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The array contains 84 structurally defined tumor-associated glycans and lycopeptides representing key glycan motifs frequently altered in cancer, including truncated O-glycans (Tn, STn, T, and ST antigens), mucin-derived glycopeptides (MUC1 and MUC16 epitopes), sialyl-Lewis antigens associated with CA19-9, gangliosides, Globo-H, SSEA antigens, Neu5Gc-containing glycans, sTRA structures, and cancer associated complex N-glycans. These structures collectively capture the diversity of glycan epitopes implicated in tumor progression, immune recognition, and cancer diagnostics. The array is designed for high-resolution characterization of glycan-binding specificity and can be used with a wide range of biological samples, including antibodies, lectins, recombinant proteins, serum samples, cell lysates, extracellular vesicles, bacteria, and viral particles. Multiple identical subarrays are created on each slide, enabling parallel analysis of several samples in a single experiment while requiring only minimal sample volume. The platform offers a simple experimental workflow and produces reproducible, high-throughput binding data suitable for both exploratory research and translational studies. The TAG microarray can also be customized to include additional glycans or glycopeptides tailored to specific cancer types or research needs. Glycan array screening services are available upon request. - [N-Glycan Array](https://www.zbiotech.com/product/n-glycan-array/) - The N-glycan array allows researchers to explore the interactions between 114 structurally - defined N-glycans and biological samples, such as proteins, antibodies, cells, cell lysate, serum, vesicles, bacteria, or viral particles. Each array contains 8 or 16 identical subarrays, enabling the simultaneous analysis of multiple samples. The N-glycan array provides high-throughput and reliable glycan-binding information with a simple assay format that only requires a small sample volume. Results can be obtained in only a few hours, making investigating N-glycan binding easy and efficient. The N-glycan array can be customized to meet individual client needs. Assay services are available upon request. - [Sialoside Array](https://www.zbiotech.com/product/sialoside-array/) - The Sialoside Array allows researchers to explore the interactions between sialosides and various biological samples, for example, proteins, antibodies, cells, cell lysate, serum, vesicles, bacteria, or viral particles. The array features 50 structurally defined N-glycans and LacNAc glycans, each paired with Neu5Gc and Neu5Ac at the non-reducing end. Each array contains 8 or 16 identical subarrays, enabling the simultaneous analysis of multiple samples. The Sialoside Array provides high-throughput and reliable sialoside-binding information with a simple assay format that only requires a small sample volume. Results can be obtained in only a few hours, making investigating sialoside binding easy and efficient. To accommodate specific research needs, the Sialoside Array can be customized, and assay services are available upon request. Explore how the Sialoside Array advances influenza research by revealing receptor specificity, host adaptation, and viral evolution. - [Microarray Assay Buffers](https://www.zbiotech.com/product/glycan-microarray-assay-buffers/) - Specially formulated assay buffers for superior microarray performance. Glycan Array Blocking Buffer (GABB) Optimized blocking buffer (1X) for maximizing signal intensity while minimizing background noise; ideal for glycan microarrays fabricated on slides. Glycan Array Assay Buffer (GAAB) Optimized glycan array assay buffer (1X) for maintaining sample activity while obtaining high signals; ideal for microarrays fabricated on slides coated with NHS-esters or hydrazide. Lectin Array Blocking Buffer (LABB) Optimized blocking buffer (1X) for maximizing signal intensity while minimizing background noise; ideal for lectin microarrays fabricated on slides. Lectin Array Assay Buffer (LAAB) Optimized blocking buffer for minimizing background noise from glycoprotein contamination; it is carbohydrate-free and glycoprotein-free; ideal for lectin microarrays. - [O-Glycan Array](https://www.zbiotech.com/product/o-glycan-array/) - O-glycan microarray technology is developed to help researchers explore the interactions between O-glycans and biological samples such as proteins, antibodies, cells, cell