• 제목/요약/키워드: Follicle cell

검색결과 257건 처리시간 0.031초

치수, 치주인대 및 치낭에서 얻어진 성체줄기세포의 조골세포로의 분화능력 평가에 관한 연구 (A study on differentiation potency of adult stem cells from pulp, periodontal ligament, and dental follicle to osteoblast)

  • 이중규;이재훈
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제36권1호
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    • pp.7-15
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    • 2010
  • Complex human tissues harbor stem cells and precursor cells, which are responsible for tissue development or repair. Recently, dental tissues such as dental pulp, periodontal ligament (PDL), dental follicle have been identified as easily accessible sources of undifferentiated cells. These tissues contain mesenchymal stem cells that can be differentiate into bone, cartilage, fat or muscle by exposing them to specific growth conditions. In this study, the authors procured the stem cell from pulp, PDL, and dental follicle and differentiate them into osteoblast and examine the bone induction capacity. Dental pulp stem cell (DPSC), periodontal ligament stem cell (PDLSC), and dental follicle precursor cell (DFPC) were obtained from human 3rd molar and cultured. Each cell was analyzed for presence of stem cell by fluorescence activated cell sorter (FACs) against CD44, CD105 and CD34, CD45. Each stem cell was cultured, expanded and grown in an osteogenic culture medium to allow formation of a layer of extracellular bone matrix. Osteogenic pathway was checked by alizarin red staining, alkaline phosphatase (ALP) activity test and RT-PCR for ALP and osteocalcin (OCN) gene expression. According to results from FACs, mesenchymal stem cell existed in pulp, PDL, and dental follicle. As culturing with bone differentiation medium, stem cells were differentiated to osteoblast like cell. Compare with stem cell from pulp, PDL and dental follicle-originated stem cell has more osteogenic effect and it was assumed that the character of donor cell was able to affect on differential potency of stem cell. From this article, we are able to verify the pulp, PDL, and dental follicle from extracted tooth, and these can be a source of osteoblast and stem cell for tissue engineering.

Wound-Induced Hair Follicle Neogenesis as a Promising Approach for Hair Regeneration

  • Chaeryeong Lim;Jooyoung Lim;Sekyu Choi
    • Molecules and Cells
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    • 제46권10호
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    • pp.573-578
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    • 2023
  • The mammalian skin contains hair follicles, which are epidermal appendages that undergo periodic cycles and exhibit mini-organ features, such as discrete stem cell compartments and different cellular components. Wound-induced hair follicle neogenesis (WIHN) is the remarkable ability to regenerate hair follicles after large-scale wounding and occurs in several adult mammals. WIHN is comparable to embryonic hair follicle development in its processes. Researchers are beginning to identify the stem cells that, in response to wounding, develop into neogenic hair follicles, as well as to understand the functions of immune cells, mesenchymal cells, and several signaling pathways that are essential for this process. WIHN represents a promising therapeutic approach to the reprogramming of cellular states for promoting hair follicle regeneration and preventing scar formation. In the scope of this review, we investigate the contribution of several cell types and molecular mechanisms to WIHN.

A novel and safe small molecule enhances hair follicle regeneration by facilitating metabolic reprogramming

  • Son, Myung Jin;Jeong, Jae Kap;Kwon, Youjeong;Ryu, Jae-Sung;Mun, Seon Ju;Kim, Hye Jin;Kim, Sung-wuk;Yoo, Sanghee;Kook, Jiae;Lee, Hongbum;Kim, Janghwan;Chung, Kyung-Sook
    • Experimental and Molecular Medicine
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    • 제50권12호
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    • pp.5.1-5.15
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    • 2018
  • Targeting hair follicle regeneration has been investigated for the treatment of hair loss, and fundamental studies investigating stem cells and their niche have been described. However, knowledge of stem cell metabolism and the specific regulation of bioenergetics during the hair regeneration process is currently insufficient. Here, we report the hair regrowth-promoting effect of a newly synthesized novel small molecule, IM176OUT05 (IM), which activates stem cell metabolism. IM facilitated stemness induction and maintenance during an induced pluripotent stem cell generation process. IM treatment mildly inhibited mitochondrial oxidative phosphorylation and concurrently increased glycolysis, which accelerated stemness induction during the early phase of reprogramming. More importantly, the topical application of IM accelerated hair follicle regeneration by stimulating the progression of the hair follicle cycle to the anagen phase and increased the hair follicle number in mice. Furthermore, the stem cell population with a glycolytic metabotype appeared slightly earlier in the IM-treated mice. Stem cell and niche signaling involved in the hair regeneration process was also activated by the IM treatment during the early phase of hair follicle regeneration. Overall, these results show that the novel small molecule IM promotes tissue regeneration, specifically in hair regrowth, by restructuring the metabolic configuration of stem cells.

