelium-mimicking surface.The stent surface was firstly coated with polydopamine(pDA),followed by a surface chemical cross-link with polyamine(pAM)to form a durable pAMDA coating.Using a stepwise grafting strategy,Cu-DOTA and heparin were covalently grafted on the pAMDA-coated stent based on carbodiimide chemistry.Owing to both the high chemical stability of the pAMDA coating and covalent immobilization manner of the molecules,this proposed strategy could provide 62.4%bioactivity retention ratio of heparin,meanwhile persistently generate NO at physiological level from 5.9±0.3 to 4.8±0.4×10^(-10) mol cm^(-2) min^(-1) in 1 month.As a result,the functionalized vascular stent showed long-term endothelium-mimicking physiological effects on inhibition of thrombosis,inflammation,and intimal hyperplasia,enhanced re-endothelialization,and hence efficiently reduced ISR. 展开更多
关键词 Cardiovascular stents Nitric oxide Glycocalyx component Endothelium mimicking Surface bioengineering
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Bioengineering of nano metal-organic frameworks for cancer immunotherapy 被引量:2
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作者 Gaowei Chong Jie Zang +4 位作者 Yi Han Runping Su Nopphon Weeranoppanant Haiqing Dong Yongyong Li 《Nano Research》 SCIE EI CAS CSCD 2021年第5期1244-1259,共16页
Immunotherapy techniques,such as immune checkpoint inhibitors,chimeric antigen receptor(CAR)T cell therapies and cancer vaccines,have been burgeoning with great success,particularly for specific cancer types.However,s... Immunotherapy techniques,such as immune checkpoint inhibitors,chimeric antigen receptor(CAR)T cell therapies and cancer vaccines,have been burgeoning with great success,particularly for specific cancer types.However,side effects with fatal risks,dysfunction in tumor microenvironment and low immune response rates remain the bottlenecks in immunotherapy.Nano metal-organic frameworks(nMOFs),with an accurate structure and a narrow size distribution,are emerging as a solution to these problems.In addition to their function of temporospatial delivery,a large library of their compositions,together with flexibility in chemical interaction and inherent immune efficacy,offers opportunities for various designs of nMOFs for immunotherapy.In this review,we overview state-of-the-art research on nMOFs-based immunotherapies as well as their combination with other therapies.We demonstrate that nMOFs are predominantly customized for vaccine delivery or tumor-microenvironment modulation.Finally,a prospect of nMOFs in cancer immunotherapy will be discussed. 展开更多
关键词 cancer immunotherapy nano metal-organic frameworks(nMOFs) bioengineering vaccine delivery tumor-microenvironment modulation
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酶-化学级联催化制备(S)-烟碱
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作者 刘茜琳 高静 +3 位作者 马丽 宋浩雷 贺莹 郑晓冰 《精细化工》 EI CAS CSCD 北大核心 2024年第1期127-136,共10页
传统(S)-烟碱合成方法步骤复杂且依赖多种化学催化剂。为了实现(S)-烟碱的绿色合成,设计了酶-化学级联途径:首先,构建了亚胺还原酶(IRED)与甲酸脱氢酶(FDH)的偶联体系,以麦斯明为底物合成(S)-降烟碱;然后,将(S)-降烟碱经Eschweiler-Cla... 传统(S)-烟碱合成方法步骤复杂且依赖多种化学催化剂。为了实现(S)-烟碱的绿色合成,设计了酶-化学级联途径:首先,构建了亚胺还原酶(IRED)与甲酸脱氢酶(FDH)的偶联体系,以麦斯明为底物合成(S)-降烟碱;然后,将(S)-降烟碱经Eschweiler-Clarke反应制备(S)-烟碱。通过大肠杆菌宿主分别对IRED和FDH进行表达,得到含酶细胞及酶液,考察了pH和温度对细胞中IRED和FDH酶活力的影响。优化酶催化制备(S)-降烟碱的反应条件,在30℃、pH 7.5条件下,添加质量浓度为30 g/L的麦斯明、600 U/L FDH细胞、900 U/L IRED细胞、0.6 mmol/L NADP^(+)和质量浓度为90 g/L的甲酸钠,(S)-降烟碱的产率>98%,对映体过量(e.e.)值>99%。最后,通过化学法将(S)-降烟碱甲基化得到(S)-烟碱,此步骤产率和e.e.值均达99%以上。 展开更多
关键词 (S)-烟碱 亚胺还原酶 甲酸脱氢酶 (S)-降烟碱 生物工程
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科教融合在生物工程专业实验教学中的应用探讨——以人参皂苷CK抗肝癌靶点的虚拟筛选为例
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作者 张森 惠俊峰 +4 位作者 杨静 姚天宇 曾丹 赵婧 王盼 《广东化工》 CAS 2024年第1期161-163,146,共4页