lysate, serum, vesicles, bacteria, or viral particles. The O-glycan array features 94 distinct O-glycan structures. Each array contains 8 or 16 identical subarrays, enabling the simultaneous analysis of multiple samples. The O-Glycan array provides high-throughput and reliable glycan-binding information with a simple assay format that only requires a small sample volume. The O-glycan array can be customized to meet individual client needs. Assay services are available upon request. - [Glycosaminoglycan Array](https://www.zbiotech.com/product/glycosaminoglycan-array/) - Glycosaminoglycans (GAGs) are a class of long, linear, and structurally different polysaccharides defined by specific monosaccharides, sulfation modifications, and chemical linkages. The glycosaminoglycan array features 47 distinct GAG structures varying in length, degree of sulfation, and disaccharide sequence. It allows researchers to define GAG-binding specificities for various biological samples, such as proteins, antibodies, cells, cell lysate, serum, vesicles, bacteria, or viral particles. Each array contains 8 or 16 identical subarrays, enabling the simultaneous analysis of multiple samples. The glycosaminoglycan array provides high-throughput and reliable glycan-binding information with a simple assay format that only requires a small sample volume. It can be customized to meet individual client needs. Assay services are available upon request. - [Recombinant Human Siglec-8 (rhSiglec-8)](https://www.zbiotech.com/product/recombinant-human-siglec-8-rhsiglec-8/) - rhSiglec-8 is a recombinant human sialic acid-binding lectin expressed in HEK293 cells to ensure proper protein folding. Purity: >95% (by SDS-PAGE) Source: Expressed in HEK293 cells; extracellular domain (ECD) of human Siglec-8 (UniProt ID: Q9NYZ4, AA 17-363) Tag: N-terminal 6×His tag or N-terminal 6×His tag with human Fc tag Available Formats: His-tagged (monomeric) or His + human Fc-tagged (dimeric)* *His-tagged format remains monomeric; Fc-tagged format forms stable dimers. Binding Activity: Validated using our Sulfated Glycan Array (Product Code: 10620) Predicted Molecular Mass: ~46 kDa (His-tagged); ~76 kDa (His + Fc-tagged) Structure: Monomer (His-tagged); dimer (His + Fc-tagged) Formulation: Lyophilized from filtered PBS solution Storage: Store at –20 °C; avoid repeated freeze–thaw cycles - [Recombinant Calsepa (rCalsepa)](https://www.zbiotech.com/product/recombinant-calsepa-rcalsepa/) - rCalsepa is a recombinant glycan-binding lectin derived from Calystegia sepium, expressed in E. coli for high purity and consistency. Purity: >95% (by SDS-PAGE) Source: Expressed in E. coli; full-length Calsepa (GenBank: U56820.1) Tag: C-terminal 6X His tag Available Formats: His-tagged, biotinylated*, or FITC-labeled* *Biotin and FITC conjugations are performed via primary amines Binding Activity: Validated using our N-glycan Array (Product Code: 10602) and Catch-All Array (Product Code: 10616) Predicted Molecular Mass: ~18 kDa (prior to labeling) Formulation: Lyophilized from a 0.2 μm-filtered PBS solution or provided in PBS buffer Storage: Store at –20 °C; protect FITC-labeled format from light; avoid repeated freeze-thaw cycles - [SARS-CoV-2 RBD Peptide and Glycopeptide Array](https://www.zbiotech.com/product/sars-cov-2-rbd-peptide-and-glycopeptide-array/) - The SARS-CoV-2 receptor-binding domain (RBD) peptide and glycopeptide array enables researchers to identify, profile, and compare specific IgG, IgA, and IgM antibody responses, as well as detect and validate protein interactions with diverse RBD peptides and glycopeptides in a customizable format. The standard array includes 39 peptides or glycopeptides. Researchers may also select from a panel of 83 wild-type and mutant RBD peptides and glycopeptides (15 amino acids in length), representing sequences from the Alpha, Beta, Gamma, Delta, Omicron, and other SARS-CoV-2 variants. Selected peptides and glycopeptides are immobilized on a solid microarray surface, allowing high-throughput binding analysis. For more details regarding the full panel of 89 available peptides and glycopeptides, please contact us. - [Lectin Array](https://www.zbiotech.com/product/lectin-array/) - ZBiotech has developed a robust microarray platform that allows researchers to simultaneously profile glycosylation by multiple lectins. The lectin array utilizes a panel of 40 plant-based lectins for high-throughput glycosylation analysis. Each lectin has been validated by glycan