PLGA Scaffolds Tissue Engineering And 3d Cell Culture
PLGA Scaffolds Tissue Engineering And 3d Cell Culture
PLGA Scaffolds Tissue Engineering And 3d Cell Culture
PLGA Scaffolds Tissue Engineering And 3d Cell Culture
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PLGA Scaffolds Tissue Engineering And 3d Cell Culture
PLGA Scaffolds Tissue Engineering And 3d Cell Culture
Home> Products> Medical Grade Polymers> Poly L-lactide-co-glycolide PLGA> PLGA Scaffolds Tissue Engineering And 3d Cell Culture

PLGA Scaffolds Tissue Engineering And 3d Cell Culture

Payment Type: Western Union,T/T,Money Gram
Incoterm: FOB,CFR,CIF,EXW,CPT,Express Delivery
$20 100-999
Gram
$15 ≥1000
Gram
$11,300.00   —  $5,600,000.00 /Set

Product Description

Product Attributes

Model No.PLGA

BrandRimless

Place Of OriginChina

Types OfSynthetic Resin And Plastics

Purity99%

TypeMedical Grade

Brand NameRimless

UsageMedical Device Or Drug Delivery

GradeMedical Level

MOQ100g

ColorWhite Or Yellow

Place Of OriginJilin, China

CAS No.30846-39-0

Other NamesPoly(L-Lactide-Co-Glycolide)

Model NumberPlga

CAS30846-39-0

MaterialPoly(L-Lactide-Co-Glycolide)

Packing100g/Bag

Inherent Viscosity0.3-2.25dl/G

Product NameMedical Grade Raw Material Poly(L-Lactide-Co-Glycolide)(Plga)

MF(C6H8O4)n

Supply Ability & Additional Information

PackagingSafe Package of 100g/bag Biodegradable Medical Grade Raw Material Poly(L-lactide-co-glycolide)(PLGA)

Productivity1000grams/month

TransportationAir,Express

Place of OriginChina

Supply Ability10000grams/month

CertificateISO/CE

HS Code3907700000

PortDalian,Beijing,Shanghai

Payment TypeWestern Union,T/T,Money Gram

IncotermFOB,CFR,CIF,EXW,CPT,Express Delivery

Packaging & Delivery

Selling Units:
Gram
Package Type:
Safe Package of 100g/bag Biodegradable Medical Grade Raw Material Poly(L-lactide-co-glycolide)(PLGA)
Picture Example:

Medical Use Poly L-lactide-co-glycolide PLGA For Anti-ageing

Product Description

Raw Materials PLGA Scaffolds For Tissue Engineering And 3d Cell Culture The polymer PLGA can be approved for many biomedical applications such as delivery devices, sutures and implants. It is a random copolymer with physical and mechanical properties that can be easily tuned by altering the lactide to glycolide ratio. Through combining emulsion/solvent evaporation and miniemulsion techniques, it is possible to produce biodegradable nanoparticles with a controlled size and narrow size...

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