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Bio-inspired Hydroxyapatite/Gelatin Transparent Nanocomposites
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作者 谭军军 WU Mingchen +2 位作者 LI Yuzhe PENG Jiamei 熊焰 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第2期298-308,共11页
Hydroxyapatite(HA)nanoparticles impart outstanding mechanical properties to organicinorganic nanocomposites in bone.Inspired by the composite structure of HA nanoparticles and collagen in bone,a high performance HA/ge... Hydroxyapatite(HA)nanoparticles impart outstanding mechanical properties to organicinorganic nanocomposites in bone.Inspired by the composite structure of HA nanoparticles and collagen in bone,a high performance HA/gelatin nanocomposite was first developed.The nanocomposites have much better mechanical properties(elongation at break 29.9%,tensile strength 90.7 MPa,Young’s modulus 5.24 GPa)than pure gelatin films(elongation at break 9.3%,tensile strength 90.8 MPa,Young’s modulus 2.5 GPa).In addition,the composite films keep a high transmittance in visible wavelength range from 0%to 60%of the HA solid content.These differences in properties are attributed to the homogeneous distribution of HA nanoparticles in the gelatin polymer matrix and the strong interaction between the particle surfaces and the gelatin molecules.This protocol should be promising for HA-based nanocomposites with enhanced mechanical properties for biomedical applications. 展开更多
关键词 HYDROXYAPATITE NANOCOMPOSITES sodium citrate gelatin colloidal stability
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Constructing a biofunctionalized 3D-printed gelatin/sodium alginate/chitosan tri-polymer complex scaffold with improvised biological andmechanical properties for bone-tissue engineering
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作者 Amit Kumar Singh Krishna Pramanik Amit Biswas 《Bio-Design and Manufacturing》 SCIE EI CAS CSCD 2024年第1期57-73,共17页
Sodium alginate(SA)/chitosan(CH)polyelectrolyte scaffold is a suitable substrate for tissue-engineering application.The present study deals with further improvement in the tensile strength and biological properties of... Sodium alginate(SA)/chitosan(CH)polyelectrolyte scaffold is a suitable substrate for tissue-engineering application.The present study deals with further improvement in the tensile strength and biological properties of this type of scaffold to make it a potential template for bone-tissue regeneration.We experimented with adding 0%–15%(volume fraction)gelatin(GE),a protein-based biopolymer known to promote cell adhesion,proliferation,and differentiation.The resulting tri-polymer complex was used as bioink to fabricate SA/CH/GEmatrices by three-dimensional(3D)printing.Morphological studies using scanning electron microscopy revealed the microfibrous porous architecture of all the structures,which had a pore size range of 383–419μm.X-ray diffraction and Fourier-transform infrared spectroscopy analyses revealed the amorphous nature of the scaffold and the strong electrostatic interactions among the functional groups of the polymers,thereby forming polyelectrolyte complexes which were found to improve mechanical properties and structural stability.The scaffolds exhibited a desirable degradation rate,controlled swelling,and hydrophilic characteristics which are favorable for bone-tissue engineering.The tensile strength improved from(386±15)to(693±15)kPa due to the increased stiffness of SA/CH scaffolds upon addition of gelatin.The enhanced protein adsorption and in vitro bioactivity(forming an apatite layer)confirmed the