microarrays to ensure binding specificity. The proprietary coating substrate of this array outperforms other substrates with exceptional sensitivity without compromising specificity. Each lectin array contains 8 or 16 identical subarrays, enabling the analysis of multiple samples simultaneously and facilitating rapid results in a simple and easy-to-use format. Varieties of biological samples can be analyzed by the array. For example, proteins, antibodies, cells, cell lysate, serum, vesicles, bacteria, and viral particles. The Lectin array can be customized to meet individual client needs. Assay services are available upon request. - [Blood Group Antigen Array](https://www.zbiotech.com/product/blood-group-antigen-array/) - The BGA glycan array is a high-throughput microarray platform that allows researchers to screen the binding interactions of multiple BGA glycans simultaneously. The BGA glycan array includes 21 BGH antigens. It allows researchers to evaluate the reactivity of antibodies and proteins to specific BGA glycans. It can be applied to determine blood type, evaluate donor compatibility, and investigate the correlations of BGAs in disease conditions. The BGA glycan array provides high-throughput and reliable glycan-binding information with a simple assay format that only requires a small sample volume. Results can be obtained in only a few hours, making investigating BGA glycan binding easy and efficient. The BGA glycan array can be customized to meet individual client needs. Assay services are available upon request. - [Multivalent Microarray Slides](https://www.zbiotech.com/product/multivalent-microarray-slides/) - The Clear Choice for Complex Analysis. Multivalent Surface Coating (MSC) technology is the unique technology behind our microarray slide products. MSC technology overcomes the sensitivity issues of conventional microarray slides and delivers superior performance for analysis of molecular interactions. It enables 3-dimensional molecular presentation on a solid microarray surface without compromising binding specificities. In addition, the multivalency and functional groups on the microarray slides are customable based on clients’ requests. - [Alpha 2,3/2,6 Sialylation Profiling Kit](https://www.zbiotech.com/product/alpha-2-3-and-2-6-sialylation-profiling-kit/) - The Alpha 2,3/2,6 Sialylation Profiling Kit enables researchers to analyze specific alpha 2,3 and alpha 2,6 sialic acids on live mammalian cells using flow cytometry. This specialized kit includes six validated lectins for precise detection and differentiation of these sialic acids. These lectins include alpha 2,3 sialic acid-preferred or specific lectins such as MALII, RPL-Sia1, and RPL-Sia2, and alpha 2,6 sialic acid-preferred lectin such as SNA, along with two lectins that recognize non-sialylated glycans: ECL, which recognizes terminal beta 1,4-Gal, and PNA, which recognizes T antigen. The kit provides a complete set of reagents necessary for the assay. Additionally, we offer an assay service to perform the analysis, tailored to meet your specific experimental needs. - [Heparan Sulfate Glycan Array](https://www.zbiotech.com/product/heparan-sulfate-glycan-array/) - The heparan sulfate (HS) glycan array allows researchers to explore binding interactions with 24 structurally – defined heparin and heparan sulfate structures varying in length and sulfation. This array can be applied to define binding specificities of various biological samples, such as proteins, antibodies, cells, vehicles, and viral particles. Each array contains 8 or 16 identical subarrays, enabling the simultaneous analysis of multiple samples. The heparan sulfate glycan array provides high-throughput and reliable glycan-binding information with a simple assay format that only requires a small sample volume. Results can be obtained in only a few hours, making investigating heparin/heparan sulfate binding easy and efficient. The heparan sulfate glycan array can be customized to meet individual client needs. Assay services are available upon request. - [Poly – LacNAc Glycan Array](https://www.zbiotech.com/product/poly-lacnac-glycan-array/) - The robust poly-LacNAc microarray platform helps researchers expedite their studies on the interactions between poly-LacNAc structures and diverse biological samples. The poly-LacNAc array comprises 77 unique structures, incorporating both linear and branched poly-LacNAc structures. These closely related isoforms, characterized