솔나방(Dendrolimus spectabilis) 난소의 미세구조 II. 난황막 및 난각형성과정 (Ultrastructural Studies on the Oogenesis of the Pine moth, Dendrolimus spectabilis (Lasiocampidae) II. Vitelline Membrane and Chorion Formation)

  • 김지현;김정상;김우갑
    • Applied Microscopy
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    • 제24권4호
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    • pp.52-60
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    • 1994
  • The developing ovarian oocyte of Dendrolimus spectabilis has been studied by using electron microscopical techniques. After yolk formation the vitelline membrane was laid down in the intercellular space between the follicle cell and the oocyte. But before the vitelline membrane formation the granules with high electron density that the vitelline membrane precusor are observed in the follicle cell. At the late vitellogenesis stage these granules were transported into the intercellular space between the follicle cells and the oocyte. These granules fuse to each other and larger bodies which eventually produce the vitelline membrane. The vitelline membrane was distinguished into the light inner and dark outer membrane. Next the chorion was laid down. It was apparent that the chorion was laid down in the intercellular space immediately adjacent to the vitelline membrane, and that it was formed by the follicle cells only.

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Aging of hair follicle stem cells and their niches

  • Hansaem Jang;Yemin Jo;Jung Hyun Lee;Sekyu Choi
    • BMB Reports
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    • 제56권1호
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    • pp.2-9
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    • 2023
  • Hair follicles in the skin undergo cyclic rounds of regeneration, degeneration, and rest throughout life. Stem cells residing in hair follicles play a pivotal role in maintaining tissue homeostasis and hair growth cycles. Research on hair follicle aging and age-related hair loss has demonstrated that a decline in hair follicle stem cell (HFSC) activity with aging can decrease the regeneration capacity of hair follicles. This review summarizes our understanding of how age-associated HFSC intrinsic and extrinsic mechanisms can induce HFSC aging and hair loss. In addition, we discuss approaches developed to attenuate ageassociated changes in HFSCs and their niches, thereby promoting hair regrowth.

한국산 동자개속 및 퉁가리속 4종 어류의 난모세포에서 여포세포의 발달과 변형 (Development and Transformation of Oocyte' Follicle Cell for Korean Four Sillurid Fishes of Liobagrus and Pseudobagrus (Pisces: Silluriformes))

  • 백현아;박종영;김치홍;김종화
    • 한국어류학회지
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    • 제19권2호
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    • pp.112-119
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    • 2007
  • 메기목 어류인 퉁사리 Liobagrus obesus, 자가사리 L. mediadiposalis, 눈동자개 Pseudobagrus koreanus, 꼬치동자개 P. brevicopus에 대한 난모세포의 여포세포의 발달과 변형과정을 광학현미경과 전자현미경으로 비교 조사하였다. 4종의 난모세포는 바깥의 theca cell과 안쪽의 여포세포(granulosa cell)로 둘러싸여 있다. 이러한 여포세포는 초기 난모세포에서는 편평세포로 구성 되었으나 난황물질형성 동안 단층의 입방상피, 단층의 원주세포로 대체되면서 난황구후기에는 원주세포에 의해서 분비되는 물질로 채워지게 된다. 4종이 이러한 과정이 비슷하지만 분비된 물질(부착구조)의 형태는 2가지로 구분된다. 첫째로 젤라틱막 구조로서 퉁가리속의 퉁사리 및 자가사리에서 나타나며 이들의 성분은 polysaccharides와 mucoproteins로 확인되었다. 반면에 두 번째인 과립형태는 동자개속의 눈동자개와 꼬치동자개에서 볼 수 있으며 이들은 mucoprotein으로 구성되었다. 한편 이러한 부착물질의 아래 부분에 존재하는 방사대는 얇은 바깥층과 두꺼운 내부층으로 구성되는 2층 구조이며, 이들의 두께는 $0.6{\sim}3.1{\mu}m$로 나타났다.

