• 제목/요약/키워드: peripheral nervous system

검색결과 229건 처리시간 0.031초

The impact of peripheral neuropathy symptoms, self-care ability, and disturbances to daily life on quality of life among gynecological cancer patients undergoing chemotherapy: a cross-sectional survey

  • Sohee Mun;Hyojung Park
    • 여성건강간호학회지
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    • 제28권4호
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    • pp.296-306
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    • 2022
  • Purpose: This study investigated the effects of peripheral neuropathy symptoms, self-care ability, and disturbances to daily life on quality of life (QoL) among gynecological cancer patients undergoing chemotherapy. Methods: The participants included 144 patients with gynecological cancer undergoing anticancer chemotherapy at a tertiary hospital in Seoul, South Korea, from December 1, 2021 to January 28, 2022. Convenience sampling was used to recruit patients who had received 4 or more cycles of chemotherapy using a paclitaxel-platinum regimen, and a self-reported questionnaire was used to collect data. Descriptive statistics, the t-test, analysis of variance, Scheffé test, Pearson correlation coefficients, and multiple regression analysis were performed. Results: Most of the participants had ovarian cancer (70.1%) or endometrial cancer (14.6%), and the most common number of treatment cycles was 6 to 10 (29.2%). The mean QoL (60.83±19.89) was greater than the midpoint. The regression model analyzing the patients' QoL was statistically significant (F=15.38, p<.001) with an explanatory power of 56.7%. Self-care ability (β=.39, p<.001), disturbances to daily life (β=-.38, p<.001), the duration of peripheral neuropathy symptoms (β=2.14, p=.034), and regular exercise (β=-2.12, p=.036) were found to significantly affect QoL. Conclusion: Efforts to improve the self-care ability of gynecological cancer patients who have experienced peripheral neuropathy after receiving chemotherapy and mitigate disturbances to their daily life can improve their QoL. Healthcare professionals should identify peripheral neuropathy symptoms and examine the effects of the symptoms on patients' daily lives. Improving the self-care ability of patients and alleviating their limitations in daily life may improve QoL.

Peripheral Neuron-Organoid Interaction Induces Colonic Epithelial Differentiation via Non-Synaptic Substance P Secretion

  • Young Hyun Che;In Young Choi;Chan Eui Song;Chulsoo Park;Seung Kwon Lim;Jeong Hee Kim;Su Haeng Sung;Jae Hoon Park;Sun Lee;Yong Jun Kim
    • International Journal of Stem Cells
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    • 제16권3호
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    • pp.269-280
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    • 2023
  • Background and Objectives: The colonic epithelial layer is a complex structure consisting of multiple cell types that regulate various aspects of colonic physiology, yet the mechanisms underlying epithelial cell differentiation during development remain unclear. Organoids have emerged as a promising model for investigating organogenesis, but achieving organ-like cell configurations within colonic organoids is challenging. Here, we investigated the biological significance of peripheral neurons in the formation of colonic organoids. Methods and Results: Colonic organoids were co-cultured with human embryonic stem cell (hESC)-derived peripheral neurons, resulting in the morphological maturation of columnar epithelial cells, as well as the presence of enterochromaffin cells. Substance P released from immature peripheral neurons played a critical role in the development of colonic epithelial cells. These findings highlight the vital role of inter-organ interactions in organoid development and provide insights into colonic epithelial cell differentiation mechanisms. Conclusions: Our results suggest that the peripheral nervous system may have a significant role in the development of colonic epithelial cells, which could have important implications for future studies of organogenesis and disease modeling.

Optical Biopsy of Peripheral Nerve Using Confocal Laser Endomicroscopy: A New Tool for Nerve Surgeons?