by well-defined repeat units, offer a comprehensive set of poly-LacNAc structures for exploring mammalian and microbial poly-LacNAc-binding proteins. The array system boasts 8 or 16 identical subarrays, enabling simultaneous analysis of multiple samples. With an uncomplicated assay format that necessitates only a small sample volume, the platform yields reliable glycan-binding information at high throughput. This cutting-edge tool holds the potential to augment our understanding of LacNAc structures and their implications across various biological contexts. To cater to individual client requirements, the platform can be customized, and assay services are available upon request. - [CatchAll Glycan Array](https://www.zbiotech.com/product/catchall-glycan-array/) - The properties and functions of glycans are highly dependent on the monosaccharide units, their combination, bonding position, and the type of branching. The CatchAll glycan array includes 166 glycans that represent a diverse collection of carbohydrate structures. These structures range from mammalian oligosaccharides, N-glycans, O-glycans, glycosphingolipid glycans, blood group antigen glycans, glycosaminoglycans, sialylated glycans to human milk oligosaccharides (HMOs). The CatchAll glycan array allows researchers to explore the interactions between 166 structurally – defined glycans and biological samples, such as proteins, antibodies, cells, cell lysate, serum, vesicles, bacteria, or viral particles. Each array contains 8 identical subarrays, enabling the simultaneous analysis of multiple samples. The CatchAll glycan array provides high-throughput and reliable glycan-binding information with a simple assay format that only requires a small sample volume. Results can be obtained in only a few hours, making investigating glycan binding easy and efficient. The CatchAll array can be customized to meet individual client needs. Assay services are available upon request. - [Bacterial Glycan Array](https://www.zbiotech.com/product/bacterial-glycan-array/) - Bacterial glycan microarray allows researchers to explore the interactions between bacterial O-antigens and other biological samples. This array features 26 O-antigens (LPS) purified from multiple bacterial strains. Each array slide contains 8 or 16 identical subarrays, enabling the simultaneous analysis of various samples. It can be used to define LPS-binding specificities of different biological samples, for example, proteins, antibodies, cells, vehicles, viral particles, and sera. The bacterial glycan array provides high-throughput and reliable glycan-binding information with a simple assay format that only requires a small sample volume. Results can be obtained in only a few hours, making investigating bacterial LPS binding easy and efficient. The bacterial glycan array can be customized to meet individual client needs. Assay services are available upon request. - [Pan-Gal and GalNAc Detection Kit](https://www.zbiotech.com/product/pan-gal-and-galnac-detection-kit/) - The Pan-Gal and GalNAc Detection Kit offers a precise and innovative solution for detecting terminal Galactose (Gal) and N-Acetylgalactosamine (GalNAc) residues on glycans. The kit leverages Galactose oxidase to specifically oxidize terminal Gal and GalNAc, creating aldehyde groups that are uniquely reactive. These aldehydes are then labeled through aniline-catalyzed oxime ligation with biotin tags. The biotinylated glycans can be detected using fluorescently labeled streptavidin, enabling compatibility with flow cytometry analysis. Compared to traditional lectin-based approaches, which may have limited coverage or specificity, this method ensures a broader and more accurate detection of general terminal Gal and GalNAc residues across diverse glycoconjugates. The kit includes all essential reagents for performing up to 20 tests, along with a step-by-step protocol to ensure ease of use and reproducibility. For added flexibility, we also provide related assay and analysis services tailored to your experimental requirements. - [Pan-Sialylation Detection Kit](https://www.zbiotech.com/product/pan-sialylation-detection-kit/) - The Pan-Sialylation Detection Kit enables researchers to analyze the sialylation (presence of sialic acids) of mammalian live cells by flow cytometry. This innovative method uses mild periodate oxidation to generate an aldehyde on sialic acids, followed by aniline-catalyzed oxime ligation with biotin tags. The ligated biotin