ability of the SA/CH/GE scaffold to offer higher cellular adhesion and a bone-like environment to cells during the process of tissue regeneration.In vitro biological evaluation including the MTT assay,confocal microscopy analysis,and alizarin red S assay showed a significant increase in cell attachment,cell viability,and cell proliferation,which further improved biomineralization over the scaffold surface.In addition,SA/CH containing 15%gelatin designated as SA/CH/GE15 showed superior performance to the other fabricated 3D structures,demonstrating its potential for use in bone-tissue engineering. 展开更多
关键词 SCAFFOLD Biomaterial Sodium alginate CHITOSAN gelatin 3D printing Tissue engineering
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One-step cell biomanufacturing platform:porous gelatin microcarrier beads promote human embryonic stem cell-derived midbrain dopaminergic progenitor cell differentiation in vitro and survival after transplantation in vivo
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作者 Lin Feng Da Li +10 位作者 Yao Tian Chengshun Zhao Yun Sun Xiaolong Kou Jun Wu Liu Wang Qi Gu Wei Li Jie Hao Baoyang Hu Yukai Wang 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第2期458-464,共7页
Numerous studies have shown that cell replacement therapy can replenish lost cells and rebuild neural circuitry in animal models of Parkinson’s disease.Transplantation of midbrain dopaminergic progenitor cells is a p... Numerous studies have shown that cell replacement therapy can replenish lost cells and rebuild neural circuitry in animal models of Parkinson’s disease.Transplantation of midbrain dopaminergic progenitor cells is a promising treatment for Parkinson’s disease.However,transplanted cells can be injured by mechanical damage during handling and by changes in the transplantation niche.Here,we developed a one-step biomanufacturing platform that uses small-aperture gelatin microcarriers to produce beads carrying midbrain dopaminergic progenitor cells.These beads allow midbrain dopaminergic progenitor cell differentiation and cryopreservation without digestion,effectively maintaining axonal integrity in vitro.Importantly,midbrain dopaminergic progenitor cell bead grafts showed increased survival and only mild immunoreactivity in vivo compared with suspended midbrain dopaminergic progenitor cell grafts.Overall,our findings show that these midbrain dopaminergic progenitor cell beads enhance the effectiveness of neuronal cell transplantation. 展开更多
关键词 axonal integrity cell cryopreservation cellular environment cellular niche cell replacement therapy dopaminergic progenitors human pluripotent stem cell mechanical damage neuronal cell delivery Parkinson’s disease small-aperture gelatin microcarriers
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Antibacterial Chitosan-Gelatin Microcapsules Modified with Green-Synthesized Silver Nanoparticles for Food Packaging 被引量:1
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作者 Long Li Yanan Lu +3 位作者 Yu Chen Jiayi Bian Li Wang Li Li 《Journal of Renewable Materials》 SCIE EI 2023年第1期291-307,共17页
