बायोमैग्नेटिक मोतियों के पेशेवर निर्माता

LnjnBio 160014 चुंबकीय मोती,जीवन विज्ञान अनुसंधान की असीमित क्षमता को उजागर करना
LnjnBio 160014 चुंबकीय मोती feature a superparamagnetic Fe3हे4 core-SiO2shell structure. Through precise control of the silanization modification process, a high-density hydroxyl functional group is constructed on the bead surface. This unique structure enables rapid response to external magnetic fields (magnetic response time < 10 सेकंड) and negligible residual magnetism after demagnetization (coercivity < 5 Oe), ensuring excellent dispersion and reusability. With nucleic acid recovery rates exceeding 90% and a sedimentation half-life of 16–30 minutes, these beads deliver superior suspension stability and operational convenience, making them ideal even for high-throughput sample processing.
उत्पाद विशिष्टताएँ & Performance
| 160014 | |
| सक्रिय समूह | सी-ओह |
| चुंबकीय मनका मैट्रिक्स | सुपरपैरामैग्नेटिक सिलिका |
| Mean particle diameter | 2माइक्रोन |
| Value of saturated magnetic | 75±5ईएमयू/जी |
160014 Magnetic Beads are primarily suitable for the extraction and purification of genomic DNA from moderate to large quantities of plant tissue, पशु ऊतक, and whole blood. They are particularly well-suited for whole blood, peripheral blood, जीनोमिक डीएनए निष्कर्षण, and co-extraction of DNA/RNA, offering a high binding capacity. Taking 20 ng/µl target DNA as an example, the beads achieve a recovery rate of approximately 90% या उच्चतर (as shown in Table 1).
मेज़ 1: Batch stabilisation and adsorption properties
| नमूना | 200 µl frozen anticoagulated porcine whole blood | 20ng/µl डीएनए | ||
| 260/280 | 260/230 | संक्षिप्त.(ng/µl) | वसूली | |
| 160014 batch 1 | 1.940 | 2.113 | 139.30 | 94.81% |
| 1.941 | 2.098 | 140.15 | ||
| 1.935 | 2.104 | 139.20 | ||
| औसत | 1.94 | 2.11 | 139.55 | |
| 160014 batch 2 | 1.904 | 2.068 | 123.15 | 93.03% |
| 1.941 | 1.930 | 102.20 | ||
| 1.952 | 2.012 | 96.55 | ||
| औसत | 1.93 | 2.00 | 107.30 | |
Customer Feedback
A customer used our model 160014 to simultaneously extract two types of samples, with one sample undergoing five replicates. The measured concentration results are as follows:
| नमूना | ए260/ए280 | ए260/ए230 | सान्द्र. (ng/uL) |
| DZ 1 | 2.063 | 1.756 | 662.193 |
| DZ 2 | 2.072 | 1.644 | 767.457 |
| DZ 3 | 2.085 | 1.636 | 804.403 |
| DZ 4 | 2.096 | 1.67 | 810.99 |
| DZ 5 | 2.102 | 1.65 | 797.154 |
| DJ 1 | 2.091 | 1.676 | 830.792 |
| DJ 2 | 2.106 | 1.651 | 1173.922 |
| DJ 3 | 2.076 | 1.67 | 823.917 |
| DJ 4 | 2.066 | 1.697 | 838.414 |
| DJ 5 | 2.084 | 1.68 | 855.57 |
Gel electropherogram

From the above results, it can be seen that the 160014 magnetic beads have excellent performance in extracting nucleic acids and the extracted fragments are complete and clear, which is especially suitable for on-line batch extraction.
प्रायोगिक मामले
मामला 1: Use of 160014 handheld different plant seed germinal parts
| नहीं. | नमूना | नमूना सेवन | 260/280 | 260/230 | सान्द्र. (का/उल) |
| 1 | Red beans | 10 एमजी | 1.988 | 1.794 | 167.8 |
| 2 | Soybead | 1.996 | 2.051 | 549.9 | |
| 3 | Peanut | 1.957 | 1.507 | 154.85 | |
| 4 | Black rice | 1.956 | 1.644 | 133.05 | |
| 5 | Japonica rice | 1.95 | 1.898 | 96.4 | |
| 6 | Maize | 1.84 | 1.268 | 161.35 |
Gel electropherogram

