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CAS 26780-50-7

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Poly-(DL)-lactide-co-glycolide

Description:
Poly-(DL)-lactide-co-glycolide (PLGA) is a biodegradable copolymer derived from lactic acid and glycolic acid, commonly used in biomedical applications such as drug delivery systems and tissue engineering. Its chemical structure consists of repeating units of lactic acid and glycolic acid, which can be varied in ratio to tailor the polymer's properties. PLGA is characterized by its biocompatibility, biodegradability, and ability to form microspheres or films, making it suitable for controlled release formulations. The degradation rate of PLGA can be adjusted by altering the lactide-to-glycolide ratio, influencing its mechanical properties and release kinetics. Additionally, PLGA is soluble in organic solvents like chloroform and dichloromethane, but insoluble in water, which is advantageous for various formulation techniques. Its applications extend beyond pharmaceuticals to include sutures, scaffolds for tissue regeneration, and other medical devices. Overall, PLGA is a versatile polymer that plays a significant role in advancing drug delivery and regenerative medicine.
Formula:(C6H8O4·C4H4O4)x
InChI:InChI=1S/C6H8O4.C4H4O4/c1-3-5(7)10-4(2)6(8)9-3;5-3-1-7-4(6)2-8-3/h3-4H,1-2H3;1-2H2
InChI key:InChIKey=LCSKNASZPVZHEG-UHFFFAOYSA-N
SMILES:O=C1COC(=O)CO1.CC1C(=O)OC(C)C(=O)O1
Synonyms:
  • 5050Dl2A
  • Atrigel
  • Medisorb
  • OsteoScaf
  • Poly(D,L-lactide-co-glycolide)
  • Poly(DL-lactide-co-glycolide)
  • Poly(glycolide-co-lactide)
  • Poly(glycolide-lactide)
  • Poly(lactide-co-glycolide)
  • Poly(lactide-glycolide)
  • See more synonyms
Found 19 products.
  • PLG 80:20 DLLG 3A

    CAS:
    Polyesters, saturated, in primary forms, nesoi
    Formula:HC6H8O4nC4H4O4mOH
    Color and Shape:Colorless Tan Solid Pellets
  • PLG 50:50 DLLG 3A

    CAS:
    Polyesters, saturated, in primary forms, nesoi
    Formula:HC6H8O4nC4H4O4nOH
    Color and Shape:White Powder
    Molecular weight:24.000-38.000 Da
  • PLG 50:50 DLLG 5A

    CAS:
    Polyesters, saturated, in primary forms, nesoi
    Formula:HC6H8O4nC4H4O4nOH
    Color and Shape:White Powder
    Molecular weight:54.000-69.000 Da
  • PLG 75:25 DLLG 3A

    CAS:
    Polyesters, saturated, in primary forms, nesoi
    Formula:HC6H8O4nC4H4O4mOH
    Color and Shape:White Powder
    Molecular weight:24.000-38.000 Da
  • PLG 75:25 DLLG 10A

    CAS:
    Polyesters, saturated, in primary forms, nesoi
    Formula:HC6H8O4nC4H4O4mOH
    Color and Shape:White Powder
    Molecular weight:~150.000 Da
  • Poly(Dl-Lactide-Glycolide)

    CAS:
    Poly(Dl-Lactide-Glycolide)
    Formula:(C6H8O4·C4H4O4)x
    Purity:acid terminated,lactide:glycolide 50:50,Mw 7000-17
    Color and Shape:Solid

    Ref: 54-OR1014704

    100mg
    41.00€
    250mg
    67.00€
    1g
    129.00€
    5g
    419.00€
    25g
    1,859.00€
  • Poly(Dl-Lactide-Glycolide)

    CAS:
    Poly(Dl-Lactide-Glycolide)
    Formula:(C6H8O4·C4H4O4)x
    Purity:Mw 24000-38000

    Ref: 54-OR1014705

    100mg
    60.00€
    250mg
    67.00€
    1g
    75.00€
    5g
    252.00€
    25g
    1,102.00€
  • Poly(Dl-Lactide-Glycolide)

