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輔酶
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抗微生物肽
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20種天然氨基酸
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CBZ保護氨基酸
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動物激素
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聚合物類
聚乙二醇(PEG)系列
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聚乙烯吡咯烷酮(PVP)
聚丙烯酸
葡聚糖T系列
聚乙烯亞胺(PEI)
聚乳酸(PL)
聚乙烯醇(PVA)
脂肪酸系列
脂肪酸系列-有機酸
短鏈脂肪酸
中鏈脂肪酸
長鏈脂肪酸
反式脂肪酸
磷脂類
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其他生化試劑
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對照藥材
對照藥材
標準溶液
分析滴定液
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抗氧化劑
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食品檢測-著色劑
護色劑
營養(yǎng)強化劑
增味劑
甜味劑
食品用香料
食品檢測-真菌毒素
食品檢測-激素
食品檢測-脂肪酸
藥品檢測
化藥檢測
中藥及中成藥檢測
環(huán)境檢測
大氣
土質、土壤
水質
固廢
化妝品檢測
增白劑
化妝品檢測激素
化妝品檢測防腐劑
防曬劑
化妝品檢測著色劑
飼料檢測
飼料檢測-真菌毒素
飼料檢測-激素
飼料檢測-維生素
飼料檢測-脂肪酸
農(nóng)殘
飼料檢測-抗生素
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小分子化合物溶液
小分子化合物溶液
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微生物學
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免疫與炎癥
DNA 損傷和修復
自噬
細胞骨架
干細胞
PI3K/Akt/mTOR 信號通路
蛋白酶體
MAPK 信號通路
JAK/STAT 信號通路
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化合物庫
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抗癌化合物庫
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高選擇性抑制劑庫
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靶點篩選
靶點篩選
蛋白&免疫
重組蛋白
重組蛋白-重組蛋白
蛋白提取和純化
蛋白提取和純化-裂解液
蛋白提取試劑盒
蛋白檢測
蛋白定量
蛋白定性
蛋白檢測-蛋白染色
蛋白電泳&Western blot
WB-裂解液
蛋白Marker
凝膠制備試劑盒
蛋白上樣緩沖液
WB-電泳緩沖液
封閉液
漂洗液
顯影液
蛋白預制膠
免疫檢測
免疫檢測
免疫組化
組織制備
抗原修復液
組織封閉
抗體稀釋
顯色與復染
特異性染色
封片劑
免疫其他相關試劑
免疫其他相關試劑
蛋白其他相關試劑
蛋白其他相關試劑
細胞生物學
感受態(tài)細胞
表達感受態(tài)細胞
克隆感受態(tài)細胞
酵母感受態(tài)細胞
發(fā)根農(nóng)桿菌感受態(tài)細胞
根癌農(nóng)桿菌感受態(tài)細胞
其他感受態(tài)細胞
細胞培養(yǎng)
基礎培養(yǎng)基
無血清培養(yǎng)基
平衡鹽溶液
細胞培養(yǎng)-血清
細胞生長因子
污染物清除劑
細胞凍存
細胞消化液
細胞分離
細胞裂解
分離液
免疫磁珠
酶抑制劑
細胞檢測
細胞檢測-細胞染色
細胞增殖與分化
細胞凋亡與自噬
細胞轉染
細胞轉染
抗生素溶液
抗生素溶液
其它細胞相關
其它細胞相關
分子生物學
核酸提取和純化
核酸提取和純化-裂解液
提取試劑盒
核酸電泳
DNA Marker
核酸電泳-電泳緩沖液
瓊脂糖
凝膠加樣緩沖液
核酸染料
核酸染料
PCR相關
聚合酶
擴增緩沖液
PCR Master Mix
三磷酸脫氧核糖核苷酸
核酸其他相關試劑
核酸其他相關試劑
染色液
HE染色
HE染色
微生物染色
微生物染色
植物染色
染色液-植物染色
骨組織染色
骨組織染色
結締組織染色
結締組織染色
碳水化合物染色
碳水化合物染色
金屬及鹽染色
金屬及鹽染色
脂類染色
脂類染色
神經(jīng)染色
神經(jīng)染色
色素染色
色素染色
酶類染色
酶類染色
細胞染色
染色液-細胞染色
蛋白染色
染色液-蛋白染色
核酸染色
核酸染色
其他染色液
其他染色液
常規(guī)溶液
人工模擬液
胃液
腸液
體液
汗液
唾液
血液
腦脊液
尿液
膽汁
緩沖液
PBS緩沖液
Tris-HCl緩沖液
檸檬酸鹽緩沖液
pH標準緩沖液
HEPES緩沖液
硼酸鹽緩沖液
乙酸鈉緩沖液
Tris-EDTA緩沖液
MOPS緩沖液
甘氨酸緩沖液
其他緩沖液
指示劑
酸堿指示劑
金屬指示劑
沉淀滴定指示劑
固定液
戊二醛固定液
多聚甲醛固定液
環(huán)保組織固定液
其它固定液
其他常規(guī)溶液
其他常規(guī)溶液
檢測試劑盒
氧化應激系列
氧化應激系列
ASA-GSH循環(huán)系列
ASA-GSH循環(huán)系列
土壤酶系列
土壤酶系列
氮代謝系列
氮代謝系列
碳水化合物系列
碳水化合物系列
光合作用系列
光合作用系列
細胞壁代謝系列
細胞壁代謝系列
脂肪酸系列
脂肪酸系列
苯丙烷代謝系列
苯丙烷代謝系列
脯氨酸代謝系列
脯氨酸代謝系列
醫(yī)學基礎代謝系列
醫(yī)學基礎代謝系列
呼吸與能量代謝途徑
呼吸與能量代謝途徑
三羧酸循環(huán)系列
三羧酸循環(huán)系列
糖酵解系列
糖酵解系列
糖異生途徑
糖異生途徑
磷酸戊糖途徑
磷酸戊糖途徑
其他檢測試劑盒
其他檢測試劑盒
化學類
砌塊
含氟砌塊
鹵代雜環(huán)
雜環(huán)砌塊
有機砌塊
配體
Buchwald 配體
手性配體
NHC配體及配合物
膦配體
催化劑
手性催化劑
有機催化劑
光催化劑
過渡金屬催化劑
交叉偶聯(lián)催化劑
加氫催化劑
烯烴復分解置換
Buchwald催化劑
無機催化劑
C-H活化催化劑
化學合成
手性助劑
有機金屬試劑
硼酸及其衍生物
格氏試劑
有機硅試劑
離子液體
C-C鍵形成試劑
偶聯(lián)試劑
鹵化試劑
氧化劑
保護和脫保護試劑
還原劑
香精香料
實驗室化學品
苛性堿和堿
酸
卡爾費休試劑
色譜和光譜試劑
衍生化試劑
溶劑
儀器分析試劑
金屬
鹽
分析色譜
材料科學
能源材料
燃料電池催化劑
電池材料
燃料電池膜與材料
硫族化物 (硫屬化物)
氧化物與陶瓷
高純鹽
高純金屬及合金
量子點
溶液和氣相沉積前驅體
太陽能材料
電子材料
磁性材料
無機和金屬納米材料
碳納米材料(碳納米管、石墨烯和富勒烯)
液晶
OFET和OPV材料
OLED和PLED材料
光子和光學材料
印刷電子材料
基板和預制電子器件
特種與智能聚合物
硅材料
電子化學品和蝕刻劑
自組裝和接觸印刷
生物醫(yī)學材料
生物醫(yī)用高分子
親水性高分子
疏水性高分子
聚乙二醇修飾劑 (PEGs和PEOs)
3D生物打印
聚合單體
聚合物微球和納米粒子
動物造模試劑
神經(jīng)系統(tǒng)造模
癲癇模型
精神分裂癥模型
腦水腫模型
帕金森模型
呼吸系統(tǒng)造模
呼吸系統(tǒng)造模
皮膚相關造模
皮膚相關造模
耳鼻喉頭頸外造模
耳鼻喉頭頸外造模
泌尿系統(tǒng)造模
泌尿系統(tǒng)造模
免疫系統(tǒng)造模
免疫系統(tǒng)造模
內分泌系統(tǒng)造模
內分泌系統(tǒng)造模
生殖系統(tǒng)造模
生殖系統(tǒng)造模
消化系統(tǒng)造模
消化系統(tǒng)造模
循環(huán)系統(tǒng)造模
循環(huán)系統(tǒng)造模
眼科相關造模
眼科相關造模
運動系統(tǒng)造模
運動系統(tǒng)造模
植物應用
植物培養(yǎng)&遺傳轉化
植物凝膠
MS培養(yǎng)基
組培培養(yǎng)基
植物營養(yǎng)液
遺傳轉化試劑
培養(yǎng)基組分
植物流式試劑
植物組分及細胞器提取
酵母雜交&異源互補
完全培養(yǎng)基/Rich Media
缺陷培養(yǎng)基基礎/Minial Media Base
缺陷氨基酸混合物(DO)
缺陷培養(yǎng)基(SD/SC)
酵母雜交套裝
雜交試劑盒
轉化與鑒定
核酸蛋白提取
畢赤酵母蛋白表達
釀酒酵母表達
裂殖酵母培養(yǎng)
酵母衍生實驗
酵母表面展示
植物檢測試劑盒
植物檢測試劑盒-植物染色
植物檢測試劑盒-光合作用系列
植物代謝物檢測
透析袋
即用型
再生纖維素透析袋
纖維素透析袋
普通型
普通型
透析裝置
透析裝置
生化試劑
酶和輔酶
酶
輔酶
酶底物
膠原酶
食品和乳品檢測用酶和輔酶
診斷試劑用酶和輔酶
蛋白質
植物源蛋白質
動物源蛋白質
蛋白質-重組蛋白
多肽
底物肽
激素肽與神經(jīng)肽
多肽藥物遞送
藥物肽
β淀粉樣肽與微管蛋白肽
抗微生物肽
查看更多
碳水化合物
單糖
二糖
寡糖
多糖
環(huán)糊精
纖維素
查看更多
氨基酸
20種天然氨基酸
FMOC保護氨基酸
BOC保護氨基酸
CBZ保護氨基酸
維生素
維生素
抗生素