From the above experimental results, it can be verified that for the manually extracted plant seed germ samples, the genomic fragments recovered by 160014 magnetic beads were of good purity (ए260/ए280>1.8, 260/230>1.2), and the fragments were complete.
मामला 2: Effect of DNA extraction on 10-15 mg of polysaccharide polyphenol plant genome
| No. | नमूना | Sample intake(mg) | ए260/ए280 | ए260/ए230 | संक्षिप्त.(एनजी/μL) | Yield(µg) |
| 1 | Dandelion fresh leaves | 15एमजी | 1.84 | 1.698 | 44.4 | 4.44 |
| 2 | Perilla fresh leaves | 15एमजी | 1.745 | 1.379 | 110.1 | 11.01 |
| 3 | Ospecios fresh leaves | 10एमजी | 1.755 | 1.463 | 55.7 | 5.57 |
| 4 | Dichondra fresh leaves | 15एमजी | 1.838 | 1.661 | 64.65 | 6.47 |
| 5 | Desmodium fresh leaves | 15एमजी | 1.843 | 1.777 | 89.85 | 8.99 |
| 6 | Alternanthera philoxeroides fresh leaves | 15एमजी | 1.855 | 1.79 | 39.65 | 3.97 |
| 7 | Plantain fresh leaves | 15एमजी | 1.872 | 1.969 | 104.2 | 10.42 |
Gel electropherogram

From the above experimental results, it can be verified that the 160014 magnetic beads have high recovery of genomic fragments of 10-15mg polysaccharide and polyphenol plant samples with a yield of more than 15 माइक्रोग्राम, and good purity (ए260/ए280>1.75, 260/230>1.4), and complete genomic fragments.
Leader Bio 160014 silica-based magnetic beads are becoming a new benchmark in the field of nucleic acid extraction due to their high recovery rate, excellent suspension and strong magnetic properties.
The company not only provides high-quality products, but also develops a variety of magnetic bead-based nucleic acid extraction and purification reagents, which can isolate and purify high-quality genomic DNA/RNA from a wide range of samples such as blood, सीरम/प्लाज्मा, लार, जीवाणु, कवक, फाहे, faeces, animal and plant tissues, और इसी तरह.
Whether for basic scientific research or clinical testing applications, this product can provide reliable technical support and excellent experimental results.
लिमिटेड. will continue to provide more high-quality products and services for the life science field with the impetus of technological innovation, helping researchers to explore the mysteries of life and promoting the development of biomedicine.
देने वाला
शंघाई लिंगजुन बायोटेक्नोलॉजी कंपनी, लिमिटेडमें स्थापित किया गया था 2016 जो बायोमैग्नेटिक सामग्रियों और न्यूक्लिक एसिड निष्कर्षण अभिकर्मकों का एक पेशेवर निर्माता है.
हमारे पास न्यूक्लिक एसिड निष्कर्षण और शुद्धिकरण में समृद्ध अनुभव है, प्रोटीन शुद्धि, कोशिका पृथक्करण, chemiluminescence, और अन्य तकनीकी क्षेत्र.
हमारे उत्पाद कई क्षेत्रों में व्यापक रूप से उपयोग किए जाते हैं, जैसे चिकित्सा परीक्षण, आनुवंशिक परीक्षण, विश्वविद्यालय अनुसंधान, आनुवंशिक प्रजनन, और इसी तरह. हम न केवल उत्पाद उपलब्ध कराते हैं बल्कि ओईएम का कार्य भी कर सकते हैं, ओडीएम, और अन्य जरूरतें. यदि आपको इससे संबंधित कोई आवश्यकता है, हमसे संपर्क करने के लिए कृपया स्वतंत्र महसूस करें .

























