Implanted hair follicle stem cells form Schwann cells that support repair of severed peripheral nerves.
💡 한 문장 핵심
이식된 모낭 줄기세포는 슈반세포를 형성하여 절단된 말초신경의 재생을 지원한다.
4/5 보강
TL;DR
The results suggest that hair follicle stem cells provide an important, accessible, autologous source of adult stem cells for regenerative medicine.
📑 코퍼스 인용 관계
· 인용됨 38 · 인용함 15
→ 이 논문이 인용한 논문 (3) ▾
- Multipotent nestin-positive, keratin-negative hair-follicle bulge stem cells can form neur… Proceedings of the National Academy of Sciences of the United States of America · 2005
- Nascent blood vessels in the skin arise from nestin-expressing hair-follicle cells. Proceedings of the National Academy of Sciences of the United States of America · 2004
- Morphogenesis and renewal of hair follicles from adult multipotent stem cells. Cell · 2001
📑 인용한 논문 (6) ▾
- Bulge-Derived Epithelial Cells Isolated from Human Hair Follicles Using Enzymatic Digestio… International journal of molecular sciences · 2025
- Rat hair-follicle-associated pluripotent (HAP) stem cells can differentiate into atrial or… PloS one · 2024
- The beneficial effects of chick embryo extract preconditioning on hair follicle stem cells… Cell proliferation · 2023
- Augmenting Peripheral Nerve Regeneration Using Hair Follicle Stem Cells in Rats. Basic and clinical neuroscience · 2022
- Chronic spinal cord injury functionally repaired by direct implantation of encapsulated ha… PloS one · 2022
- Mesenchymal Stem Cells From Mouse Hair Follicles Reduce Hypertrophic Scarring in a Murine … Stem cell reviews and reports · 2022
연도별 인용 (2012–2026) · 합계 187
OpenAlex 토픽 ·
Hair Growth and Disorders
Nerve injury and regeneration
Skin and Cellular Biology Research
Abstract 🌐 Abstract
The hair follicle bulge area is an abundant, easily accessible source of actively growing, pluripotent adult stem cells. Nestin, a protein marker for neural stem cells, also is expressed in follicle stem cells and their immediate, differentiated progeny. The fluorescent protein GFP, whose expression is driven by the nestin regulatory element in transgenic mice, served to mark the follicle cell fate. The pluripotent nestin-driven GFP stem cells are positive for the stem cell marker CD34 but negative for keratinocyte marker keratin 15, suggesting their relatively undifferentiated state. These cells can differentiate into neurons, glia, keratinocytes, smooth muscle cells, and melanocytes in vitro. In vivo studies show the nestin-driven GFP hair follicle stem cells can differentiate into blood vessels and neural tissue after transplantation to the subcutis of nude mice. Equivalent hair follicle stem cells derived from transgenic mice with beta-actin-driven GFP implanted into the gap region of a severed sciatic nerve greatly enhance the rate of nerve regeneration and the restoration of nerve function. The follicle cells transdifferentiate largely into Schwann cells, which are known to support neuron regrowth. Function of the rejoined sciatic nerve was measured by contraction of the gastrocnemius muscle upon electrical stimulation. After severing the tibial nerve and subsequent transplantation of hair follicle stem cells, walking print length and intermediate toe spread significantly recovered, indicating that the transplanted mice recovered the ability to walk normally. These results suggest that hair follicle stem cells provide an important, accessible, autologous source of adult stem cells for regenerative medicine.
The results suggest that hair follicle stem cells provide an important, accessible, autologous source of adult stem cells for regenerative medicine.