효모성분추출물의 탈모치료 효과와 줄기세포활성화제 역할 (HAIR loss treatment effect and stem cell activator role of Yeast Constituent Extract)

  • 김영실;이혜진;박정은;김진휘
    • 한국산업융합학회 논문집
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    • 제17권3호
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    • pp.178-183
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    • 2014
  • The objective of this study is to find out the effect of yeast on hair loss treatment and the role of hair follicle stem cell activator, which is important in hair growth. The authors have recently produced a substance, which has no disgusting odor, does not precipitates and does not easily corrupt, to use instead of yeast acquired from raw rice wine(Makgeolli). The substance is named Yeast Constituent Extract(YCE). In this research, the Produced YCE was applied on the hair loss area of 10 Androgenic alopecia patients, twice every day for 6 months, in order to test the effect of hair loss treatment and the role of stem cell activator. As a result, all of the patients showed a significant growth of hair after 3 months of test, and showed much more growing, thickening and strengthening of hair after 6 months. As a result of measuring the number of hair strings in the same scalp region of the patients after 6 months, it is found that the density of hair has increased, indicating that the hair loss treatment was effective. Also the hair follicle stem cell was isolated from the patients and the contents of growth factors (IGF, VEGF, FGF, HGF) derived from hair follicle stem cell were measured with ELISA. As result, the amount is found to be about 10 times greater than before the test. The hair follicle stem cell contains many growth factors that affect growth of hair, so it takes a highly important role in hair loss treatment. The YCE that the authors have produced was found to be effective in increasing the contents of growth factors that are derived from hair follicle stem cell. Thus it can be inferred that the YCE plays a role as a stem cell activator that activates the hair follicle stem cells. In conclusion, the YCE is considered to be highly effective for hair loss treatment and to have a role as a stem cell activator.

북방산 개구리 여포의 스테로이드생성과정에 협막세포와 난구세포의 역할 (Roles of Theca and Granulosa Cells in Follicular Steroidogenesis in Rana dybowskii)

  • 안련섭;소재목;권혁방
    • 한국동물학회지
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    • 제39권3호
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    • pp.273-281
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    • 1996
  • 본인 등은 참개구리를 이용하여 여포의 스테로이드 생성에 관한 two-cell type model을 제시한바 있다. 본 연구에서는 이 model이 북방산 개구리 (R. dybowskii)에도 적용 되는지와 협막세포층에 minor pathway(P 5$\longrightarrow$17$\alpha$-OHP$_4$)가 있는지의 여부를 조사하였다. 이를 위하여 북방산 개구리 난소로부터 intact follicles (IFs), granulosa cell enclosed-oocytes (GcEOs), theca/epithelium (THEP) layers 및 난구세포가 포함되어 있지 않은 순수한 theca/epithelium (P-THEP) layers를 미세해부기술로 분리해 내었다. 이들 여포 조직들은 전구 스테로이드나 개구리 뇌ㅏ수체추출물(FPH)이 포함되어 있는 배양액에서 6시간 배양한 후, 각 여포조직 의해 전환된 산물스테로이드의 양을 방사면역측정법으로 조사하였다.외부에서 첨가된 P 5와 P$_4$는 GcEOs와 IFs에 의하여 효율적으로 P$_4$혹은 17 $\alpha$-OHP$_4$로 전환되었으나 THEP에 의해서는 전환되지 않았다. 더욱이 순수한 협막층(P-THEP)에 의해서는 전환이 거의 이루어지지 않았다. 17 $\alpha$-OHP$_4$및 testosterone 역시 GCEOs와 IFs에 의해서 estradiol (E$_2$) 및 androstenedione (AD)으로 각각 전환되었으나 THEP에 위해서는 정환되지 않았다. 반면에, AD는 THEP과 IFs에 의해서만 T로 전환되어졌으며, AD를 제외한 다른 전구스테로이드들은 THEP 의해서도 T로 전환되지 못했다. 이러한 결과들은 P$_4$, 17 $\alpha$-OHP$_4$AD 및 E$_2$는 주로 난구세포에서 생성되고, T는 주로 협막세포에서 생성되며 T나 E$_2$의 효율적인 생성에 이들 두 세포의 협조가 필요하다는 것을 말해준다. 이는 참개구리에서 제시한 two-cell type model이 북방산개구리 여포의 스테로이드 생성과정에도 적용되며 협막 세포층에는 minor pathway ( P5 to 17$\alpha$-OHP$_4$)가 존재하지 않음을 또한 보여주고 있다.