Silver nanoparticles(Ag NPs)are an effective antibacterial agent,but their application in food packaging is limited due to their easy agglomeration and oxidation.In this study,antibacterial microcapsules were fabricat... Silver nanoparticles(Ag NPs)are an effective antibacterial agent,but their application in food packaging is limited due to their easy agglomeration and oxidation.In this study,antibacterial microcapsules were fabricated using Ginkgo biloba essential oil(GBEO)as core material and chitosan and type B gelatin biopolymer as capsule mate-rials.These antibacterial microcapsules were then modified with green-synthesized Ag NPs,blended into the bio-polymer polylactic acid(PLA),and finally formed as films.Physicochemical properties and antibacterial activity against Escherichia coli(E.coli)and Staphylococcus aureus(S.aureus)were evaluated.Results showed that the prepared antibacterial PLA films exhibited excellent antibacterial activity against foodborne pathogens.Its TVC exceeded the limit value of 7 log CFU/g at 7 days compared with the 5 days of pure PLA films.Therefore,these films can extend the shelf life of grass carp fillets by 2–3 days under refrigeration. 展开更多
关键词 Silver nanoparticles chitosan gelatin MICROCAPSULES antibacterial activity food packaging
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Alginate/gelatin/boron-doped hydroxyapatite-coated Ti implants:in vitro and in vivo evaluation of osseointegration
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作者 Ahmet E.Pazarçeviren Zafer Evis +4 位作者 Tayfun Dikmen Korhan Altunbas Mustafa V.Yaprakçı Dilek Keskin Aysen Tezcaner 《Bio-Design and Manufacturing》 SCIE EI CAS CSCD 2023年第3期217-242,共26页
In this study,boron-doped hydroxyapatite(BHT)-loaded alginate/gelatin-based(A/G)hydrogel coating on Ti was fabricated to support bone integration through triggering osteoinduction,vascularization and immunomodulation.... In this study,boron-doped hydroxyapatite(BHT)-loaded alginate/gelatin-based(A/G)hydrogel coating on Ti was fabricated to support bone integration through triggering osteoinduction,vascularization and immunomodulation.Initially,highly reproducible,cheap and time-effective BHT was produced,which significantly promoted higher osteogenic and angiogenic maturation,while a mild innate immune response was observed.The immense potential of BHT was evidenced by the production of a gap-filling A/G/BHT interphase on Ti implants to mimic the osseous extracellular matrix to achieve functional bridging and exert control over the course of innate immune response.We initially aminosilanized the implant surface using 3-aminopropyl triethoxysilane,and then coated it with 0.25%w/v alginate with 20 mM 1-ethyl-3-(3-dimethylaminopropyl)carbodiimide and N-hydroxysuccinimide to allowthe A/G/BHT pre-gel to disperse evenly and covalently attach on the surface.The pre-gel was added with 0.2 M NaCl to homogeneously blend BHT in the structure without inducing ionic crosslinking.Then,the coated implants were freeze-dried and stored.The coated layer demonstrated high cohesive and adhesive strength,and 8-month-long shelf-life at room temperature and normal humidity.The A/G/BHT was able to coat an irregularly shaped Ti implant.Osteoblasts and endothelial cells thrived on the A/G/BHT,and it demonstrated greatly improved osteogenic and angiogenic capacity.Moreover,A/G/BHT maintained macrophage viability and generated an acute increase in immune response that could be resolved rapidly.Finally,A/G/BHT was shown to induce the robust integration of implant in a rabbit femur osteochondral model within 2months.Therefore,we concluded that A/G/BHT coatings could serve as amultifunctional reservoir,promoting the strong and rapid osseointegration of metallic implants. 展开更多
关键词 Boron Alginate/gelatin Implant coating Titanium Osteochondral model
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3D-printed engineered bacteria-laden gelatin/sodium alginate composite hydrogels for biological detection of ionizing radiation