is then detected by fluorescently labeled streptavidin for flow cytometry analysis. Unlike lectin-based methods, which typically only detect alpha 2,3/2,6 sialic acids on specific glycans, this kit detects pan-sialic acids on a broader range of glycans. The assay kit includes all necessary reagents for up to 30 tests, along with a detailed protocol to guide researchers step-by-step to achieve optimal results. In addition to the assay kit, we offer related services to perform the analysis, tailored to meet your specific experimental needs. - [Sulfated Glycan Array](https://www.zbiotech.com/product/sulfated-glycan-array/) - The Sulfated Glycan Array provides researchers with a powerful tool to study the interactions between sulfated glycans and a wide range of biological samples, such as proteins, antibodies, cell lysates, serum, vesicles, bacteria, or viral particles. This innovative array features 46 structurally-defined glycans, including paired sulfated glycans and their non-sulfated counterparts. The glycan repertoire includes diverse types such as O-glycans, O-mannose glycans, and various small glycan motifs, offering a comprehensive platform for sulfated glycan-binding studies. Each array is equipped with 8 or 16 identical subarrays, enabling the simultaneous analysis of multiple samples. Results can be generated within hours, facilitating quick and efficient exploration of sulfated glycan interactions. Assay services are available upon request to support your experimental goals. - [MUC1 Glycopeptide Array 2](https://www.zbiotech.com/product/muc1-glycopeptide-array-2/) - The MUC1 Glycopeptide Array 2 enables researchers to screen a comprehensive MUC1 glycopeptide library. This array features 124 MUC1 glycopeptides and one unglycosylated control peptide, each 23 amino acids in length and modified with 3-ST, 6-ST, Core 2, and/or diST. It facilitates the identification, profiling, and comparison of specific antibody responses, as well as the detection and validation of protein interactions with various MUC1 glycoforms. The array can be customized to meet the specific needs of individual clients. Assay services and custom synthesis of various MUC1 glycopeptides are available upon request. Explore the MUC1 Glycopeptide Array 1, which includes additional Tn, STn, and/or T. - [MUC1 Glycopeptide Array 1](https://www.zbiotech.com/product/muc1-glycopeptide-array-1/) - The MUC1 glycopeptide array 1 enables researchers to screen a MUC1 glycopeptide library. This upgraded version features 93 MUC1 glycopeptides and one unglycosylated control peptide, each 23-mer in length and modified with Tn (GalNAc-Ser or -Thr), STn (Neu5Ac-6-GalNAc-Ser or -Thr), and/or T (Gal-3-GalNAc-Ser or -Thr). The array facilitates the identification, profiling, and comparison of specific antibody responses, as well as the detection and validation of protein interactions with various MUC1 glycoforms. The MUC1 glycopeptide array can be customized to meet the specific needs of individual clients. Assay services and custom synthesis of various MUC1 glycopeptides are available upon request. Explore the MUC1 Glycopeptide Array 2, which includes additional ST, Core 2, and diST glycopeptides. - [Human Milk Oligosaccharide Array](https://www.zbiotech.com/product/human-milk-oligosaccharide-array/) - The human milk oligosaccharide (HMO) glycan array allows researchers to explore the interactions between HMO and various biological samples, for example, proteins, antibodies, cells, cell lysate, serum, vesicles, bacteria, or viral particles. The HMO glycan array features 46 structurally - defined oligosaccharides prevalent in human breast milk. Each array slide contains 16 identical subarrays, enabling the simultaneous analysis of multiple samples. Results can be obtained in only a few hours, making investigating HMO binding easy and efficient. The HMO glycan array provides high-throughput and reliable HMO-binding information. It can be customized to meet individual client needs. Assay services are available upon request. - [Oligomannose Glycan Array](https://www.zbiotech.com/product/oligomannose-glycan-array/) - Oligomannose glycan array technology was developed to allow researchers to explore the interactions between mannose-type glycans and various biological samples. It features 46 distinct oligomannose glycan structures, including linear, branched, high-mannose, and phosphorylated oligomannose glycans. These closely related isoforms with defined linkages