APA 7
Amoh, Y., Li, L., Campillo, R., Kawahara, K., Katsuoka, K., Penman, S., & Hoffman, R. M. (2005). Implanted hair follicle stem cells form schwann cells that support repair of severed peripheral nerves.. Proceedings of the National Academy of Sciences of the United States of America, 102(49), 17734-8. https://doi.org/10.1073/pnas.0508440102
Vancouver
Amoh Y, Li L, Campillo R, Kawahara K, Katsuoka K, Penman S, et al. Implanted hair follicle stem cells form Schwann cells that support repair of severed peripheral nerves. Proc. Nati. Acad. Scie. Unit. Stat. Amer.. 2005;102(49):17734-8. doi:10.1073/pnas.0508440102
AMA 11
Amoh Y, Li L, Campillo R, Kawahara K, Katsuoka K, Penman S, et al. Implanted hair follicle stem cells form Schwann cells that support repair of severed peripheral nerves. Proc. Nati. Acad. Scie. Unit. Stat. Amer.. 2005;102(49):17734-8. doi:10.1073/pnas.0508440102
Chicago
Amoh, Y., Li, L., Campillo, R., Kawahara, K., Katsuoka, K., Penman, S., and Hoffman, R. M.. 2005. "Implanted hair follicle stem cells form Schwann cells that support repair of severed peripheral nerves." Proceedings of the National Academy of Sciences of the United States of America 102 (49): 17734-8. https://doi.org/10.1073/pnas.0508440102
MLA 9
Amoh, Y., et al. "Implanted hair follicle stem cells form Schwann cells that support repair of severed peripheral nerves." Proceedings of the National Academy of Sciences of the United States of America, vol. 102, no. 49, 2005, pp. 17734-8. doi:10.1073/pnas.0508440102.
PMID
16314569 ↗
🏷️ 키워드 / MeSH 📖 같은 키워드 OA만
인용 관계
그래프 OA 노드: 11/11 (100%)
· 참조 3편 · 후속 8편
이 논문이 참조한 문헌 15
이 논문을 인용한 후속 연구 20
- A systematic summary of survival and death signalling during the life of hair follicle stem cells.
- From hair to heart: nestin-expressing hair-follicle-associated pluripotent (HAP) stem cells differen…
- Stem cells with neural crest characteristics derived from the bulge region of cultured human hair fo…
- Isoproterenol directs hair follicle-associated pluripotent (HAP) stem cells to differentiate in vitr…
- Hair-Follicle-Associated Pluripotent (HAP) Stem Cells Can Extensively Differentiate to Tyrosine-Hydr…
- Hair follicle-associated-pluripotent (HAP) stem cells.
- Cryopreservation of the Hair Follicle Maintains Pluripotency of Nestin-Expressing Hair Follicle-Asso…
- Rat hair follicle stem cells differentiate and promote recovery following spinal cord injury.
- Real-time confocal imaging of trafficking of nestin-expressing multipotent stem cells in mouse whisk…
- Transplanted hair follicle stem cells migrate to the penumbra and express neural markers in a rat mo…
- Autologous, Non-Invasively Available Mesenchymal Stem Cells from the Outer Root Sheath of Hair Folli…
- VEGF165 induces differentiation of hair follicle stem cells into endothelial cells and plays a role …
- Human hair-follicle associated pluripotent (hHAP) stem cells differentiate to cardiac-muscle cells.
- Mesenchymal Stem Cells From Mouse Hair Follicles Reduce Hypertrophic Scarring in a Murine Wound Heal…
- The Middle Part of the Plucked Hair Follicle Outer Root Sheath Is Identified as an Area Rich in Line…
- Implanted hair-follicle-associated pluripotent (HAP) stem cells encapsulated in polyvinylidene fluor…
- CD34 defines melanocyte stem cell subpopulations with distinct regenerative properties.
- In vitro neural differentiation of CD34 (+) stem cell populations in hair follicles by three differe…
- Pluripotent hair follicle neural crest stem-cell-derived neurons and schwann cells functionally repa…
- Aging hair follicles rejuvenated by transplantation to a young subcutaneous environment.
같은 제1저자의 인용 많은 논문 (5)
- Multipotent nestin-positive, keratin-negative hair-follicle bulge stem cells can form neurons.
- Multipotent hair follicle stem cells promote repair of spinal cord injury and recovery of walking function.
- Nascent blood vessels in the skin arise from nestin-expressing hair-follicle cells.
- Human hair follicle pluripotent stem (hfPS) cells promote regeneration of peripheral-nerve injury: an advantageous alternative to ES and iPS cells.
- Direct transplantation of uncultured hair-follicle pluripotent stem (hfPS) cells promotes the recovery of peripheral nerve injury.