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作者 Ziyuan Chen Jintao Shen +8 位作者 Meng Wei Wenrui Yan Qiucheng Yan Zhangyu Li Yaqiong Chen Feng Zhang Lina Du Bochuan Yuan Yiguang Jin 《Bio-Design and Manufacturing》 SCIE EI CAS CSCD 2023年第4期439-450,共12页
Nuclear safety is a global growing concern,where ionizing radiation(IR)is a major injury factor resulting in serious damage to organisms.The detection of IR is usually conducted with physical dosimeters;however,biolog... Nuclear safety is a global growing concern,where ionizing radiation(IR)is a major injury factor resulting in serious damage to organisms.The detection of IR is usually conducted with physical dosimeters;however,biological IR detection methods are deficient.Here,a living composite hydrogel consisting of engineered bacteria and gelatin/sodium alginate was 3D-printed for the biological detection of IR.Three strains of PrecA::egfp gene circuit-containing engineered Escherichia coli were constructed with IR-dependent fluorescence,and the DH5αstrain was finally selected due to its highest radiation response and fluorescence.Engineered bacteria were loaded in a series of gelatin/sodium alginate matrix hydrogels with different rheology,3D printability and bacterial applicability.A high-gelatin-content hydrogel containing 10%gelatin/1.25%sodium alginatewas optimal.The optimal living composite hydrogelwas 3D-printedwith the special bioink,which reported significant green fluorescence underγ-ray radiation.The living composite hydrogel provides a biological strategy for the detection of environmental ionizing radiation. 展开更多
关键词 3D printing ALGINATE Engineered bacteria gelatin HYDROGEL Ionizing radiation
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Broiler Feet Gelatine
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作者 Andrianarivony Nomenjanahary Tiona Baholy Robijaona Rahelivololoniaina 《Engineering(科研)》 CAS 2023年第4期234-241,共8页
The two waves period of the COVID-19 pandemic saw the use of hydro- alcoholic gel and the consumption of capsules containing improved traditional remedies. At one point, there was a stock-out and a price increase... The two waves period of the COVID-19 pandemic saw the use of hydro- alcoholic gel and the consumption of capsules containing improved traditional remedies. At one point, there was a stock-out and a price increase forthese products. Furthermore, in the food industry, the catering industry adopts gelatin in its current practice. Pig gelatin dominates the international market. And for some religious practices, pork is forbidden and yet these people consume them without taking notice. The production of gelatin from broiler feet seems economically viable because broiler feet are considered slaughterhouse waste that is sold at very low prices. The poultry industry has seen an increase in broiler farming over the last twenty years. However, the latter has all the characteristics required for the production of gelatin. It will therefore comply with the standards of use described in the international codex oenological for gelatins. Physical and chemical analyses such as, ash content, moisture content, and pH measurements were done for the extracted gelatins. Sensible elements are checked with ED XRF spectroscopy. All the results were good and showed without any doubt that broiler gelatin is edible. 展开更多
关键词 gelatin Gel Amino-Acids RETICULATION COLLAGEN Broiler-Feet
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Comparison of ethanol-soaked gelatin sponge and microspheres for hepatic arterioportal fistulas embolization in hepatic cellular carcinoma