offer a comprehensive group of glycans for studying mammalian and microbial mannose-binding proteins in details. This array system can be employed to analyze various biological samples (e.g. proteins, antibodies, cells, cell lysate, serum, vesicles, bacteria, or viral particles). The array system includes 8 or 16 identical subarrays, which enable simultaneous analysis of multiple samples. The assay format is simple, requires only a small sample volume, and provides reliable glycan-binding information with high throughput. The oligomannose glycan array can be customized to meet individual client needs, and assay services are available upon request. - [GlycoAntibiotic Array](https://www.zbiotech.com/product/glycoantibiotic-array/) - The GlycoAntibiotic array allows researchers to explore the interactions between glycopeptide antibiotics and biological samples such as proteins, antibodies, cells, cell lysate, serum, vesicles, bacteria, or viral particles. The Multivalent Surface Coating (MSC) technology allows efficient immobilization of carbohydrate-based antibiotic molecules on a solid microarray surface for high-throughput binding analysis. This array features 23 glycopeptide antibiotics. Each array slide contains 8 or 16 identical subarrays, enabling the simultaneous analysis of various samples. The glycopeptide antibiotic array can be customized to meet individual client needs. Assay services are available upon request. - [Glycosphingolipid Glycan Array](https://www.zbiotech.com/product/glycosphingolipid-glycan-array/) - Glycosphingolipid (GSL) glycan microarray technology is developed to allow researchers to explore the interactions between GSL glycans and biological samples such as proteins, antibodies, cells, cell lysate, serum, vesicles, bacteria, or viral particles. The GSL glycan array features 58 distinct GSL glycan structures. Each array contains 8 or 16 identical subarrays, enabling the simultaneous analysis of multiple samples. The GSL glycan array provides high-throughput and reliable glycan-binding information with a simple assay format that only requires a small sample volume. It can be customized to meet individual client needs. Assay services are available upon request. ## Personnel - [John Hugeman](https://www.zbiotech.com/personnel/john-hugeman/) - [Paul Newman](https://www.zbiotech.com/personnel/paul-newman/) - [Max Maxwell](https://www.zbiotech.com/personnel/max-maxwell/) - [Michael Cannell](https://www.zbiotech.com/personnel/michael-cannell/) - [Alex Johnson](https://www.zbiotech.com/personnel/gregy-smith-2/) - [Peter Hochard](https://www.zbiotech.com/personnel/peter-hochard/) - [Alan Smith](https://www.zbiotech.com/personnel/alan-smith/) - [Gregy Smith](https://www.zbiotech.com/personnel/gregy-smith/) - [Paul Walker](https://www.zbiotech.com/personnel/paul-walker/) - [Steve Cook](https://www.zbiotech.com/personnel/steve-cook/) - [Eddy Hochard](https://www.zbiotech.com/personnel/eddy-hochard/) ## Portfolio - [Unlocking the Target Behind NEO-201](https://www.zbiotech.com/portfolio/unlocking-the-target-behind-neo-201/) - [Glycan Array Technology Powers Breakthrough in Pan-Cancer CAR-T Therapy](https://www.zbiotech.com/portfolio/glycan-array-technology-powers-breakthrough-in-pan-cancer-car-t-therapy/) - [Cancer Biomarker Discovery](https://www.zbiotech.com/portfolio/cancer-biomarker-discovery/) - ZBiotech’s Neu5Ac and Neu5Gc N-glycan microarray helps researchers identify a carbohydrate-based biomarker for cancer detection. - [Unmasking Sialoglycan Specificity: How CatchAll Glycan Array Empowered a Breakthrough in Glycan Probe Design](https://www.zbiotech.com/portfolio/unmasking-sialoglycan-specificity-how-catchall-glycan-array-empowered-a-breakthrough-in-glycan-probe-design/) - [Unraveling H5N1 Host Adaptation: Glycan Binding Specificity and the Power of Glycan Arrays](https://www.zbiotech.com/portfolio/understand-changes-in-avian-influenza-receptor-targets/) - [Test drug delivery mechanisms to blood vessel endothelial cells](https://www.zbiotech.com/portfolio/test-drug-delivery-mechanisms-to-blood-vessel-endothelial-cells/) - [Analyzing Glycan Changes on Endothelial Cells During Viral Infection](https://www.zbiotech.com/portfolio/analyzing-glycan-changes-on-endothelial-cells-during-viral-infection/) - [Unveiling Bacterial Predator-Prey Interactions](https://www.zbiotech.com/portfolio/unveiling-bacterial-predator-prey-interactions/) - Our O-antigen microarray enabled a precise and detailed