    CAS:
    Poly(Dl-Lactide-Glycolide)
    Formula:(C6H8O4·C4H4O4)x
    Purity:Mw 38000-54000

    Ref: 54-OR1014706

    250mg
    53.00€
    1g
    121.00€
    5g
    328.00€
    25g
    1,407.00€
  • 1,4-Dioxane-2,5-dione, polymer with 3,6-dimethyl-1,4-dioxane-2,5-dione

    CAS:
    Formula:C10H12O8
    Purity:97%
    Color and Shape:Solid
    Molecular weight:260.1975

    Ref: IN-DA00BE6G

    250mg
    71.00€
    1g
    120.00€
    5g
    344.00€
    10g
    655.00€
  • PLGA

    CAS:
    Poly(DL-lactide-glycolide)
    Formula:(C6H8O4·C4H4O4)x
    Purity:lactide:glycolide (75:25), Mw 66,000-107,000
  • Poly(D,L-lactide-co-glycolide), lactide: glycolide (85:15), average MW 50000 to 75000

    CAS:

    Poly(D,L-lactide-co-glycolide) is a synthetic polymer that is used for subcutaneous implantation. It is used to treat incisional hernias and rectoceles in women. Poly(D,L-lactide-co-glycolide) can be implanted in tissues where the natural tissue has been removed or damaged. This polymer has been shown to reduce postoperative pain and improve the quality of life after surgery. Poly(D,L-lactide-co-glycolide) has also been shown to induce neuronal death in rats with experimental spinal cord injury when injected into the injured area. The polymer was injected at two different doses (5% and 10%) and induced significant neuronal death at both doses. Histological analysis showed that the tissue around the injection site had a moderate number of macrophages, but few microglia cells were observed. The presence of macrophages suggests that inflammation may have

    Purity:10 To 20%

    Ref: 3D-FP168169

    2500mg
    220.00€
    5g
    344.00€
    10g
    510.00€
    25g
    1,007.00€
    50g
    1,582.00€
  • Poly(D,L-lactide-co-glycolide);lactide:glycolide (50:50), MW 54000-69000Da

    CAS:

    Poly(D,L-lactide-co-glycolide) is a biocompatible polymer that has been shown to be resistant to bacterial infections. It is a multivariate logistic regression analysis that shows the material's resistance to growth factor-β1 and neuronal death. The polymer has a low carcinogenic potential and toxicity studies have shown it is safe for use in humans. This polymer has been used in an experimental model of chronic oral toxicity and was shown to be biocompatible with human serum.

    Formula:(C6H8O4·C4H4O4)x
    Purity:Min. 95%
    Color and Shape:Powder

    Ref: 3D-FP180578

    2g
    344.00€
    10g
    929.00€
    25g
    1,641.00€
  • Poly(D,L-lactide-co-glycolide - lactide:glycolide (50:50), average MW 7000-17000Da

    CAS:
    Poly(D,L-lactide-co-glycolide - lactide:glycolide (50:50), average MW 7000-17000Da (PLGA) is a biocompatible polymer that has been shown to have high resistance to infectious diseases and the potential for use in biomedical applications. The polymer is often used as a drug carrier molecule and has been shown to inhibit the growth of human breast cancer cells. It also has been shown to inhibit neuronal death. PLGA stimulates the production of basic fibroblast growth factor (bFGF) which may promote wound healing and tissue regeneration. PLGA is also used in radiation therapy because it does not produce any harmful byproducts when irradiated with ionizing radiation. Toxicity studies have found that PLGA does not produce any toxicity when irradiated with ionizing radiation as well as untreated controls.
    Purity:Min. 95%
    Color and Shape:Powder

    Ref: 3D-FP180577

    2g
    246.00€
    5g
    461.00€
    10g
    684.00€
    25g
    1,221.00€
    50g
    1,831.00€
  • Poly(D,L-lactide-co-glycolide), lactide: glycolide (50:50), average MW 10000 to 15000

    CAS:

    Poly(D,L-lactide-co-glycolide) is a biodegradable polymer with a low melting point. It has been used in the form of sutures for surgical procedures and has also been shown to be effective against staphylococcus. Poly(D,L-lactide-co-glycolide) also has an effect on neuronal death and incisional wound healing. The polymer can be degraded by hydrolysis or enzymatic cleavage and is therefore not suitable as an implant material. This material is used in the form of films for drug delivery systems as well as in surgical meshes for hernia repair, abdominal wall hernias, and rectocele repair.