抗生素
色素類
染料
指示劑
分離試劑
離子交換樹脂
大孔吸附樹脂
凝膠過濾填料
親和層析填料
疏水層析填料
緩沖劑
緩沖劑
動物激素
動物激素
表面活性劑
陽離子表面活性劑
陰離子表面活性劑
非離子表面活性劑
兩性離子表面活性劑
聚合物類
聚乙二醇(PEG)系列
聚乙二醇(PEG)衍生物
多聚氨基酸系列
聚乙烯吡咯烷酮(PVP)
聚丙烯酸
葡聚糖T系列
查看更多
脂肪酸系列
短鏈脂肪酸
中鏈脂肪酸
長鏈脂肪酸
反式脂肪酸
磷脂類
血制品
全血
紅細胞
血制品-血清
血漿
溶血活性實驗
其他生化試劑
其他生化試劑
抗體
抗體類
標準品
中藥標準品
黃酮及類黃酮
生物堿
萜類及其衍生物
甾體及甾體皂苷類
苯丙素類
花青素類
查看更多
化學標準品
化學標準品
對照藥材
對照藥材
標準溶液
分析滴定液
儀器校準溶液
混合標準溶液
其他標準溶液
同位素標準品
氫標記
碳標記
氮標記
氧標記
混合標記
其它
有證標準物質
溯源標準品
溯源標準品
食品檢測
農(nóng)殘標品
獸殘標品
抗氧化劑
食品檢測-防腐劑
食品檢測-著色劑
護色劑
查看更多
藥品檢測
化藥檢測
中藥及中成藥檢測
環(huán)境檢測
大氣
土質、土壤
水質
固廢
化妝品檢測
增白劑
化妝品檢測激素
化妝品檢測防腐劑
防曬劑
化妝品檢測著色劑
飼料檢測
飼料檢測-真菌毒素
飼料檢測-激素
飼料檢測-維生素
飼料檢測-脂肪酸
農(nóng)殘
飼料檢測-抗生素
小分子化合物
小分子化合物溶液
小分子化合物溶液
信號通路
代謝
G蛋白偶聯(lián)受體
神經(jīng)科學
細胞凋亡
表觀遺傳
蛋白酪氨酸激酶
查看更多
化合物庫
抑制劑庫
激酶抑制劑庫
FDA批準的藥物庫
天然產(chǎn)物庫
生物活性化合物庫
酪氨酸激酶抑制劑庫
查看更多
靶點篩選
靶點篩選
蛋白&免疫
重組蛋白
重組蛋白-重組蛋白
蛋白提取和純化
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標準品-氨基酸
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L-賴氨酸
L-賴氨酸
分析標準品,HPLC≥98%
L-Lysine
核磁下載
品牌:
源葉
產(chǎn)品編號:
B21922
一鍵復制產(chǎn)品信息
CAS號:
56-87-1
分子式:
C
6
H
1
4
N
2
O
2
分子量:
146.189
MDL:
MFCD00064433
別名:
L-2,6-二氨基已酸,L-已氨酸,L-松氨酸
×
L-賴氨酸 分析標準品,HPLC≥98%
貨號
規(guī)格
價格
上海
北京
武漢
南京
購買數(shù)量
B21922-200mg
分析標準品,HPLC≥98%
¥60.00
B21922-200mg ¥60.00 現(xiàn)貨
112
14
>10
5
5
4
-
+
大包裝詢價
加入購物車
產(chǎn)品介紹
參考文獻(145篇)
質檢證書(COA)
摩爾濃度計算器
相關產(chǎn)品
產(chǎn)品介紹
用于生化研究 ,營養(yǎng)補充劑。
熔點:
215°C
沸點:
311.5°Cat760mmHg
比旋光度:
+19.7 (H2O). +37.9 (5M HCl)
溶解性:
Soluble in H2O
敏感性:
吸濕
儲存條件:
2-8℃
注意:
部分產(chǎn)品我司僅能提供部分信息,我司不保證所提供信息的權威性,僅供客戶參考交流研究之用。
參考文獻(145篇)
145. [IF=4.6] Jiaqi Wang et al."Toxic effects of DEHP and MEHP on gut-liver axis in rats via intestinal flora and metabolomics."iScience.
144. [IF=7.7] Maolin Li et al."Elucidating the effects of hofmeister salts on the formation mechanism and biocompatibility of lysozyme-hyaluronic acid complexes."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Nov;281:136558
143. [IF=6] Jinhuan Guo et al."Co-cultivation of selected Lactiplantibacillus plantarum strains with starter cultures under osmotic stress increases folate content and enhances product quality in fermented dairy."LWT-FOOD SCIENCE AND TECHNOLOGY.2024 Nov;211:116934
142. [IF=4] Mengxian Wang et al."UHPLC-QQQ-MS/MS method for the simultaneous quantification of 18 amino acids in various meats."Frontiers in Nutrition.2024 Oct;11:
141. [IF=7.7] Kexin Tang et al."Long-term stable water-in-oil-in-water emulsion for effective protection and sustained release of lysine-calcium using chitosan and hydroxypropyl methyl cellulose."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Dec;282:137098
140. [IF=5.3] Xiaoyu Zhang et al."Elucidating the formation mechanism of gardenia blue pigment from amino acid and genipin."Arabian Journal of Chemistry.2024 Nov;:106048
139. [IF=5.3] Chen Xin et al."Enhancing Gel Network Structure and Flavor of Low-Salt Surimi via Microwave Heating-Assisted L-Lysine Treatment."Food and Bioprocess Technology.2024 Dec;:1-15
138. [IF=4.7] Bernard Ntezimana et al."Integrated Transcriptomic and Metabolomic Analyses Reveal Changes in Aroma- and Taste-Related Substances During the Withering Process of Black Tea."Foods.2024 Jan;13(23):3977
137. [IF=3.1] Chunliu Wang et al."Joint proteomic and metabolomic analysis reveals renal metabolic remodeling of chronic heart failure mice."JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS.2025 Mar;255:116641
136. [IF=8.5] Pinghua Deng et al."Pathways of 2-amino-1-methyl-6-phenylimidazo [4,5-b] pyridine (PhIP) inhibited by basic amino acids in the glucose/ creatinine/ phenylalanine model system."FOOD CHEMISTRY.2025 May;473:143014
135. [IF=2.6] Zhang Hao et al."Exploring factors related to the browning of cherry (Prunus pseudocerasus lindl) wine during fermentation and aging."JOURNAL OF FOOD SCIENCE AND TECHNOLOGY-MYSORE.2025 Jan;:1-9
134. [IF=4.8] Yu Li et al."Multi-omics approaches reveal the therapeutic mechanism of Naoxintong Capsule against ischemic stroke."JOURNAL OF ETHNOPHARMACOLOGY.2025 Feb;:119435
133. [IF=6] Jinshan Xiao et al."Lutein as an antioxidant inhibits the Maillard reaction in heated egg yolk."LWT-FOOD SCIENCE AND TECHNOLOGY.2025 Feb;:117490
132. [IF=6.7] Xingcheng Gong et al."[CuII(l-Phe)2–H]+ Complex: A Versatile Selector for Wide Enantiomeric Excess Determination and Chiral Recognition in Complicated Matrices by Post-column Infusion LC–Energy-resolved MS/MS."ANALYTICAL CHEMISTRY.2025;97(6):3458–3468
