Nanopore platform for real-time detection of hair follicle secretions

Technology
In market
University

A novel nanopore sensing platform for real-time detection of hair follicle secretions, enabling non-invasive alopecia diagnosis by analyzing biomarkers like PGD2 and DKK1. Portable, rapid, and highly sensitive, it aims for point-of-care and personalized treatment applications.

Overview

The proposed solution is a cutting-edge nanopore sensing platform designed for real-time, non-invasive detection of hair follicle secretions. This innovative technology targets the clinical gap in alopecia diagnosis by enabling the detection of key biomarkers such as PGD2, DKK1, and inflammatory cytokines. By offering a portable, rapid, and highly sensitive diagnostic tool, this platform facilitates early detection and monitoring of hair follicle health, supporting personalized treatment plans and potential point-of-care applications.

Technical specifications

Key features:

  • Utilizes nanopore sensing for label-free, single-molecule detection
  • Capable of detecting proteins, metabolites, and RNA in minute samples
  • Optimized for analyzing secreted molecules from individual hair follicles
  • Incorporates multiplexed antibodies for simultaneous detection of multiple protein biomarkers
  • Reduces cost, sample volume, reagent use, and sampling errors
  • Expands detection capabilities to include microRNAs and other molecular components
Technology readiness level

This technology has achieved Technology Readiness Level 9, indicating it has been proven in operational environments and is ready for commercial deployment. Future validation aims include enhancing multiplexing capabilities and expanding biomarker detection to improve diagnostic accuracy and therapeutic monitoring.


About Rutgers University

Rutgers University is a comprehensive public research university and New Jersey’s flagship, spanning campuses in New Brunswick–Piscataway, Newark, and Camden. For industry, it offers an integrated clinical and biomedical enterprise through its health system, a statewide extension network for field deployment, and campus-based incubators and pilot-scale facilities that enable prototyping and scale-up. Companies engage through sponsored research, shared core facilities, professional education, and flexible partnership models supported by corporate engagement teams. Research is supported by competitive federal funding from agencies such as NIH, NSF, DOE, and USDA. A dedicated technology transfer office manages IP, licensing, material transfer, and startup formation, providing clear pathways from lab discovery to market.

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