生化分离工程实验在生物工程专业创新性人才培养的过程中起着重要作用。本文以“人参皂苷CK抗肝癌靶点的虚拟筛选”实验为例,探讨了将其作为生化分离工程综合实验教学的可行性。通过将该实验融入生物工程专业实验教学不仅可以增强学生... 生化分离工程实验在生物工程专业创新性人才培养的过程中起着重要作用。本文以“人参皂苷CK抗肝癌靶点的虚拟筛选”实验为例,探讨了将其作为生化分离工程综合实验教学的可行性。通过将该实验融入生物工程专业实验教学不仅可以增强学生对专业知识的理解,而且可以拓宽学生对前沿科学发展的认知和视野,从而激发学生的学习兴趣和学习动力并在学习过程中培养他们对现代工具的使用能力和创新性思维。 展开更多
关键词 生物工程实验教学 人参皂苷 肝癌 网络药理学 分子对接
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新时代生物化工下生物工程课程体系建设与创新型人才培养的探索——以皖西学院生物工程专业为例
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作者 李国辉 宋程 +4 位作者 孙传伯 何晓梅 陈瑞 李道远 黄士平 《云南化工》 CAS 2024年第1期151-153,共3页
基于大别山地区特色产业经济发展和皖西学院生物工程专业办学理念,以生物工程专业为例,结合专业特点和课程体系建设,以特色优势农业发展中涉及的实际问题为导向,将大别山农业特色产业的提升需求与生物工程体系建设和创新人才培养进行有... 基于大别山地区特色产业经济发展和皖西学院生物工程专业办学理念,以生物工程专业为例,结合专业特点和课程体系建设,以特色优势农业发展中涉及的实际问题为导向,将大别山农业特色产业的提升需求与生物工程体系建设和创新人才培养进行有机结合,开展生物工程专业本科生新培养模式的探索,以期为该专业的一流课程的创建提供参考,并为社会输出高质量专业人才提供保障。 展开更多
关键词 生物化工 生物工程 特色产业 课程体系建设 创新人才
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3D打印技术在牙周组织工程中的应用
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作者 聂闻 黄宏莉 +2 位作者 莫文文 龙桂月 廖红兵 《中国组织工程研究》 CAS 北大核心 2024年第29期4671-4676,共6页
背景:3D打印是牙科领域的一项新兴技术。它使用一种分层制造技术来创建可用于牙周组织工程应用的支架。通过3D打印的组织支架能够创建具有可控的特性,如内部结构、孔隙度和互联性,这使得它成为一种非常理想的牙周组织工程策略。目的:综... 背景:3D打印是牙科领域的一项新兴技术。它使用一种分层制造技术来创建可用于牙周组织工程应用的支架。通过3D打印的组织支架能够创建具有可控的特性,如内部结构、孔隙度和互联性,这使得它成为一种非常理想的牙周组织工程策略。目的:综述3D打印支架在牙周再生过程中的应用进展。方法:以“3D printing,periodontal tissue engineering,additive manufacturing,regenerative medicine,bioengineering,scaffold,bioprinting,periodontitis;3D打印,增材制造,牙周组织工程,支架,生物墨水,生物打印,组织工程学”为检索词,运用计算机检索PubMed、CNKI数据库中2000-2023年发表的相关文献。结果与结论:随着过去几十年3D打印技术的突飞猛进,它在组织工程和生物医学领域中都取得了巨大的突破和进展。3D打印技术能够提供高度个性化的治疗方案,提高治疗支架的适配性与治疗效果,在牙周组织工程中具有广阔的应用前景。在牙周组织工程领域中,3D打印的应用可以更好地模拟生物组织复杂的结构,并且能够制造出具有合适力学、流变学等特性的生物支架材料。3D打印技术通过组织工程支架的逐层构建不仅可以为牙周疾病治疗创建精确而复杂的支架模型,并且能在支架中创建复杂的微结构和通道,以促进细胞生长和组织再生。 展开更多
关键词 3D打印 牙周组织工程 增材制造 再生医学 生物工程 支架材料
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Bioengineering protection mechanism of city rock slope and its laboratory test
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作者 Desong JIANG Minghua ZHAO Chong JIANG 《Frontiers of Structural and Civil Engineering》 SCIE EI 2009年第4期414-421,共8页
Based on the features of rock slope bioengineering protection,the ecology protection mechanism of the urban rock slope was discussed with the mechanics effect of plants and rock slope,and the reinforcement action mech... Based on the features of rock slope bioengineering protection,the ecology protection mechanism of the urban rock slope was discussed with the mechanics effect of plants and rock slope,and the reinforcement action mechanism of rock slope by plant root system was analyzed as well.Then,the corresponding mechanical model was proposed,from which the formula to calculate the increased shearing strength of the root system-earth compound body was derived.Moreover,the side slope rainfall interception,the runoff lagging,the soil antiseepage,and the soil layer consolidating effect were studied,respectively.Furthermore,the indoor model experiment of urban crag rock slope ecology protection was designed and completed,in which various grasses to plant in slope with different angles,solid earth forms,and the different strengthening earth mechanism were studied.Finally,the present method was applied in an engineering project,from which the antiwashing behavior of three kind of grasses(i.e.,the Bahiagrass,the tall fescue,and the Bermudagrass)planted in the slope with an angle of 38°,48°,and 58°,respectively,and different strengthening structures(i.e.,the diamond wire netting,the geocell and the threedimensional network)were obtained.The application results also show that the effect of geocell structure is the best one followed by the three-dimensional net and the diamond wire net.The antiwashing capability per unit area has a critical slope angle of about 25°.The reinforcing effect of Bermudagrass is better than the Bahiagrass and tall fescue. 展开更多
关键词 rock slope bioengineering protection antiwashout
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