131. [IF=4.7] Lin Zhang et al."Gut Microbiota and Neurotransmitter Regulation: Functional Effects of Four Traditional Chinese Fermented Soybean (Sojae Semen Praeparatum)."Foods.2025 Jan;14(4):671
130. [IF=7] Zhaolong Liu et al."A machine learning approach fusing multisource spectral data for prediction of floral origins and taste components of Apis cerana honey."FOOD RESEARCH INTERNATIONAL.2025 Feb;:116102
129. [IF=8.5] Zhiqiang Feng et al."Preparation of an aqueous colloidal dispersion of myofibrillar proteins: A synergistic strategy integrating nonenzymatic glycation and exogenous amino acids."FOOD CHEMISTRY.2025 Feb;:143609
128. [IF=11.4] Yating Guo et al."Reshaped local microbiology metabolism by raw tea according to pile fermentation in the dark tea."Journal of Advanced Research.2025 Mar;:
127. [IF=8.5] Han Zhang et al."Dual role of exogenous xylose in regulating pyrazines and furans formation during the thermal degradation of Nα,Nε-di(1-deoxy-d-xylulos-1-yl)lysine through temperature, reaction time, and xylose concentration control."FOOD CHEMISTRY.2025
126. [IF=10.7] Bingcheng Yi et al."Light-Stimulated Smart Thermo-Responsive Constructs for Enhanced Wound Healing: A Streamlined Command Approach."Asian Journal of Pharmaceutical Sciences.2025 Apr;:101057
125. [IF=7] Xiuyun Guo et al."L-lysine enhances pork color through antioxidant activity and myoglobin conformational changes."FOOD RESEARCH INTERNATIONAL.2024 Sep;:115148
124. [IF=3.7] Zhang Lei et al."Fluorescent enhanced endogenous carbon dots derived from green tea residue for multiplex detection of heavy metal ions in food."Frontiers in Sustainable Food Systems.2024 Aug;8:
123. [IF=5.4] Kunjie Ran et al."Sustained-release of SOD from multivesicular liposomes accelerated the colonic mucosal healing of colitis mice by inhibiting oxidative stress."COLLOIDS AND SURFACES B-BIOINTERFACES.2024 Aug;:114143
122. [IF=4.6] Yue Zhao et al."Comparative evaluation of sensory and instrumental flavor profiles of four edible microalgae: Spirulina platensis, Chlorella pyrenoidosa, Chlamydomonas reinhardtii, and Haematococcus pluvialis."Algal Research-Biomass Biofuels and Bioproduc
121. [IF=4.8] Xuejiao Wang et al."Enhancing gel strength and saltiness perception of low-salt surimi gels: Synergistic effects of lysine assisted with water bath-microwave heating."Food Bioscience.2024 Oct;61:104827
120. [IF=5.3] Jingjing Yang et al."Exploration on the mechanism of “black as lacquer and sweetness as candy” based on the reactions of “crosslinking coloring and Maillard” and “oligosaccharide hydrolysis” during the processing of Radix Rehmanniae."Arabian Journal of Ch
119. [IF=5.7] Han Zhang et al."Accelerated Degradation of DiXyl-α,ε-Lys-ARP via Interaction between Extra-Added Xylose and Monosubstituted Lys-ARPs during Maillard Reaction."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2024;72(30):16930–16940
118. [IF=8.2] Limin Zhou et al."Lysosome targeting fluorescent probe for NAAA imaging and its applications in the drug development for anti-inflammatory."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES".2024 Apr;263:130307
117. [IF=7.1] Pinghua Deng et al."Effects of basic amino acids on heterocyclic amines and quality characteristics of fried beef patties at low NaCl level."MEAT SCIENCE".2024 Sep;215:109541
116. [IF=3] Bing Liu et al."A pseudo-targeted metabolomics for discovery of potential biomarkers of cardiac hypertrophy in rats."JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES".2024 Apr;:124133
115. [IF=10.7] Xuemin Wang et al."Stability enhancement of pickering emulsions based on κ-carrageenan microgel: Synergistic effect of l-lysine and potassium ions at low ionic strength."FOOD HYDROCOLLOIDS".2024 Sep;154:110117
114. [IF=8.8] Bin Zhu et al."Comparison of the physical stability, microstructure and protein-lipid co-oxidation of O/W emulsions stabilized by l-arginine/l-lysine-modified soy protein hydrolysate."FOOD CHEMISTRY".2024 Jul;447:138901
113. [IF=3.4] Ling Xin et al."Integrated UHPLC-MS untargeted metabolomics and gut microbe metabolism pathway-targeted metabolomics to reveal the prevention mechanism of Gushudan on kidney-yang-deficiency-syndrome rats."JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS"
