PinPrint, Inc.


Developer of 3D-printed microneedle microarray patches for intradermal/transdermal delivery and diagnostics. The company focuses on high-resolution additive manufacturing of lattice-structured microarray patches, formulation compatibility for high payloads and lyophilized cargos, and microneedle-enabled interstitial fluid sampling. Activities described include preclinical validation, peer-reviewed publications, and partnerships with clinicians and researchers to support pilots and product development.

Industries

N/A

Nr. of Employees

small (1-50)


Products

3D-printed microneedle microarray patches for vaccines, therapeutics, and aesthetics

Microarray patches produced by high-resolution 3D printing designed for intradermal/transdermal delivery or ISF sampling. Designs include lattice structures and microfluidic features to enable protected cargo loading, multi-agent co-delivery, and tunable dosing.


Services

Engagements with healthcare partners, researchers, and investors to explore integration of microneedle technology into product pipelines.

Design of customized patch geometries and evaluation of formulation compatibility for clinical or commercial needs.

Provision of prototype or sample patches for preclinical or clinical evaluation.

Support for scalable production of microneedle patches using high-resolution additive manufacturing methods.

Expertise Areas

  • Transdermal and intradermal drug delivery
  • 3D printing and microfabrication
  • Microarray patch (microneedle) design
  • Formulation development for high-loading and lyophilized cargos
  • Show More (4)

Key Technologies

  • 3D printing for microfabrication
  • High-resolution stereolithography
  • Continuous liquid interface production (CLIP)
  • Lattice-structured microarray patches
  • Show More (5)

News & Updates

Investment coverage describing external backing for the company's 3D-printed microneedle patch technology.

Investment article referenced on the site describing investor support for the company's microneedle technology.

Peer-reviewed publication referenced on the site describing high-resolution continuous liquid interface production methods relevant to microneedle fabrication.

Peer-reviewed article describing latticed microneedle array patches and tunable intradermal delivery approaches.


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