  • Crowe, Christopher S;Liao, Joseph C;Curtin, Catherine M
    • Archives of Plastic Surgery
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    • 제42권5호
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    • pp.626-629
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    • 2015
  • Peripheral nerve injuries remain a challenge for reconstructive surgeons with many patients obtaining suboptimal results. Understanding the level of injury is imperative for successful repair. Current methods for distinguishing healthy from damaged nerve are time consuming and possess limited efficacy. Confocal laser endomicroscopy (CLE) is an emerging optical biopsy technology that enables dynamic, high resolution, sub-surface imaging of live tissue. Porcine sciatic nerve was either left undamaged or briefly clamped to simulate injury. Diluted fluorescein was applied topically to the nerve. CLE imaging was performed by direct contact of the probe with nerve tissue. Images representative of both damaged and undamaged nerve fibers were collected and compared to routine H&E histology. Optical biopsy of undamaged nerve revealed bands of longitudinal nerve fibers, distinct from surrounding adipose and connective tissue. When damaged, these bands appear truncated and terminate in blebs of opacity. H&E staining revealed similar features in damaged nerve fibers. These results prompt development of a protocol for imaging peripheral nerves intraoperatively. To this end, improving surgeons' ability to understand the level of injury through real-time imaging will allow for faster and more informed operative decisions than the current standard permits.

Factors that Affect Remission of Chemotherapy-Induced Peripheral Neuropathy Symptoms: Short-Term Prospective Study

  • Jeong, Gay Suk;Choi, Jin Yi;Choi, Heejung
    • Journal of Korean Biological Nursing Science
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    • 제24권2호
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    • pp.86-94
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    • 2022
  • Purpose: Patients experiencing chemotherapy-induced peripheral neuropathy (CIPN) apply various palliative care as well as drugs in their daily life to alleviate symptoms. There is a need to identify the influence of these efforts and patients' psychosocial status on the relief of CIPN symptoms. This short-term prospective study investigated how prescription drugs, non-pharmacological behaviors (exercise, massage, and heat therapy), and psychological states (social support, depression, and anxiety) affected CIPN symptoms. Methods: Participants scheduled to receive postoperative platinum or taxane-based chemotherapy were enrolled consecutively. CIPN was measured with the Neurotoxicity-12 subscale of the Functional Assessment of Cancer Therapy/Gynecologic Oncology Group-Neurotoxicity-12 instrument. Data were collected three times during the 4 or 5 cycles of chemotherapy. Results: At the end of the 2nd chemotherapy cycle, 93.1% of participants reported CIPN symptoms. Multiple regression analyses showed that a heat therapy (β= -.34, p< .001), massage (β= -.21, p= .012), and walking 5 times or more per week (β= -.26, p= .021) provided relieve for CIPN symptoms. Depression (β= .19, p= .027) significantly exacerbated CIPN symptoms. Conclusion: These results suggested that a comprehensive management program that includes walking, heat therapy, massage, and mood therapy should be encouraged. Moreover, patients should be educated at chemotherapy initiation to understand appropriate interventions that can relieve CIPN symptoms.

조기해어탕(調氣解瘀湯)이 XO/XA에 의해 손상(損傷)된 대뇌피질(大腦皮質) 신경세포(神經細胞)에 미치는 영향(影響) (Effects of Jogihaeatag(調氣解瘀湯) on the Cerebral Cortex Neuron injured by XO/XA)

  • 이용근;강형원;류영수
    • 동의신경정신과학회지
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    • 제10권2호
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    • pp.29-45
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    • 1999
  • As the average life span has been lengthened and the rate of senile population has been raised, chronic degenerative diseases incident to aging have been increased rapidly and become a social problem. With this social background, recently, oxygen radicals(OR) have toxic effects on Central Nervous System and Peripheral Nervous System and cause neuropathy such as Parkinson's Disease, Alzheimer Disease. The purpose of this study is to examine the toxic effects caused by Xanthine Oxidase(XO) and the effects of herbal extracts such as Jokihaeatang(JHT) on the treatment of the toxic effects. For this purpose, experiments with the cultured cell from the cerebrums of new born mice were done. The results of these experiments were as follows. 1. X0, an oxygen radical, decreased the survival rate of the cultured cells on NR assay, MTT assay and amount of neurofilaments and increased the amount of lipid peroxidation. 2. JHT have efficacy of increasing the amount of neurofilaments.