112. [IF=4.5] Haowei Guo et al."Influence of Various Tea Utensils on Sensory and Chemical Quality of Different Teas."Plants-Basel".2024 Jan;13(5):669
111. [IF=4.5] Xue Liu et al."A supramolecular ratiometric fluorescent probe for the detection of human serum albumin."DYES AND PIGMENTS".2024 May;224:112054
110. [IF=6] Cunhui Wu et al."Amorphous iron-catecholates featuring efficient peroxidase-like activity for quick colorimetric detection of tannic acid."LWT-FOOD SCIENCE AND TECHNOLOGY".2024 Apr;197:115896
109. [IF=5.2] Mengying Wu et al."Enhancement of γ-Aminobutyric Acid and the Characteristics of Nutrition and Function in White Quinoa through Ultrasound Stress at the Pre-Germination Stage."Foods.2024 Jan;13(1):57
108. [IF=6.1] Junjie Lin et al."Preparation and Kokumi Properties of N-Acetyl-Val/Leu/Ile/Met/Phe in the Presence of Acetic Acid and Amino Acid: A Commercially Available Transglutaminase and Protease A 2SD."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2023;71(45):17235–17
107. [IF=3.5] Dengyi Liu et al."Enhancing the Antioxidant Capacity and Quality Attributes of Fermented Goat Milk through Synergistic Action of Limosilactobacillus fermentum WXZ 2-1 with Starter Culture."JOURNAL OF DAIRY SCIENCE.2023 Nov;:
106. [IF=8.8] Weiying Su et al."Multidimensional exploration of the bitterness amelioration effect of roasting on Wuyi Rock tea."FOOD CHEMISTRY.2024 Mar;437:137954
105. [IF=6.1] Shan Zhang et al."The influence of rolling pressure on the changes in non-volatile compounds and sensory quality of congou black tea: The combination of metabolomics, E-tongue, and chromatic differences analyses."Food Chemistry-X.2023 Nov;:100989
104. [IF=3.9] Ke Li et al."Use of basic amino acids to improve gel properties of PSE-like chicken meat proteins isolated via ultrasound-assisted alkaline extraction."JOURNAL OF FOOD SCIENCE.2023 Nov;:
103. [IF=4.5] Yating Guo et al."Decoding the Chemical Signatures and Sensory Profiles of Enshi Yulu: Insights from Diverse Tea Cultivars."Plants-Basel.2023 Jan;12(21):3707
102. [IF=3.6] Jiabei Xia et al."The Functional Components of By-Product Resources from the Aerial Parts of Polygonatum cyrtonema Hua."Agriculture-Basel.10.3390/agriculture13091820
101. [IF=4.3] Wenlong Yu et al."Effect of different preservation treatments on the formation of semicarbazide in Litopenaeus vannamei and the potential molecular mechanisms."JOURNAL OF FOOD COMPOSITION AND ANALYSIS.10.1016/j.jfca.2023.105664
100. [IF=5.9] Xudong Zhou et al."Systematic assessment of the silk deterioration behaviors for silk aging prediction."POLYMER DEGRADATION AND STABILITY.10.1016/j.polymdegradstab.2023.110532
99. [IF=8.1] Qiuwen Yu et al."Chemometrics-based investigation of non-volatiles/volatiles flavor of tencha (Camellia sinensis cv. Yabukita, Longjing 43 and Baiye 1)."FOOD RESEARCH INTERNATIONAL.10.1016/j.foodres.2023.113461
98. [IF=4.6] Wang Liqiang et al."L-lysine moderates thermal aggregation of coconut proteins induced by thermal treatment."Scientific Reports.2023 Aug;13(1):1-10
97. [IF=3.3] Xiaodan Wang et al."Dynamic monitoring and correlation analysis of flavor quality and bacterial community during sufu fermentation."INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY.2023 Jul;:
96. [IF=3.7] Shuai Huang et al."Production of Liquid Biofuel Precursors: Optimization and Regulation of Lipase Fermentation and Its Application in Plant Oil Hydrolysis Process."Fermentation-Basel.2023 Aug;9(8):708
95. [IF=4.4] Yuxuan Hu et al."Carbon dots-based fluorescence enhanced probe for the determination of glucose."SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY.2023 Dec;303:123149
94. [IF=5.2] Zhuanrong Wu et al."Effects of Sun Withering Degree on Black Tea Quality Revealed via Non-Targeted Metabolomics."Foods.2023 Jan;12(12):2430
93. [IF=5.2] Jianbo Chen et al."A Novel Process for One-Step Separation and Cyclodextrin Inclusion of Ginsenoside Rg5 from Ginseng Stem–Leaf Saponins (GSLS): Preparation, Characterization, and Evaluation of Storage Stability and Bioactivity."Foods.2023 Jan;12(12):2349
92. [IF=11.2] Jirong Wang et al."Gelling properties of lysine-amidated citrus pectins: The key role of pH in both amidation and gelation."CARBOHYDRATE POLYMERS.2023 Oct;317:121087
91. [IF=4.342] Wei Ran et al."Comprehensive analysis of environmental factors on the quality of tea (Camellia sinensis var. sinensis) fresh leaves."SCIENTIA HORTICULTURAE.2023 Sep;319:112177
