What Are Biomaterials?
Nanoparticles & Cancer Targeting
Liposomes
Metallic NPs
Polymer NPs
100

What is the general term for any substance (other than a drug), synthetic or natural, used to treat, augment, or replace tissue, organ, or body function?

A biomaterial!

100

What term describes proteins that cancer cells overexpress on their surface, which healthy cells lack or have much less of?

Cancer biomarkers (surface receptors)

100

What type of molecule makes up the bilayer membrane of a liposome?

Lipids

100

Name the three types of metallic nanoparticles introduced in class

Silver, iron oxide, and gold nanoparticles

100

What are the two basic structural forms of polymeric nanoparticles shown in class — one where drug is entrapped inside a hollow shell, and one where drug is spread through a solid sphere?

Nanocapsules and nanospheres

200

Name two examples of natural, protein-based biomaterials mentioned in class.

Silk, Collagen, Fibrin, Gelatin.

200

What is the name for the passive buildup of nanoparticle drugs at a tumor site, caused by the tumor's leaky blood vessels and poor drainage?

EPR

200

A phospholipid has a hydrophilic head and hydrophobic tail. What term describes this dual nature that lets phospholipids self-organize into a membrane?

Amphipathic

200

Which metal is described as the most common nanoparticle material because it's easy to fabricate, highly biocompatible, and has great optical properties?

Gold

200

What term describes polymers that change shape or structure in response to an external trigger like heat, light, pH, or enzymes?

Stimuli-responsive (or 'smart') polymers

300

What term describes a material's ability to perform well in the body without causing toxic or harmful effects?

Biocompatibility

300

What is it called when a nanoparticle is engineered with a ligand, like an antibody or peptide, that specifically binds to a receptor on cancer cells?

Active targeting

300

What molecule is commonly inserted into liposome membranes to increase fluidity and decrease rigidity of the bilayer?

Cholesterol

300

What therapy uses nanoparticles and an alternating magnetic field to raise tumor tissue temperature to about 40–43°C?

Magnetic hyperthermia

300

Why do pH-responsive nanoparticles release their drug cargo more readily in the acidic tumor microenvironment?

Acidic or basic groups on the polymer become ionized, increasing electrostatic repulsion and causing the nanoparticle to expand and release its trapped drug.

400

Name one synthetic polymer biomaterial mentioned in class.

Poly-ethylene glycol (PEG), Polyglycolide (PGA), Poly-lactic-co-glycolic acid (PLGA), Poly-D,L-lactide (PDLLA), Poly-e-caprolactone (PCL).

400

Name one type of molecule that can be used as a targeting ligand on a nanoparticle's surface

antibody, antibody fragment, peptide, protein, sugar/carbohydrate, aptamer

400

What polymer coating is commonly added to liposomes (like in the drug Doxil) to help them evade the immune system and circulate longer in the blood?

PEG

400

What therapy uses near-infrared or visible light to activate nanoparticles, generating heat and reactive oxygen species (ROS) to kill cancer cells?

Photothermal therapy.

400

Name one advantage of polymeric nanoparticles mentioned in class.

high tunability (can modify shape/size/design and drug release rate), easy and cheap to fabricate in large quantities, delivers high drug concentrations, can be designed to respond to different stimuli

500

what are the two broad origin categories biomaterials fall into?

Natural biomaterials and synthetic biomaterials

500

What is the general term for the process by which a nanoparticle, once bound to a cell surface receptor, gets pulled inside the cell?

Receptor-mediated endocytosis.

500

Name one advantage and one disadvantage of using liposomes as drug delivery vehicles.

advantage (e.g., non-toxic/biodegradable, improved pharmacokinetics, easy to functionalize, selective passive tumor targeting) and any one disadvantage (e.g., high production cost, short half-life, drug leakage, low water solubility)

500

In chemodynamic therapy, what specific chemical reaction — driven by iron oxide nanoparticles — generates damaging hydroxyl radicals inside cancer cells?

Fenton reaction

500

Name one disadvantage of polymeric nanoparticles mentioned in class.

Mainly biotoxicity

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