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作者 Guang-Sheng Yuan Li-Li Zhang +7 位作者 Zi-Tong Chen Cun-Jing Zhang Shu-Hui Tian Ming-Xia Gong Peng Wang Lei Guo Nan Shao Bin Liu 《World Journal of Gastrointestinal Oncology》 SCIE 2023年第9期1595-1604,共10页
Hepatic arterioportal fistulas(APFs)are common in hepatocellular carcinoma(HCC).Moreover,correlated with poor prognosis,APFs often complicate antitumor treatments,including transarterial chemoembolization(TACE).AIM To... Hepatic arterioportal fistulas(APFs)are common in hepatocellular carcinoma(HCC).Moreover,correlated with poor prognosis,APFs often complicate antitumor treatments,including transarterial chemoembolization(TACE).AIM To compare the efficacy of ethanol-soaked gelatin sponges(ESG)and microspheres in the management of APFs and their impact on the prognosis of HCC.METHODS Data from patients diagnosed with HCC or hepatic APFs between June 2016 and December 2019 were retrospectively analyzed.Furthermore,APFs were embolized with ESG(group E)or microspheres(group M)during TACE.The primary outcomes were disease control rate(DCR)and objective response rate(ORR).The secondary outcomes included immediate and first follow-up APF improvement,overall survival(OS),and progression-free survival(PFS).RESULTS Altogether,91 participants were enrolled in the study,comprising 46 in group E and 45 in group M.The DCR was 93.5%and 91.1%in groups E and M,respectively(P=0.714).The ORRs were 91.3%and 66.7%in groups E and M,respectively(P=0.004).The APFs improved immediately after the procedure in 43(93.5%)patients in group E and 40(88.9%)patients in group M(P=0.485).After 2 mo,APF improvement was achieved in 37(80.4%)and 33(73.3%)participants in groups E and M,respectively(P=0.421).The OS was 26.2±1.4 and 20.6±1.1 mo in groups E and M,respectively(P=0.004),whereas the PFS was 16.6±1.0 and 13.8±0.7 mo in groups E and M,respectively(P=0.012).CONCLUSION Compared with microspheres,ESG embolization demonstrated a higher ORR and longer OS and PFS in patients of HCC with hepatic APFs. 展开更多
关键词 Hepatocellular carcinoma Arterioportal fistula ETHANOL gelatin sponge MICROSPHERE EMBOLIZATION
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Development of Gelatin-Based Active Packaging and Its Application in Bread Preservation
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作者 Hui Zheng Xiaohan Chen +4 位作者 Li Li Dawei Qi Jiale Wang Jiaying Lou Wenjun Wang 《Journal of Renewable Materials》 EI 2023年第10期3693-3709,共17页
The issue of plastic pollution has attracted widespread social attention.Gelatin is valued as a degradable bio-based material,especially as an edible active packaging material.However,the commonly used solution-castin... The issue of plastic pollution has attracted widespread social attention.Gelatin is valued as a degradable bio-based material,especially as an edible active packaging material.However,the commonly used solution-casting filmforming technology limits the mass production of gelatin films.In order to improve the production efficiency and enhance the commercial value of gelatin films,in this study,fish gelatin(FG)particles were successfully blended with essential oils(EOs)to prepare active films by melt extrusion technique,a common method for commercial plastics,and applied to bread preservation.FG and EOs showed good compatibility with each other.The elongation at break was enhanced in all samples of films containing EOs.The addition of EOs weakened the oxygen barrier properties of the FG films.The gelatin films containing clove EO showed the highest DPPH radical scavenging rate of 39.38%.The films containing oregano EO showed the highest antibacterial activity,with 98.84%and 99.86% against S.aureus and E.coli,respectively.The bread preservation results showed a slower microbial growth rate in the samples preserved by the active films.The bread samples preserved in commercial PE film showed mold on day 3,and the bread samples preserved in active gelatin film showed mold visible to the naked eye by day 7.This study demonstrates the potential of gelatin-based activated films for commercial application in baked goods preservation. 展开更多