90. [IF=5.561] Chunlu Qian et al."Changes in the Texture and Flavor of Lotus Root after Different Cooking Methods."Foods.2023 Jan;12(10):2012
89. [IF=6.443] Yuchuan Li et al."Study on taste quality formation and leaf conducting tissue changes in six types of tea during their manufacturing processes."Food Chemistry-X.2023 Jun;18:100731
88. [IF=6.556] Yunyu Zhang et al."Two-dimensional metal-organic framework catalyzed chemiluminescent reaction for alpha-glucosidase inhibitor screening."TALANTA.2023 Nov;264:124748
87. [IF=6.556] Haimin Li et al."Specific discrimination of zinc and manganese ions by label free dual emissive carbon dots by ratio-metric mode."TALANTA.2023 Aug;260:124627
86. [IF=7.129] Kangchen Li et al."Uncovering mechanisms of Baojin Chenfei formula treatment for silicosis by inhibiting inflammation and fibrosis based on serum pharmacochemistry and network analysis."ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY.2023 Jul;260:115082
85. [IF=9.231] Sha Yan et al."Chaste honey in long term-storage: Occurrence and accumulation of Maillard reaction products, and safety assessment."FOOD CHEMISTRY.2023 Oct;424:136457
84. [IF=5.895] Han Zhang et al."Controlled Selective Formation of Amadori Compounds from α/ε Mono- or Di-glycation of Lysine with Xylose."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2023;71(13):5358–5371
83. [IF=3.385] Yang Liu et al."Effects of extruded and pelleted diets with different protein levels on growth performance and nutrient retention of largemouth bass (Micropterus salmoides)."Aquaculture Reports.2023 Apr;29:101479
82. [IF=3.057] Li Jun Ren et al."Amino acids grafted-chitosan/glycerophosphate hydrogel for controlled release of berberine hydrochloride."JOURNAL OF APPLIED POLYMER SCIENCE.2023 Jan;140(11):e53632
81. [IF=5.911] Yuting Chen et al."Effects of selected Bacillus strains on the biogenic amines, bioactive ingredients and antioxidant capacity of shuidouchi."INTERNATIONAL JOURNAL OF FOOD MICROBIOLOGY.2023 Mar;388:110084
80. [IF=6.652] Sijia Zhan et al."Role of roasting in the formation of characteristic aroma of wuyi rock tea."FOOD CONTROL.2023 May;147:109614
79. [IF=7.425] Shuxian Shao et al."Production regions discrimination of Huangguanyin oolong tea by using the content of chemical components and rare earth elements."FOOD RESEARCH INTERNATIONAL.2023 Mar;165:112522
78. [IF=9.231] Li Gao et al."A sensitive and economical method for simultaneous determination of D/L- amino acids profile in foods by HPLC-UV: Application in fermented and unfermented foods discrimination."FOOD CHEMISTRY.2023 Jun;410:135382
77. [IF=6.056] Xianan Zhang et al."Effect of 1-methylcyclopropene on flat peach fruit quality based on electronic senses, LC-MS, and HS-SPME-GC-MS during shelf storage."LWT-FOOD SCIENCE AND TECHNOLOGY.2023 Jan;173:114388
76. [IF=6.056] Shengmei Gao et al."Exploration of the variations of amino acids in Massa Medicata Fermentata and their effects on gastrointestinal diseases."LWT-FOOD SCIENCE AND TECHNOLOGY.2023 Jan;173:114309
75. [IF=6.911] Yan-Zhen Wang et al."A strategy for screening and identification of new amino acid-conjugated bile acids with high coverage by liquid chromatography-mass spectrometry."ANALYTICA CHIMICA ACTA.2023 Jan;1239:340691
74. [IF=3.2] Chenyang Hao et al."Nontarget Metabolites of Rhizomes of Edible Sacred Lotus Provide New Insights into Rhizome Browning."JOURNAL OF FOOD QUALITY.2022 Oct 26;2022:3943052
73. [IF=6.14] Yongxue Li et al."Temperature- and pH-Sensitive Nitrogen and Sulfur Codoped Carbon Quantum Dots for Sequential Detection of Fe3+ and H2S."ACS Applied Nano Materials.2022;5(10):14507–14519
72. [IF=4.658] Chenxu Cai et al."Molecular Hydrogen Improves Rice Storage Quality via Alleviating Lipid Deterioration and Maintaining Nutritional Values."Plants-Basel.2022 Jan;11(19):2588
71. [IF=4.927] Jiachun Lu et al."Sensory-Guided Identification and Characterization of Kokumi-Tasting Compounds in Green Tea (Camellia sinensis L.)."MOLECULES.2022 Jan;27(17):5677
70. [IF=4.52] Xianan Zhang et al."Analysis of the free amino acid content and profile of 129 peach (Prunus persica (L.) Batsch) germplasms using LC-MS/MS without derivatization."JOURNAL OF FOOD COMPOSITION AND ANALYSIS.2022 Dec;114:104811