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생약(生藥) 복합제제(複合製劑)의 약효(藥效) 연구(硏究)(제32보)(第32報) -시호계지건강탕(柴胡桂枝乾薑湯)이 중추신경계(中樞神經系) 및 순환기계(循環器系)에 미치는 영향(影響)- (Studies on the Efficacy of Combined Preparation of Crude Drugs(XXXII) -The Effect of Shihogesikungang-tang on the Central Nervous and Cardiovascular Systems-)

  • 윤명식;김남재;이경섭;홍남두
    • 생약학회지
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    • 제17권4호
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    • pp.272-279
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    • 1986
  • This study was conducted about the effect of Shihogesikungang-tang on the central nervous system and cardiovascular system for the investigation of its clinical effect based on the Oriental medicinal references. The results of this study were summerized as follows; Analgesic activity as evaluated by the writhing syndrome in mice was significantly noted. A decrease effect of the spontaneous movement as estimated by wheel cage method, muscle relaxant effect as evaluated by the rotor rod method and the prolonged effect of sleeping time induced by thiopental-Na were significantly shown in mice. A antipyretic activity in febrile rats induced by the endotoxin was recognized. Anti-inflammatory effect in carrageen-induced paw edema in rats was significantly noted. Negative inotropic action on the isolated heart of frogs was noted. A vasodilative action in rabbits peripheral blood vessels and hypotension in anesthetized rabbits were remarkably recognized.

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The effect of lead on matrix metalloproteinase-9 expression in rat primary glial cells

  • Park, Min-Sik;Lee, Woo-Jong;Kim, Young-Eun;Ko, Kwang-Ho
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 2003년도 Annual Meeting of KSAP : International Symposium on Pharmaceutical and Biomedical Sciences on Obesity
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    • pp.84-84
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    • 2003
  • Lead has long been considered as a toxic environmental pollutant, which severely damages central nervous system. Lead can cause hypo- and de-myelination, and glial cells are closely related with myelination or demyelination. Matrix metalloproteinases (MMPs) are proteolytic enzymes that are involved in the remodelling of the extracellular matrix in a variety of physiological and pathological processes. MMPs also seem to be important in the pathogenesis of inflammatory demyelinating diseases of the central and peripheral nervous system. In this study, we investigated whether lead affects MMP-9 expression in rat primary glial cells. Treatment of 0.1-5 ${\mu}$M lead dose- and time-dependently increased MMP-9 expression in rat primary glial cells. The activity of MMPs was determined using zymography. Lead activated Erk(1/2) but neither of the other endogenous MAP kinases, p38 or JNK. Inhibition of Erk(1/2) activation by PD98059, a MEK inihibitor, prevented lead-induced expression of MMP-9. The results of the present study suggest that lead intoxication may adversely affect brain function at least in part by inducing MMP-9 expression through Erk(1/2) activation in primary glial cells.

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물리치료의 실험적 측면에 대한 Capsaicin의 이해 (Comprehension of Capsaicin for a Experimental Part of Physical Therapy)

  • 김동현;김진상
    • The Journal of Korean Physical Therapy
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    • 제13권1호
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    • pp.219-227
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    • 2001
  • Capsaicin. a vanillyl amide(8-methy1-N-vanilly1-6-nonenamide) with a molecular weight of 305.42, was substance, interrupting the pain conducting pathway Until recently the neurotoxic effects of Capsaicin to adult animals were thought to be limited to the peripheral nervous system. But several reports suggest the possibility of central nervous system changes after Capsaicin administration to the adult rat. Capsaicin desensitization is defined as long lasting, reversible suppression of sensory neuron activity. How fast and for how long the desensitization develops is related to the dose and time of exposure to Capsaicin, and the interval between consecutive dosing. In the long term Capsaicin treatment can lead to morphological degeneration and changes in some small sensory neurons, predominantly unmyelinated C fiber afferent nerve fibers. Clinical interest has recently been roused by evidence that Capsaicin's desensitizing action may be of therapeutic value and that an endogenous Capsaicin-1 ike substance may exist. This study summarizes the fundamental knowledge(mechanism, receptors, et al of Capsaicin) of Capsaicin for physical therapists.