关键词 Fish gelatin film essential oils melt extrusion bread preservation
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Enhanced wound healing and hemostasis with exosome-loaded gelatin sponges from human umbilical cord mesenchymal stem cells
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作者 Xin-Mei Hu Can-Can Wang +3 位作者 Yu Xiao Peng Jiang Yu Liu Zhong-Quan Qi 《World Journal of Stem Cells》 SCIE 2023年第9期947-959,共13页
BACKGROUND Rapid wound healing remains a pressing clinical challenge,necessitating studies to hasten this process.A promising approach involves the utilization of human umbilical cord mesenchymal stem cells(hUC-MSCs)d... BACKGROUND Rapid wound healing remains a pressing clinical challenge,necessitating studies to hasten this process.A promising approach involves the utilization of human umbilical cord mesenchymal stem cells(hUC-MSCs)derived exosomes.The hypothesis of this study was that these exosomes,when loaded onto a gelatin sponge,a common hemostatic material,would enhance hemostasis and accelerate wound healing.AIM To investigate the hemostatic and wound healing efficacy of gelatin sponges loaded with hUC-MSCs-derived exosomes.METHODS Ultracentrifugation was used to extract exosomes from hUC-MSCs.Nanoparticle tracking analysis(NTA),transmission electron microscopy(TEM),and western blot techniques were used to validate the exosomes.In vitro experiments were performed using L929 cells to evaluate the cytotoxicity of the exosomes and their impact on cell growth and survival.New Zealand rabbits were used for skin irritation experiments to assess whether they caused adverse skin reactions.Hemolysis test was conducted using a 2%rabbit red blood cell suspension to detect whether they caused hemolysis.Moreover,in vivo experiments were carried out by implanting a gelatin sponge loaded with exosomes subcutaneously in Sprague-Dawley(SD)rats to perform biocompatibility tests.In addition,coagulation index test was conducted to evaluate their impact on blood coagulation.Meanwhile,SD rat liver defect hemostasis model and full-thickness skin defect model were used to study whether the gelatin sponge loaded with exosomes effectively stopped bleeding and promoted wound healing.RESULTS The NTA,TEM,and western blot experimental results confirmed that exosomes were successfully isolated from hUC-MSCs.The gelatin sponge loaded with exosomes did not exhibit significant cell toxicity,skin irritation,or hemolysis,and they demonstrated good compatibility in SD rats.Additionally,the effectiveness of the gelatin sponge loaded with exosomes in hemostasis and wound healing was validated.The results of the coagulation index experiment indicated that the gelatin sponge loaded with exosomes had significantly better coagulation effect compared to the regular gelatin sponge,and they showed excellent hemostatic performance in a liver defect hemostasis model.Finally,the full-thickness skin defect healing experiment results showed significant improvement in the healing process of wounds treated with the gelatin sponge loaded with exosomes compared to other groups.CONCLUSION Collectively,the gelatin sponge loaded with hUC-MSCs-derived exosomes is safe and efficacious for promoting hemostasis and accelerating wound healing,warranting further clinical application. 展开更多