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P-요소를 이용한 노랑초파리 난소에서의 세포특이적 유전자발현의 검출 (Probing Cell-Type Specific Gene Expression in the Ovarian Cells of Drosophila by P-Element Mediated Enhancer Detection)

  • 계명찬;조경상;김경진;이정주
    • 한국동물학회지
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    • 제38권4호
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    • pp.505-513
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    • 1995
  • P-lement의 germ line transformation을 이용하여 초파리 난소에서의 세포특이적 유전자발현 양상을 조사하였다. 표지유전자인 lacZ의 발현양상은 생식세포, 체세포, 두 종류의 세포에서 모두 발현되는 경우로 대별되며, 생식세포에서 lacZ의 발현은 조세포 또는 조세포와 난자에서 동시적으로 발현되는 경우로 구분되었다. 난자주변 난포세포에서의 lacZ 발현은 난자형성 9-10기 난포의 경우 모든 세포에서 균일하게 발현되거나 일부 세포에서만 발현되는 양상으로 구분되었다. 일부의 난포세포에서 발현되는 경우 난자와 조세포 경계의 난포세포에서 발현되는 경우, 이들을 제외한 난포세포에서 발현되는 경우로 구분되었다. 난자주위의 난포세포에서 난자의 전후축을 따른 구배현상도 관찰되었다. 극세포 또는 경계세포에서 발현되는 3개의 독립라인을 분리하였다. 독립된 EDL의 난소에서 나타난 lacZ의 발현양상은 초파리 난자형성에 관여하는 유전자의 시간과 공간적인 발현을 반영하며 이들 유전자 분리의 기초를 제공할 것으로 사료된다.

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Lgr5와 결합하는 신규 헵타펩타이드를 이용한 인체 모낭 세포의 활성과 모낭줄기세포 분화 유도 (Novel Heptapeptide Binds to the Lgr5 Induces Activation of Human Hair Follicle Cells and Differentiation of Human Hair Follicle Bulge Stem Cells)

  • 김민웅;이응지;길하나;정용지;김은미
    • 대한화장품학회지
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    • 제49권1호
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    • pp.75-85
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    • 2023
  • 본 연구에서는 7 개의 아미노산으로 이루어진 헵타펩타이드의 Lgr5 binding에 따른 인체 모낭 구성 세포의 활성에 대한 영향을 확인하였다. 표면 플라즈몬 공명(surface plasmon resonance, SPR) 시스템을 이용하여 헵타펩타이드가 Lgr5에 결합하는 것을 확인하였다. 인체 모유두세포(human hair follicle dermal papilla cell, HHFDPC)에 헵타펩타이드를 처리한 결과, 농도 의존적인 세포 증식이 나타났으며 β-catenin의 세포 내핵 이동 및 하위 유전자인 LEF1, Cyclin-D1, c-Myc의 발현 증가가 관찰되었다. 그리고 세포 증식 기전 관련 인자인 Akt와 ERK의 인산화 수준이 증가되었으며, 성장인자인 hepatocyte growth factor (HGF), keratinocyte growth factor (KGF), vascular endothelial growth factor (VEGF) 발현이 유도되었다. 또한 인체 모모세포(human hair germinal matrix cell, HHGMC)의 분화 관련 전사 인자와 인체 외모근초세포(human hair outer root sheath cell, HHORSC)의 분화 표지 인자들도 헵타펩타이드 처리 시 높은 발현율을 보였다. 추가적으로 우리는 헵타펩타이드의 인체 모낭줄기세포(human hair follicle stem cell, HHFSC) 분화에 대한 영향을 조사하였다. 그 결과, HHFSC 표지인자들의 mRNA와 단백질 수준이 감소하였고 반면에 분화 표지인자들은 증가하였다. 상기의 결과들은 헵타펩타이드가 인체 모낭 구성 세포에서 Wnt/β-catenin 경로를 촉진시켜 증식 또는 분화를 유도할 수 있음을 보여준다. 이를 토대로 종합해 볼 때, 본 연구의 헵타펩타이드는 모발 성장을 유도하고 탈모 개선에 도움을 줄 수 있는 기능성 원료로 사용될 수 있을 것으로 보인다.