01
Protein detection | 1–2 days
A one-stop experimental framework covering sample lysis, protein quantification, SDS-PAGE, membrane transfer, antibody incubation, signal acquisition, and data analysis.Experimental ObjectiveTo detect the expression level, molecular weight, and relative changes of specific proteins in complex...
02
Gene expression | about 1 day
A complete experimental framework covering sample preservation, RNA extraction, genomic DNA removal, quality assessment, reverse transcription, real-time quantitative PCR, and data analysis.Experimental ObjectiveTo quantify the relative or absolute abundance of target RNA in samples...
03
Cell culture | ongoing
A one-stop experimental framework covering culture system selection, cell resuscitation, inoculation, media changes, passaging, counting, cryopreservation, contamination monitoring, and quality recording.Experimental ObjectiveTo maintain the viability, proliferative capacity, and expected phenotype of mammalian cells under...
04
Cell imaging | 1–2 days
A complete research workflow from sample fixation, permeabilization, and blocking, to antibody fluorescent staining, microscopic imaging, and quantitative analysis, suitable for single-label, multi-label, and co-localization experiments.Experimental ObjectivesTo localize target proteins in cells or tissues...
05
Tissue analysis | 1–2 days
A complete protocol covering FFPE or frozen tissue section processing, antigen retrieval, antibody staining, counterstaining, mounting, scanning, and quantitative pathological analysis for research.Experimental ObjectiveTo detect the expression location, staining intensity, and distribution of positive...
06
Single-cell analysis | 4–8 hours
Multiparameter flow cytometry solutions ranging from Panel design, sample preparation, and surface or intracellular staining, to compensation, acquisition, gating, and statistical analysis.Experimental ObjectivesAnalysis of cell phenotype, protein expression, activity, apoptosis, cell cycle, and rare...
07
Protein quantification | 3–6 hours
Covers the complete ELISA workflow, including sample coverage and range assessment, plate layout design, standard curve, sample addition and incubation, washing and color development, plate reading, fitting, and results review.Experimental ObjectivesQualitative or quantitative detection...
08
Protein preparation | days to weeks
A one-stop protein preparation solution from host and vector selection, small-scale screening, and culture amplification, to affinity capture, chromatography polishing, buffer exchange and concentration, and quality control.Experimental ObjectiveTo obtain recombinant proteins that meet the...
09
DNA purification | 45 min–4 hours
High-quality DNA that meets the requirements for PCR, cloning, sequencing, and quantitative analysis can be obtained from cells, tissues, blood, microorganisms, or reaction systems.Experimental ObjectiveTo obtain high-quality DNA from cells, tissues, blood, microorganisms, or...
10
RNA purification | 1–3 hours
Obtain high-quality RNA suitable for reverse transcription, RT-qPCR, RNA-seq, and hybridization analysis from cells, tissues, and biological samples.Experiment ObjectiveTo obtain high-quality RNA suitable for reverse transcription, RT-qPCR, RNA-seq, and hybridization analysis from cells, tissues,...
11
Molecular cloning | 2–5 days
From target sequence amplification, vector preparation, ligation or assembly, transformation, screening, to sequencing confirmation, obtain traceable recombinant clones.Experimental ObjectiveTo obtain traceable recombinant clones, from target sequence amplification, vector preparation, ligation or assembly, transformation, screening,...
12
Sequencing omics | 1–3 days
Convert DNA or RNA samples into sequencable libraries with correct fragment distribution, adapters, indexes, and quantitative results.Experimental ObjectiveTo convert DNA or RNA samples into sequencable libraries with correct fragment distribution, adapters, indexes, and quantitative...
13
Gene editing | 2–8 weeks
Design and implement gene knockout, precise editing, or regulatory experiments to establish engineered cell models with genotypic, protein, and functional evidence.Experiment ObjectiveDesign and implement gene knockout, precise editing, or regulatory experiments to establish engineered...
14
Gene delivery | 1–4 days
Efficiently deliver plasmids, mRNA, siRNA, oligonucleotides, or gene-editing components into cells to achieve reproducible expression or silencing effects while controlling toxicity.Experimental ObjectiveEfficiently deliver plasmids, mRNA, siRNA, oligonucleotides, or gene-editing components into cells to achieve...
15
Cell response | hours to days
Quantitatively compare the effects of treatments on cell metabolic activity, membrane integrity, proliferation, and survival to establish reliable dose-response and time-response relationships.Experiment ObjectiveTo quantitatively compare the effects of treatments on cell metabolic activity, membrane...