69. [IF=9.231] Xiaoyuan Wang et al."Removal of Alternaria mycotoxins exposed to different food components by cold plasma."FOOD CHEMISTRY.2022 Dec;397:133770
68. [IF=6.056] Qin Liu et al."Comparison of different drying techniques for shiitake mushroom (Lentinus edodes): Changes in volatile compounds, taste properties, and texture qualities."LWT-FOOD SCIENCE AND TECHNOLOGY.2022 Jul;164:113651
67. [IF=3.463] Xiaomei Dai et al."S-alk(en)ylcysteine sulfoxides biosynthesis and free amino acids profile in different parts of postharvest chive (Allium schoenoprasum L.)."SCIENTIA HORTICULTURAE. 2022 Sep;303:111191
66. [IF=4.821] Shi Sen Ding et al."Synergistic effect-mediated fluorescence switching of nitrogen-doped carbon dots for visual detection of alkaline phosphatase."MICROCHEMICAL JOURNAL. 2022 Oct;181:107651
65. [IF=6.321] Guangqu Liu et al."Multivesicular Liposomes for Glucose-Responsive Insulin Delivery."Pharmaceutics. 2022 Jan;14(1):21
64. [IF=4.411] Nan Wu et al."Quality Evaluation of Taxilli Herba from Different Hosts Based on Simultaneous Determination of Multiple Bioactive Constituents Combined with Multivariate Statistical Analysis."Molecules. 2021 Jan;26(24):7490
63. [IF=4.142] Zhang Wei et al."Ratiometric fluorescence and colorimetric dual-mode sensing platform based on carbon dots for detecting copper(II) ions and D-penicillamine."Anal Bioanal Chem. 2022 Feb;414(4):1651-1662
62. [IF=6.576] Jie Yang et al."Fermentation and Storage Characteristics of “Fuji” Apple Juice Using Lactobacillus acidophilus, Lactobacillus casei and Lactobacillus plantarum: Microbial Growth, Metabolism of Bioactives and in vitro Bioactivities."Front Nutr. 2022; 9: 83
61. [IF=4.242] Hang Yang et al."Dietary leucine requirement of juvenile largemouth bass (Micropterus salmoides) based on growth, nutrient utilization and growth-related gene analyses."Aquaculture. 2022 Jun;555:738207
60. [IF=2.419] Shanshan Gao et al."Development and validation of a sensitive and reliable targeted metabolomics method for the quantification of cardiovascular disease-related biomarkers in plasma by using UPLC-MS/MS."Rapid Communications In Mass Spectrometry. 2022 Mar
59. [IF=1.618] Wang Shengnan et al."Simultaneous Determination of Iridoid Glycosides, Phenylpropanoid Glycosides, Organic Acids, Nucleosides and Amino Acids in Scrophulariae Radix Processed by Different Processing Methods by HPLC-QTRAP-MS/MS."J Chromatogr Sci. 2021 Jun;
58. [IF=2.043] Guan Chengran et al."Variation of bitter components of the asparagus juices during lactic acid bacteria fermentation."Biosci Biotech Bioch. 2021 Oct;85(11):2300-2310
57. [IF=2.097] Ke Jing et al."Isocratic micellar liquid chromatography using mixed anionic and non-ionic surfactants as mobile phase additives for separation of 17 free amino acids."Chem Pap. 2019 Oct;73(10):2417-2426
56. [IF=3.251] Jiaran Zhang et al."A Fluorescence Method Based on N, S-Doped Carbon Dots for Detection of Ammonia in Aquaculture Water and Freshness of Fish."Sustainability-Basel. 2021 Jan;13(15):8255
55. [IF=3.361] Furong Wang et al."Effect of free amino acids and peptide hydrolysates from sunflower seed protein on the formation of pyrazines under different heating conditions."Rsc Adv. 2021 Aug;11(45):27772-27781
54. [IF=3.366] Qu Fei et al."Fluorescent Detection of 2,4-Dichlorophenoxyacetic Acid in Food Samples Based on Covalent Organic Frameworks and MnO2 Nanosheets."Food Anal Method. 2020 Oct;13(10):1842-1851
53. [IF=3.935] Biru Shi et al."Investigation on the stability in plant metabolomics with a special focus on freeze-thaw cycles: LC–MS and NMR analysis to Cassiae Semen (Cassia obtusifolia L.) seeds as a case study."J Pharmaceut Biomed. 2021 Sep;204:114243
52. [IF=4.098] Chunlin Li et al."Discrimination of white teas produced from fresh leaves with different maturity by near-infrared spectroscopy."Spectrochim Acta A. 2020 Feb;227:117697
51. [IF=4.142] Li Dan et al."Sensitive ratiometric fluorescence assay for detecting xanthine in serum based on the inner filter effect of enzyme-catalyzed oxidation products to silicon nanoparticles."Anal Bioanal Chem. 2021 Feb;413(5):1405-1415
50. [IF=4.142] Li Cong et al."A fluorescence strategy for monitoring α-glucosidase activity and screening its inhibitors from Chinese herbal medicines based on Cu nanoclusters with aggregation-induced emission."Anal Bioanal Chem. 2021 Apr;413(9):2553-2563