关键词 Human umbilical cord mesenchymal stem cells EXOSOMES gelatin sponge SAFETY HEMOSTASIS Wound healing
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基于HRM技术开发水稻糊化温度基因ALK功能标记
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作者 王军 周晶 +9 位作者 陶亚军 李文奇 朱建平 范方军 王芳权 许扬 陈智慧 蒋彦婕 李霞 杨杰 《中国水稻科学》 CAS CSCD 北大核心 2024年第1期106-110,共5页
【目的】糊化温度是影响稻米蒸煮食味品质的重要指标,ALK是控制水稻糊化温度的主效基因,开发可快速高通量鉴定ALK基因型的功能标记有助于提高水稻品质改良的效率。【方法】根据ALK基因4198位、4329位和4330位存在的单碱基差异,设计基于... 【目的】糊化温度是影响稻米蒸煮食味品质的重要指标,ALK是控制水稻糊化温度的主效基因,开发可快速高通量鉴定ALK基因型的功能标记有助于提高水稻品质改良的效率。【方法】根据ALK基因4198位、4329位和4330位存在的单碱基差异,设计基于HRM技术检测的基因功能标记。【结果】通过PCR检测结合测序分析,筛选了ALK基因2个功能区域的功能标记ALKH4、ALKH5。利用ALKH4、ALKH5对81份籼稻品种、279份粳稻品种进行了ALK基因型检测,结果发现,16份粳稻和19份籼稻为G-GC基因型;51份粳稻为A-GC基因型;212份粳稻和62份籼稻为G-TT基因型。【结论】基于HRM技术开发的基因功能标记ALKH4、ALKH5可以快速高通量鉴定控制糊化温度ALK不同基因型,具有重要的应用价值。 展开更多
关键词 水稻 糊化温度 ALK 功能标记 HRM技术
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糯小麦“山农糯麦1号”籽粒及淀粉品质分析
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作者 于海霞 彭莉 +3 位作者 孙明涛 杨明 邓志英 田纪春 《粮油食品科技》 CAS CSCD 北大核心 2024年第2期100-105,共6页
为更好地了解糯小麦的品种特性,以山东省第一个审定的高产糯小麦“山农糯麦1号”为材料,研究其籽粒和淀粉特性。结果发现:该品种几乎不含直链淀粉(仅0.1%),较普通小麦具有较高的蛋白质含量(16.4%)和面粉白度(81.2%)。扫描电镜观察淀粉... 为更好地了解糯小麦的品种特性,以山东省第一个审定的高产糯小麦“山农糯麦1号”为材料,研究其籽粒和淀粉特性。结果发现:该品种几乎不含直链淀粉(仅0.1%),较普通小麦具有较高的蛋白质含量(16.4%)和面粉白度(81.2%)。扫描电镜观察淀粉粒度分布不均匀,A型淀粉颗粒较多。快速粘度分析(RVA)测定表明淀粉具有较低的糊化温度,较短的糊化时间,较低的峰值黏度、最终粘度和回生值。加工时面团吸水率明显较高,形成时间大于稳定时间。这些结果将为山农糯麦1号适于用作配粉和加工食品提供参考依据。 展开更多
关键词 糯性小麦 籽粒 淀粉 糊化特性 粉质特性
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速食杂粮预熟化工艺研究
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作者 孙军涛 王德国 +1 位作者 周明明 鲁明园 《许昌学院学报》 CAS 2024年第2期75-78,共4页
旨在对耐煮杂粮进行预熟化加工来提高耐煮杂粮食用的便捷性.采用常压蒸煮预熟化工艺,研究蒸煮时间对薏仁、红豆、莲子、麦仁和糯米的复水率和糊化度的影响,对比分析预熟化前后的杂粮熬制时间和品质变化.研究结果表明:薏仁、红豆、莲子... 旨在对耐煮杂粮进行预熟化加工来提高耐煮杂粮食用的便捷性.采用常压蒸煮预熟化工艺,研究蒸煮时间对薏仁、红豆、莲子、麦仁和糯米的复水率和糊化度的影响,对比分析预熟化前后的杂粮熬制时间和品质变化.研究结果表明:薏仁、红豆、莲子、麦仁和糯米常压蒸煮预熟化的蒸煮时间分别为110、65、40、40和35 min,预熟化薏仁、红豆、莲子、麦仁和糯米的复水率分别为171.5%、190%、170.67%、224%和182.67%,糊化度分别为90%、74.54%、80.1%、92.85%和96.97%.预熟化压片薏仁、红豆、莲子、麦仁和糯米的熬制时间分别为10、8、12、10和6 min,与未预熟化原料相比,熬制时间缩短了6.6、6.5、3、4和2.3倍,极大提高了杂粮食用的便捷性. 展开更多
关键词 杂粮 糊化度 复水性 蒸煮时间
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紫外光固化接枝明胶改性可生物降解水性聚氨酯的性能研
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作者 吴广峰 宋欣 李迎春 《长春工业大学学报》 CAS 2024年第1期15-23,共9页
以聚己内酯二醇(PCL)为软段成分,丙烯酸羟乙基酯(HEA)为封端剂,制备了具有丙烯酸酯端基的水性聚氨酯(WPU)预聚体。将乙烯基三甲氧基硅烷(VTMS)与明胶水解缩合反应后得到的乙烯基接枝改性明胶(GH)通过共价键合的连接方式引入到WPU分子骨... 以聚己内酯二醇(PCL)为软段成分,丙烯酸羟乙基酯(HEA)为封端剂,制备了具有丙烯酸酯端基的水性聚氨酯(WPU)预聚体。将乙烯基三甲氧基硅烷(VTMS)与明胶水解缩合反应后得到的乙烯基接枝改性明胶(GH)通过共价键合的连接方式引入到WPU分子骨架中。通过紫外光固化将GH中的乙烯基和WPU预聚体中的丙烯酸酯末端连接,制备了可生物降解的WPU/GH复合材料。对WPU/GH的热性能、热失重性能及生物降解性能、降解后结晶度的变化等进行了测试和分析。结果表明,共价键合能提高WPU的成膜性能、耐水性和热稳定性。当GH含量达到10 wt.%时,WPU/GH在0.6%脂肪酶PBS溶液中的降解率达到68%,在土壤中的降解率达到56%。 展开更多
关键词 水性聚氨酯 生物降解性 改性明胶 紫外光固化 共价键合
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BaTiO3/gelatin核壳复合粒子的制备及电场响应性能研究 被引量:2
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作者 李丽 海金玲 +1 位作者 谢超 高玲香 《功能材料》 EI CAS CSCD 北大核心 2013年第11期1570-1573,1578,共5页
为了提高BaTiO3颗粒在含水弹性体中的电场响应能力,以粒径约为500nm的单分散球型Ba-TiO3颗粒为基础,采用微乳液法成功制备了BaTiO3为核、明胶(gelatin)为壳的BaTiO3/gelatin核壳复合粒子。利用TEM、XRD、FT-IR、TG和光学接触角测量等手... 为了提高BaTiO3颗粒在含水弹性体中的电场响应能力,以粒径约为500nm的单分散球型Ba-TiO3颗粒为基础,采用微乳液法成功制备了BaTiO3为核、明胶(gelatin)为壳的BaTiO3/gelatin核壳复合粒子。利用TEM、XRD、FT-IR、TG和光学接触角测量等手段对粒子的组成、结构及表面亲水性能进行了表征和测量。结果表明,在立方相BaTiO3核的表面均匀包覆了1层约40~50nm的gelatin,Gelatin壳层约占粒子总重的4.0%,且粒子表面保持良好的亲水性。将粒子分散到含水胶体体系中,通过测量在无/有电场作用下胶凝得到的含水弹性体的储能模量考察了粒子在此体系中的电场响应性能,发现BaTiO3/gelat-in复合粒子在明胶(或壳聚糖)水凝胶弹性体中的电场响应性能均明显强于纯BaTiO3粒子,而且在明胶水凝胶中的响应性能更强。结果说明,聚合物包覆能够明显提高BaTiO3粒子的电场响应性能,而且粒子表面与分散体系相容性越高,粒子的响应性能越好。 展开更多
