序号 |
论文题目 |
期刊名称 |
期刊号 |
1 |
Anti-fatigue activity of hemp leaves water extract and the related biochemical changes in mice |
Food and Chemical Toxicology |
150(2021):112054 |
2 |
Wound-healing activity of glycoproteins from white jade snail (Achatina fulica) on experimentally burned mice |
International Journal of Biological Macromolecules |
(2021): 313-321 |
3 |
Genipin cross-linked blue Lys-FA nanoparticles for targeted visible glioma cell staining and drug delivery |
Journal of drug delivery science and technology |
2021(61):102161
|
4 |
Protein 4.1R negatively regulates P815 cells proliferation by inhibiting C-Kit-mediated signal transduction |
Exp Cell Res. |
2021;398(2):112403 |
5 |
Epitope Profiling Reveals the Critical Antigenic Determinants in SARS-CoV-2 RBD-Based Antigen |
Frontiers in Immunology |
2021,12:707977 |
6 |
Development of a label free electrochemical sensor based on a sensitive monoclonal antibody for the detection of tiamulin |
Food Chemistry |
2021, 366: 130573 |
7 |
Identification of a novel bluetongue virus 1 specific B cell epitope using monoclonal antibodies against the VP2 protein |
International Journal of Biological Macromolecules |
2021, 183: 1393-1401 |
8 |
Development and characterization of monoclonal antibodies against the N-terminal domain of African swine fever virus structural protein, p54 |
International Journal of Biological Macromolecules |
2021, 180: 203-211 |
9 |
Identification of the mimotopes within the major capsid protein L1 of human papillomavirus types 18 and 45, using neutralizing monoclonal antibodies |
International Journal of Biological Macromolecules |
2021, 174: 587-595 |
10 |
Reasonable permutation of M2e enhances the effect of universal influenza nanovaccine |
International Journal of Biological Macromolecules |
2021, 173: 244-250 |
11 |
Development of a monoclonal antibody against PRRSV glycoprotein 3 using an immuodominant peptide as immunogen |
International Journal of Biological Macromolecules |
2021, 187: 683-689 |
12 |
A novel electrochemical immunosensor for the sensitive detection of tiamulin based on staphylococcal protein A and silver nanoparticle-graphene oxide nanocomposites |
Bioelectrochemistry |
2021, 141: 107877 |
13 |
Detection of ochratoxin A by quantum dots–based fluorescent immune-chromatographic assay |
Anal Bioanal Chem |
2021, 413:183–192 |
14 |
Novel Application of Nanofluidic Chip Digital PCR for Detection of African Swine Fever Virus |
Frontiers in Veterinary Science |
2021, 7: e621840 |
15 |
Multiple fluorescence immunoassay for the simultaneous detection of Zearalenone and Ochratoxin A |
Anal Biochem |
2021, 628: 114288 |
16 |
Development of a fluorescent immunochromatographic assay based on quantum dots for the detection of fleroxacin |
RSC Advances |
2021, 11(36): 22005-22013 |
17 |
Identification of potential SLA-I-restricted CTL epitopes within the M protein of porcine reproductive and respiratory syndrome virus |
Veterinary Microbiology |
2021, 259(11):109131 |
18 |
Establishment of an immunological detection method of fleroxacin by Fluorescence-linked immunosorbent assay |
Food Additives and Contaminants Part A |
2021, 38: 594-601 |
19 |
Quantum dot-labelled antibody based on fluorescence immunoassays for the determination of arsanilic acid in edible pork and liver |
Food Additives and Contaminants Part A |
2021, 38: 820-829 |
20 |
Induction of anti-Zearalenone immune response with mimotopes identified from a phage display peptide library |
Toxicon |
2021, 199: 1-6 |
21 |
Soluble expression and purification of Bluetongue Virus Type 1 (BTV1) structure protein VP2 in Escherichia coli and its immunogenicity in mice |
PeerJ |
2021, 9: e10543 |
22 |
Quantum dots‐based fluorescence immunoassay for detection of tiamulin in pork |
Journal of Food Safety |
2021, e12930 |
23 |
Identification of a mimotope of an infectious bronchitis virus S1 protein |
J Vet Sci |
2021,22(4):e49 |
24 |
Structural comparison of CD163 SRCR5 from different species sheds some light on its involvement in porcine reproductive and respiratory syndrome-2 infection in vitro |
Veterinary research |
2021, 52(1):97 |