49. [IF=4.142] Qu Fei et al."Ratiometric detection of alkaline phosphatase based on aggregation-induced emission enhancement."Anal Bioanal Chem. 2019 Nov;411(28):7431-7440
48. [IF=4.204] Zhu Mingyue et al."A highly selective fluorescent probe for real-time imaging of UDP-glucuronosyltransferase 1A8 in living cells and tissues."Frontiers of Chemical Science and Engineering. 2021 Jun 29
47. [IF=4.35] Furong Wang et al."Formation of Pyrazines in Maillard Model Systems: Effects of Structures of Lysine-Containing Dipeptides/Tripeptides."Foods. 2021 Feb;10(2):273
46. [IF=4.379] Feng Lin et al."Chemical profile changes during pile fermentation of Qingzhuan tea affect inhibition of α-amylase and lipase."Sci Rep-Uk. 2020 Feb;10(1):1-10
45. [IF=4.411] Shengxin Yin et al."Comparison of Multiple Bioactive Constituents in the Corolla and Other Parts of Abelmoschus manihot."Molecules. 2021 Jan;26(7):1864
44. [IF=4.411] Mengxia Tan et al."Quality Evaluation of Ophiopogonis Radix from Two Different Producing Areas."Molecules. 2019 Jan;24(18):3220
43. [IF=4.556] Dandan Zhao et al."Physico-chemical properties and free amino acids profiles of six wolfberry cultivars in Zhongning."J Food Compos Anal. 2020 May;88:103460
42. [IF=4.821] Peng Wan et al."Analysis of aroma-active compounds in bighead carp head soup and their influence on umami of a model soup."Microchem J. 2021 Sep;168:106436
41. [IF=4.952] Huan Zhang et al."Label-free quantification proteomics reveals the active peptides from protein degradation during anaerobic fermentation of tea."Lwt Food Sci Technol. 2021 Oct;150:111950
40. [IF=5.537] Yurong Ma et al."Pre-cut NaCl solution treatment effectively inhibited the browning of fresh-cut potato by influencing polyphenol oxidase activity and several free amino acids contents."Postharvest Biol Tec. 2021 Aug;178:111543
39. [IF=6.785] Xiangge Tian et al."Endoplasmic Reticulum Targeting Ratiometric Fluorescent Probe for Carboxylesterase 2 Detection in Drug-Induced Acute Liver Injury."Anal Chem. 2019;91(24):15840–15845
38. [IF=6.986] Xiangge Tian et al."Visual High-Throughput Screening for Developing a Fatty Acid Amide Hydrolase Natural Inhibitor Based on an Enzyme-Activated Fluorescent Probe."Anal Chem. 2020;92(14):9493–9500
37. [IF=7.46] Pengli Gao et al."Chiral carbon dots-based nanosensors for Sn(II) detection and lysine enantiomers recognition."Sensor Actuat B-Chem. 2020 Sep;319:128265
36. [IF=11.413] Zhenhao Tian et al."A NIR fluorescent probe for Vanin-1 and its applications in imaging, kidney injury diagnosis, and the development of inhibitor."Acta Pharm Sin B. 2021 Jun;:
35. [IF=1.913] Xie Yunfei et al."Rapid Determination of Amino Acids in Beer, Red Wine, and Donkey-Hide Gelatin by Gradient Elution of HPLC: From Micellar Liquid Chromatography to High Submicellar Liquid Chromatography."J Aoac Int. 2018 Jan;101(1):249-255
34. [IF=1.913] Xie Yunfei et al."Rapid Determination of Amino Acids in Beer, Red Wine, and Donkey-Hide Gelatin by Gradient Elution of HPLC: From Micellar Liquid Chromatography to High Submicellar Liquid Chromatography."J Aoac Int. 2018 Jan;101(1):249-255
33. [IF=2.727] Tian Luo et al."Quality assessment of soy sauce using underivatized amino acids by capillary electrophoresis."International Journal Of Food Properties. 2018 Jan 08
32. [IF=2.896] Ya-yun Chen et al."Determination of free amino acids and nucleosides and nucleobases in Annona squamosa L. fruitages from different regions in China by LC-QTRAP-MS/MS."Anal Methods-Uk. 2017 Jun;9(25):3862-3869
31. [IF=3.535] Tian Luo et al."Establishing a sensitive capillary electrophoresis-UV method for direct determination of amino acids to evaluate vinegar quality."Electrophoresis. 2018 Jun;39(11):1410-1416
30. [IF=4.098] Chunlin Li et al."Rapid and non-destructive discrimination of special-grade flat green tea using Near-infrared spectroscopy."Spectrochim Acta A. 2019 Jan;206:254
29. [IF=4.411] Yujiao Hua et al."Quality Evaluation of Pseudostellariae Radix Based on Simultaneous Determination of Multiple Bioactive Components Combined with Grey Relational Analysis."Molecules. 2017 Jan;22(1):13
28. [IF=4.411] Cuihua Chen et al."Quality Evaluation of Apocyni Veneti Folium from Different Habitats and Commercial Herbs Based on Simultaneous Determination of Multiple Bioactive Constituents Combined with Multivariate Statistical Analysis."Molecules. 2018 Mar;23(3):5