examination of the interactions between various MAT proteins from B. Bacteriovorus and a diverse array of glycan structures representative of potential prey. - [Defining the Binding Specificity of a Novel Lectin](https://www.zbiotech.com/portfolio/defining-the-binding-specificity-of-a-novel-lectin/) - [Decoding Protein Glycosylation: Insights from Patatin](https://www.zbiotech.com/portfolio/decoding-protein-glycosylation-insights-from-patatin/) - [Study Antibody and Antigen Interaction](https://www.zbiotech.com/portfolio/study-antibody-and-antigen-interaction/) - [Decipher host sugar substrates of influenza](https://www.zbiotech.com/portfolio/decipher-host-sugar-substrates-of-influenza/) - ZBiotech's N-glycan microarray helps scientists decipher receptor binding profiles of influenza viruses. - [Decoding human Siglec-7 glycan ligands](https://www.zbiotech.com/portfolio/decoding-human-siglec-7-glycan-ligands/) - Z Biotech's Glycosphingolipid Glycan Array expedites proof-of-concept studies for genetically encoded chemical crosslinkers of carbohydrates. - [Deciphering Glycan Ligands for S1 Protein of SADS-CoV](https://www.zbiotech.com/portfolio/deciphering-glycan-ligands-for-s1-protein-of-sads-cov/) - [Enhancing Influenza Vaccine Development](https://www.zbiotech.com/portfolio/enhancing-influenza-vaccine-development/) - Enhancing influenza vaccine development with glycan microarray technology: a case study using MAIVeSS. - [Unveiling Novel Protein-Glycan Interactions](https://www.zbiotech.com/portfolio/unveiling-novel-protein-glycan-interactions/) - ZBiotech's Glycosaminoglycan Array and Heparan Sulfate Glycan Array facilitated the groundbreaking discovery of novel glycan ligands for human VSIG4. - [Defining the substrates of H3N8 AVI mutants](https://www.zbiotech.com/portfolio/defining-the-substrates-of-h3n8-avi-mutants/) - Z Biotech’s Neu5Gc & Neu5Ac N-glycan microarray helps scientists delineate the varying glycan receptor binding specificities of diverse H3N8 avian influenza virus mutants. - [Cancer Glycosylation Identification](https://www.zbiotech.com/portfolio/cancer-glycosylation-identification/) - ZBiotech’s lectin array system enables researchers to identify distinct glycosylation patterns associated with GALNT7 overexpression in prostate cancer. - [Specify host sugar substrates of HCMV](https://www.zbiotech.com/portfolio/specify-host-sugar-substrates-of-hcmv/) - ZBiotech's glycosaminoglycan microarray helps researchers specify host sugar substrates for cytomegalovirus entry. - [Identify sugar substrates of CDT2](https://www.zbiotech.com/portfolio/identify-sugar-substrates-of-cdt2/) - ZBiotech's 100 glycan microarray helps researchers identify the carbohydrate substrates of transferase toxin 2 of C. difficile. - [Identify sugar substrates of BMP4](https://www.zbiotech.com/portfolio/identify-sugar-substrates-of-bmp4/) - ZBiotech's heparan sulfate glycan array helps researchers identify the sugar-binding sites of BMP4. - [Develop IgG glycoform-specific nanobodies](https://www.zbiotech.com/portfolio/develop-igg-glycoform-specific-nanobodies/) - [Define host sugar substrates of SARS-CoV-2](https://www.zbiotech.com/portfolio/define-host-sugar-substrates-of-sars-cov-2/) - Zbiotech's heparan sulfate glycan array helps researchers identify the sugar substrates of SARS-CoV-2. - [Define binding profile of HIV bnAbs](https://www.zbiotech.com/portfolio/define-binding-profile-of-hiv-bnabs/) - ZBiotech’s N-glycan microarray helps scientists determine glycan binding profiles of HIV-1 broadly neutralizing antibodies. ## MailPoet Page - [MailPoet Page](https://www.zbiotech.com/?mailpoet_page=captcha) - [mailpoet_page] - [MailPoet Page](https://www.zbiotech.com/?mailpoet_page=subscriptions) - [mailpoet_page] ## Product categories - [Products](https://www.zbiotech.com/product-category/products/) ## Personnel Category - [Advisor](https://www.zbiotech.com/personnel_category/advisor/) - [Team](https://www.zbiotech.com/personnel_category/team/) ## Portfolio Category - [Cancer Biology](https://www.zbiotech.com/portfolio_category/cancer-biology/) - [Microbiology](https://www.zbiotech.com/portfolio_category/microbiology/) - [Cell Biology](https://www.zbiotech.com/portfolio_category/cell-biology/) - [Immunology](https://www.zbiotech.com/portfolio_category/immunology/) - [Biochemistry](https://www.zbiotech.com/portfolio_category/biochemistry/) - [THERAPY & DIAGNOSTICS](https://www.zbiotech.com/portfolio_category/therapy-diagnostics/)