16
Cell death | 4–48 hours
Differentiate early apoptosis, late apoptosis, necrosis, and other regulated cell deaths, and establish mechanisms of action through time-series and multi-indicator evidence.Experimental ObjectivesDifferentiate early apoptosis, late apoptosis, necrosis, and other regulated cell deaths, and establish...
17
Protein interaction | 1–2 days
Enrich target proteins and their interaction complexes from cell or tissue lysates, and validate candidate protein interactions using Western Blot, mass spectrometry, or other orthogonal methods.Experimental ObjectiveTo enrich target proteins and their interaction complexes...
18
Epigenetics | 2–4 days
Detect the enrichment of transcription factors, histone modifications, or chromatin proteins at target genomic regions, and provide traceable samples for ChIP-qPCR or ChIP-seq.Experimental ObjectiveDetect the enrichment of transcription factors, histone modifications, or chromatin proteins...
19
Reporter assay | 2–4 days
Quantitatively assess the regulation of reporter gene expression by promoters, enhancers, transcription factors, signaling pathways, or miRNAs, and correct for transfection and cell number differences using an internal reference reporter.Experimental ObjectiveTo quantitatively assess the...
20
Cell motility | 1–3 days
Quantitatively compare cell migration and matrix invasion capabilities in 2D scratch or Transwell models, and evaluate the impact of genes, pathways, or candidate compounds on motile phenotypes.Experimental ObjectiveTo quantitatively compare cell migration and matrix...
21
Organoids | 2–8 weeks
To establish three-dimensional organoid models that are expandable, cryopreservable, and possess tissue-related structural and functional characteristics from tissues, adult stem cells, or pluripotent stem cells.Experimental ObjectiveTo establish three-dimensional organoid models that are expandable, cryopreservable,...
22
Microbiome | 3–7 days
Microbial DNA extraction, 16S region amplification, library construction, sequencing, and community composition analysis from fecal, environmental, tissue, or low-biomass samples.Experimental ObjectiveTo perform microbial DNA extraction, 16S region amplification, library construction, sequencing, and community composition...
23
Drug screening | 1–4 weeks
Establish an automated, quantifiable cellular or biochemical assay system with sufficient dynamic range to perform primary screening, hit confirmation, dose-response, and counter-screening of compounds.Experimental ObjectiveTo establish an automated, quantifiable cellular or biochemical assay system...
24
Single-cell omics | 2–4 days
Prepare high-viability single-cell suspensions from tissue or cell samples, perform cell counting, microdroplet or plate-based partitioning, barcoding, library construction, and pre-sequencing quality control.Experimental ObjectiveTo prepare high-viability single-cell suspensions from tissue or cell samples, perform...
25
Spatial transcriptomics | 3–5 days
Capture region- or cell-scale transcripts while preserving tissue spatial location and morphological information, completing tissue quality assessment, section optimization, spatial capture, library construction, and pre-sequencing quality control.Experimental ObjectivesTo capture region- or cell-scale transcripts while...
26
Quantitative proteomics | 3–7 days
Perform protein extraction, reduction and alkylation, enzymatic digestion, peptide purification, quantitative strategy selection, LC-MS/MS acquisition, and data quality assessment from cells, tissues, biological fluids, or purified samples.Experimental ObjectiveTo perform protein extraction, reduction and alkylation,...
27
Digital PCR | about 1 day
Absolute quantification of DNA or RNA targets without a standard curve, for method development and quality control in copy number, low-frequency variation, residual nucleic acids, vector titer, or rare event detection.Experimental ObjectiveAbsolute quantification of...
28
Multiplex cytokines | 1–2 days
Synchronously quantify multiple cytokines, chemokines, or immune markers in limited volumes of serum, plasma, cell culture supernatants, or other samples, and generate comparable immune profiles.Experimental ObjectiveTo synchronously quantify multiple cytokines, chemokines, or immune markers...
29
Microbial ID and AST | 2–4 days
We perform microbial isolation, culturing, purification, phenotypic or molecular identification, and standardized antimicrobial susceptibility testing from suitable samples, providing traceable results for research, method development, and quality studies.Experiment ObjectiveTo perform microbial isolation, culturing, purification,...
30
In vivo efficacy | 2–12 weeks
Select or establish appropriate animal models based on clear scientific questions, and complete study design, randomization, drug administration, observation, sample collection, endpoint evaluation, and traceable data quality control.Experimental ObjectiveTo select or establish appropriate animal...