27. [IF=4.952] Fengfeng Qu et al."Effect of different drying methods on the sensory quality and chemical components of black tea."Lwt Food Sci Technol. 2019 Jan;99:112
26. [IF=5.923] Cuihua Chen et al."Variations in Physiology and Multiple Bioactive Constituents under Salt Stress Provide Insight into the Quality Evaluation of Apocyni Veneti Folium."Int J Mol Sci. 2018 Oct;19(10):3042
25. [IF=6.079] Tian Luo et al."Determination of underivatized amino acids to evaluate quality of beer by capillary electrophoresis with online sweeping technique."J Food Drug Anal. 2017 Oct;25:789
24. [IF=7.46] Xiaokui Huo et al."A highly selective ratiometric fluorescent probe for real-time imaging of β-glucuronidase in living cells and zebrafish."Sensor Actuat B-Chem. 2018 Jun;262:508
23. [IF=9.229] Ming Wu et al."Detection of Sudan Dyes Based on Inner-Filter Effect with Reusable Conjugated Polymer Fibrous Membranes."Acs Appl Mater Inter. 2018;10(9):8287–8295
22. [IF=9.594] Zhongqian Song et al."Multifunctional N,S co-doped carbon quantum dots with pH- and thermo-dependent switchable fluorescent properties and highly selective detection of glutathione."Carbon. 2016 Aug;104:169
21. Zhongqian Song, Fengyu Quan, Yuanhong Xu, Mengli Liu, Liang Cui, Jingquan Liu, Multifunctional N,S co-doped carbon quantum dots with pH- and thermo-dependent switchable fluorescent properties and highly selective detection of glutathione, Carbon, Volume 10
20. Xiaokui Huo, Xiangge Tian, Yannan Li, Lei Feng, Yonglei Cui, Chao Wang, Jingnan Cui, Chengpeng Sun, Kexin Liu, Xiaochi Ma, A highly selective ratiometric fluorescent probe for real-time imaging of β-glucuronidase in living cells and zebrafish, Sensors and
19. Zhao, Zheng, et al. "Cholinium amino acids-glycerol mixtures: New class of solvents for pretreating wheat straw to facilitate enzymatic hydrolysis." Bioresource technology 245 (2017): 625-632.https://doi.org/10.1016/j.biortech.2017.08.209
18. Wu, Ming, et al. "Detection of Sudan dyes based on inner-filter effect with reusable conjugated polymer fibrous membranes." ACS applied materials & interfaces 10.9 (2018): 8287-8295.https://doi.org/10.1021/acsami.8b00164
17. Qu, Fei, et al. "Fluorescent Detection of 2, 4-Dichlorophenoxyacetic Acid in Food Samples Based on Covalent Organic Frameworks and MnO 2 Nanosheets." Food Analytical Methods 13.10 (2020): 1842-1851.https://doi.org/10.1007/s12161-020-01807-2
16. Wang, Furong, et al. "Formation of Pyrazines in Maillard Model Systems: Effects of Structures of Lysine-Containing Dipeptides/Tripeptides." Foods 10.2 (2021): 273.https://doi.org/10.3390/foods10020273
15. Wang, Furong, et al. "Formation of Pyrazines in Maillard Model Systems: Effects of Structures of Lysine-Containing Dipeptides/Tripeptides." Foods 10.2 (2021): 273.https://doi.org/10.3390/foods10020273
14. Li, Dan, et al. "Colorimetric and Fluorescent Dual-Mode Measurement of Blood Glucose by Organic Silicon Nanodots." ACS Applied Nano Materials 3.11 (2020): 11600-11607.https://doi.org/10.1021/acsanm.0c02758
13. Qu, Fengfeng, et al. "Effect of different drying methods on the sensory quality and chemical components of black tea." Lwt 99 (2019): 112-118.https://doi.org/10.1016/j.lwt.2018.09.036
12. 孔艷,邢雪,李娜,于巧紅,王萌,劉志東.注射用血栓通(凍干)與3種生物化學注射劑配伍穩(wěn)定性研究[J].藥物評價研究,2020,43(10):1988-1996
11. 王健,孫瑜,陳莉莉,韓真真,孫精通.基于~1H-NMR代謝組學技術評價何首烏炮制品中差異代謝物的研究[J].現(xiàn)代藥物與臨床,2020,35(08):1537-1543.
10. 唐何娜, 楊磊, 歐陽志遠,等. 基于體外仿生的海水珍珠礦化機制初步研究[J]. 電子顯微學報, 2017, 036(006):589-597.
9. 談夢霞, 陳佳麗, 鄒立思,等. 不同貯藏條件對麥冬藥材質量的影響[J]. 中藥材, 2018(11).
8. 甘學文,王光耀,鄧仕彬,張春暉,崔和平,劉曙光,于靜洋,成濤,張曉鳴.美拉德反應中間體對卷煙評吸品質的影響及其風味受控形成研究[J].食品與機械,2017,33(06):46-52.
7. 李婉斯, 李婷, 陸春怡,等. 基于HPLC指紋圖譜及聚類分析評價市售阿膠的質量[J]. 上海中醫(yī)藥大學學報, 2017, 031(006):91-96.
6. 王婷婷,郜玉鋼,臧埔,趙巖,何忠梅,祝洪艷,張連學.復方麥鹿芪人參制劑主要成分變化及其在肝癌H22荷瘤小鼠體內的抗腫瘤作用[J].吉林大學學報(醫(yī)學版),2017,43(04):698-704+858-859.
5. 嚴超, 侯麗娟, 齊曉茹,等. 紅棗白蘭地發(fā)酵過程中酒醅氨基酸和有機酸的變化分析[J]. 食品工業(yè)科技, 2017, 38(014):121-125.
4. 侯麗娟 嚴超 齊曉茹 王頡. 不同品種紅棗釀制棗酒的香氣差異性研究[J]. 食品工業(yè) 2017(5):208-212.
3. 談夢霞, 陳佳麗, 鄒立思,等. 麥冬與山麥冬中多元指標成分的比較分析[J]. 中國中藥雜志, 2018, 43(20).
2. 梁靜靜, 李大偉, 史瑞琴,等. 腐乳中產(chǎn)生物胺菌株的篩選鑒定及產(chǎn)生物胺能力評價[J]. 河北農(nóng)業(yè)大學學報, 2019(3).
1. 黎乃維 姜齊永 劉雪梅 等. 一種富含精氨酸 賴氨酸的牡蠣片制備工藝[J]. 食品工業(yè) 2019 v.40;No.278(11):114-118.
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