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Non-Fibrillar $\beta$-Amyloid Exerts Toxic Effect on Neuronal Cells

  • Kim, Hyeon-Jin;Hong, Seong-Tshool
    • Animal cells and systems
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    • 제5권2호
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    • pp.139-143
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    • 2001
  • Alzheimer's disease is the most common form of dementia and no cure is known so far. Extensive genetic works and in vitro experiments combined with clinical observations link amyloid $\beta$--protein (A$\beta$-) to the pathogenesis of Alzheimer's disease (AD). It was hypothesized that $A\beta$- becomes toxic when it adopts a fibrillar conformation. Recently, non-fibrillar form of $A\beta$- was observed and the potential role in the pathogenesis of AD became an interesting subject. In this study, the cytotoxicity of non-fibrillar $A\beta$- and fibrillar $A\beta$- was compared on oxidative stress, membrane damage, or nucleosome break down. Non-fibrillar $A\beta$- was not toxic in peripheral nervous system-derived cells but significantly toxic in central nervous system-derived cells while fibrillar $A\beta$- was non-selectively toxic in both cell culture. The neurotoxicity of non-fibrillar $A\beta$- was reproduced in semi-in vivo culture of mouse brain slice. In conclusion, non-fibrillar $A\beta$- could be more relevant to the selective neurodegeneration in Alzheimer's brains than fibrillar $A\beta$- and further research needs to be done for identification of the cause of AD.

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신경병증성 통증의 처리 과정에 있어 중추신경계의 가소성 변화 비교 (Comparisons of the Plastic Changes in the Central Nervous System in the Processing of Neuropathic Pain)

  • 권민지
    • 감성과학
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    • 제24권2호
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    • pp.39-48
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    • 2021
  • 국제통증연구학회(IASP)에 따르면, 신경병증성 통증은 정상 조건에서 중추신경계에 유해한 정보를 전달하는 신경계 기능 장애로 특징 지워진다. 이런 통증은 말초 혹은 중추 신경계에 확인 가능한 병변이 있는 질환과 어떠한 신경에도 병변이 없는 상태에서 발생하는 상황으로 나누어 볼 수 있다. 두 가지 상황 모두 장기적이고 만성적인 변화과정을 겪게 되며, 결과적으로 신경계가 부적절하게 적응하여 치유되기 어려운 만성통증 증후군으로 발전할 수 있다. 그러나 이러한 통증 치료는 진단에서부터 치료까지의 과정이 어려운 탓에 현재까지도 특별한 해결방안이 부족한 실정이다. 최근 자기공명영상(fMRI), 양전자방출단층촬영법(PET), 광영상(optical imaging) 등 영상분석기술이 발달함에 따라 통증을 유발할 수 있는 유해 자극에 대한 중추신경계의 반응을 영상화하는 연구가 증가하고 있다. 이러한 영상 기법들을 통해 통증을 해석하고 처리하는 뇌 영역에서 시냅스 간 가소성 변화가 일어나고 있음을 확인하였으며, 신경병증성 통증을 비롯한 만성통증과 학습과의 상호 작용을 이해하는 데 많은 도움을 주고 있다. 본 연구는 병리적 통증의 기전과 통증 자극에 따른 뇌의 구조적, 기능적 변화에 대해 최근까지 밝혀진 연구들을 소개하고자 한다. 만성적 통증의 정의와 발생기전을 되짚고 새로운 연구 동향을 살펴보는 것은 통증을 완화할 수 있는 방안을 강구하는 데 도움이 될 것으로 사료된다.