    Formula:(C6H8O4•C4H4O4)x
    Purity:Min. 95%

    Ref: 3D-FP165618

    10g
    1,037.00€
    25g
    1,465.00€
    50g
    2,141.00€
    100g
    3,567.00€
    250g
    7,372.00€
  • PLGA

    CAS:
    Poly(DL-lactide-glycolide)
    Formula:(C6H8O4·C4H4O4)x
    Purity:Mw 24000-38000
  • Poly(D,L-lactide-co-glycolide) - lactide: glycolide (75:25), average MW 10000 to 15000

    CAS:

    Poly (DL-lactide-co-glycolide) is a biodegradable polymer that is used in the manufacture of medical devices. It is made from lactic acid and glycolic acid. Poly (DL-lactide-co-glycolide) can degrade by hydrolysis to produce lactic acid and glycolic acid, which are both naturally occurring substances in the body. This polymer has been shown to be effective in treating staphylococcal infections, such as rectoceles. A predictive factor for treatment success with poly (DL-lactide-co-glycolide) is the morphology of the rectocele before surgery. In this study, multivariate logistic regression was used to analyze preoperative factors that predicted treatment success with poly (DL-lactide-co-glycolide). The results showed that women who had an incisional rectocele were more likely to have a successful outcome when treated

    Formula:C3H4O2xC2H2O2y
    Purity:Min. 95%

    Ref: 3D-FP165617

    2g
    883.00€
  • Poly(D,L-lactide-co-glycolide) - lactide: glycolide (75:25), average MW 50000 to 75000

    CAS:
    Poly (D,L-lactide-co-glycolide) is a synthetic polymer that consists of 75% lactide and 25% glycolide. It has been used in the treatment of incisional hernia, which is a type of hernia that occurs when an organ protrudes through an incision made in the abdominal wall. Poly (D,L-lactide-co-glycolide) has also been used to prevent neuronal death in experimental animals. Histological analysis of the subcutaneous tissue showed significantly less neuronal death with poly (D,L-lactide-co-glycolide). This polymer has also been shown to be effective for women with rectocele and was found to be safe for use in this population. Poly (D,L-lactide-co-glycolide) is a synthetic polymer consisting primarily of 75% lactides and 25% glycolides. This polymer has been used as an
    Formula:C3H4O2xC2H2O2y
    Purity:Min. 95%
    Color and Shape:White Powder

    Ref: 3D-FP45267

    5g
    883.00€
  • Poly(D,L-lactide-co-glycolide) - lactide: glycolide (90:10), average MW 10000 to 15000

    CAS:

    Poly(D,L-lactide-co-glycolide) is a biodegradable polymer that is used in the manufacture of sutures. It is made from the monomers L-lactide and glycolide and has an average molecular weight of 10,000 to 15,000 Daltons. Poly(D,L-lactide-co-glycolide) can be sterilized by autoclaving or gamma irradiation. The polymerization process does not produce any toxic byproducts. Polymers are soluble in solvents such as acetic acid or alcohols. They are also resistant to degradation by enzymes or bacteria. This polymer is used in the manufacturing of sutures because it has good adhesive properties and is more water resistant than other polymers. Poly(D,L-lactide-co-glycolide) can be used as an ophthalmic device because it is transparent and biocompatible with

    Formula:C3H4O2xC2H2O2y
    Purity:Min. 95%

    Ref: 3D-FP165619

    2g
    883.00€
    5g
    926.00€
    10g
    1,343.00€
    25g
    2,355.00€
  • Poly-(DL)-lactide-co-glycolide

    CAS:
    Formula:C8H14O4
    Molecular weight:174.20

    Ref: 4Z-L-159006

    5mg
    Discontinued
    10mg
    Discontinued
    25mg
    Discontinued
    50mg
    Discontinued
    100mg
    Discontinued
    Discontinued product