关键词 核壳复合粒子 BATIO3 gelatin 电场响应 含水弹性体
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明胶基静电纺丝纳米纤维及其应用
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作者 程恩 叶冬蕾 +3 位作者 程德宝 田华峰 赵晓颖 项爱民 《中国塑料》 CAS CSCD 北大核心 2024年第4期103-108,共6页
介绍了溶液的黏度、电导率、表面张力和溶剂的挥发性等对静电纺丝制备纳米纤维薄膜的影响,静电纺丝技术的分类,以及采用可降解的明胶等物质通过静电纺丝技术制备明胶基纳米纤维薄膜,综述了静电纺丝明胶基纳米纤维薄膜在可食用薄膜、抗... 介绍了溶液的黏度、电导率、表面张力和溶剂的挥发性等对静电纺丝制备纳米纤维薄膜的影响,静电纺丝技术的分类,以及采用可降解的明胶等物质通过静电纺丝技术制备明胶基纳米纤维薄膜,综述了静电纺丝明胶基纳米纤维薄膜在可食用薄膜、抗菌抗氧化薄膜、组织工程、纳米纤维敷料和过滤等方面的应用。 展开更多
关键词 可降解 静电纺丝 明胶 纳米纤维
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球形破片侵彻明胶运动模型及破片参数敏感性分析
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作者 蒋明飞 陈莉 +2 位作者 刘坤 赵磊 吴志林 《国防科技大学学报》 EI CAS CSCD 北大核心 2024年第1期170-178,共9页
为揭示球形破片对人体组织致伤机理,以明胶作为人体组织的替代物,基于动态空腔膨胀理论,考虑球形破片未完全侵入阶段的速度衰减,建立了球形破片侵彻明胶的分段运动理论模型,研究了球形破片侵彻明胶的运动规律。通过钢球和钨球侵彻明胶... 为揭示球形破片对人体组织致伤机理,以明胶作为人体组织的替代物,基于动态空腔膨胀理论,考虑球形破片未完全侵入阶段的速度衰减,建立了球形破片侵彻明胶的分段运动理论模型,研究了球形破片侵彻明胶的运动规律。通过钢球和钨球侵彻明胶的实验验证了模型的正确性,求解了模型中的最优阻力系数。分析了理论计算过程中的误差来源,并推导得到了无量纲侵彻深度的表达式。利用Sobol′法进行了球形破片参数(直径、密度和速度)对侵彻深度影响的敏感性分析。结果表明:运动模型能够较好地模拟球形破片的运动规律;低密度的球形破片在未完全侵入阶段的速度衰减不能忽略;球形破片参数对侵彻深度影响的敏感性由高到低依次是速度、密度和直径。 展开更多
关键词 爆炸力学 球形破片 明胶 侵彻 敏感性
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丝素蛋白/明胶/壳聚糖三维多孔软骨组织支架的制备及体外评价
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作者 谷明西 王常成 +3 位作者 田丰德 安宁 郝瑞胡 郭林 《中国组织工程研究》 CAS 北大核心 2024年第3期366-372,共7页
背景:软骨缺损是骨科医生面临的主要临床挑战之一,组织工程是一种结合了工程学和细胞生物学知识的跨学科方法,为软骨缺损的修复提供了新思路与途径。目的:基于丝素蛋白、明胶和壳聚糖制备多组分复合支架,通过评估其理化性质和生物学性能... 背景:软骨缺损是骨科医生面临的主要临床挑战之一,组织工程是一种结合了工程学和细胞生物学知识的跨学科方法,为软骨缺损的修复提供了新思路与途径。目的:基于丝素蛋白、明胶和壳聚糖制备多组分复合支架,通过评估其理化性质和生物学性能,筛选能够适合软骨再生的三维多孔支架。方法:以丝素蛋白、明胶和壳聚糖为基础材料,通过真空冷冻干燥法制备4组多孔支架,分别为明胶/壳聚糖支架、丝素蛋白/壳聚糖支架、丝素蛋白/明胶支架和丝素蛋白/明胶/壳聚糖支架,通过扫描电镜、X射线衍射、孔隙率、吸水膨胀率和生物降解率及力学性能等检测筛选出合适的软骨支架。然后将软骨支架与骨关节炎患者软骨细胞共培养,通过细胞黏附率、活死染色和增殖活性等检测体外评估多孔支架用于软骨损伤修复的可行性。结果与结论:①4组支架均具有多孔结构,综合物理性能检测结果得出丝素蛋白/明胶/壳聚糖支架更符合软骨缺损修复的要求,该支架的孔径为(176.00±53.68)μm,孔隙率为(80.15±2.57)%,吸水溶胀率为(3712±358)%,体外浸泡于含溶菌酶的PBS中28 d后的生物降解速率为(46.87±3.25)%,且具有良好的机械性能;②软骨细胞可在丝素蛋白/明胶/壳聚糖支架上良好黏附,且随着时间的延长,细胞黏附率增加;CCK8和活/死细胞双染检测结果显示,丝素蛋白/明胶/壳聚糖支架具有良好的生物相容性和较低的细胞毒性;③结果表明,丝素蛋白/明胶/壳聚糖支架具有高度水合3D结构、合适的孔径和孔隙率、良好的生物降解性能和优越的机械性能,可以为营养物质的转运和软骨细胞的附着、增殖提供良好的网状骨架和微环境。 展开更多
关键词 软骨 软骨缺损 组织工程 丝素蛋白 明胶 壳聚糖
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天津“小站稻”储藏过程中的品质变化
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作者 刘晗 刘诗佳 +7 位作者 刘金光 戈立新 张新阁 石磊 刘元 王玥玮 梁辰 周中凯 《食品研究与开发》 CAS 2024年第2期28-34,共7页
为探究储藏过程中大米品质变化的特征规律,以天津特产小站稻为试验对象,37℃储藏180 d,研究大米储藏过程中的糊化特性、流变学特性、蒸煮特性及质构特性等理化特性的变化规律。研究发现:随着储藏时间的延长,大米中蛋白质的含量先升高后... 为探究储藏过程中大米品质变化的特征规律,以天津特产小站稻为试验对象,37℃储藏180 d,研究大米储藏过程中的糊化特性、流变学特性、蒸煮特性及质构特性等理化特性的变化规律。研究发现:随着储藏时间的延长,大米中蛋白质的含量先升高后降低,但大米胶稠度逐渐降低,储藏180 d后,大米呈现出更高的峰值黏度和谷值黏度;流变学特性显示大米形成的凝胶网络结构呈现弹性增强、黏性减弱的变化规律;蒸煮特性显示米饭吸水率和体积膨胀率逐渐增大,而米汤pH值逐渐减小,米饭综合评分逐渐降低;质构特性显示米饭硬度逐渐增大,但黏着性整体减小。 展开更多
关键词 天津“小站稻” 储藏 糊化特性 流变学特性 蒸煮特性
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多糖在鱼糜制品中的应用进展
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作者 李统帅 兰梅娟 +4 位作者 李琳 张霞 梁钰 何霓 李冰 《中国食品添加剂》 CAS 2024年第3期281-288,共8页
在鱼糜制品生产加工过程中,不同的工艺步骤对鱼糜制品有不同的影响,其中肌原纤维蛋白(Myofibrillar protein,MP)的凝胶化起到关键性作用,决定着鱼糜制品品质的优劣。由于原料和加工方式的影响,鱼糜制品存在蛋白质变性、凝胶性能减弱、... 在鱼糜制品生产加工过程中,不同的工艺步骤对鱼糜制品有不同的影响,其中肌原纤维蛋白(Myofibrillar protein,MP)的凝胶化起到关键性作用,决定着鱼糜制品品质的优劣。由于原料和加工方式的影响,鱼糜制品存在蛋白质变性、凝胶性能减弱、脂质氧化以及微生物引起的腐败变质等问题。多糖作为天然食品添加剂具有良好的生物相容性且来源广泛、价格低廉,在鱼糜制品生产过程中有提高其凝胶特性、延缓氧化反应和增强储藏稳定性的作用。目前多糖改善鱼糜品质的研究并没有得到较为全面的归纳与总结,故本文概括了鱼糜制品的凝胶化机理及其加工工艺,总结了多糖在鱼糜制品中的应用及作用机制,以期为生产营养健康的鱼糜制品提供理论依据。 展开更多
关键词 鱼糜制品 多糖 肌原纤维蛋白 品质 凝胶
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