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Fungal osteoclasia: a model of dead bone resorption.

作者信息

Marchiafava V, Bonucci E, Ascenzi A

出版信息

Calcif Tissue Res. 1974 Mar 29;14(3):195-210. doi: 10.1007/BF02060295.

DOI:10.1007/BF02060295
PMID:4843788
Abstract
摘要

相似文献

1
Fungal osteoclasia: a model of dead bone resorption.真菌性骨质吸收:死骨吸收模型
Calcif Tissue Res. 1974 Mar 29;14(3):195-210. doi: 10.1007/BF02060295.
2
Matrix collagen of devitalized bone is resistant to osteoclastic bone resorption.失活骨的基质胶原蛋白对破骨细胞的骨吸收具有抗性。
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3
Estrogen reduces the depth of resorption pits by disturbing the organic bone matrix degradation activity of mature osteoclasts.雌激素通过干扰成熟破骨细胞的有机骨基质降解活性来降低吸收陷窝的深度。
Endocrinology. 2001 Dec;142(12):5371-8. doi: 10.1210/endo.142.12.8533.
4
Evidence that failure of osteoid bone matrix resorption is caused by perturbation of osteoclast polarization.
Histochem J. 1998 Apr;30(4):267-73. doi: 10.1023/a:1003263907320.
5
Time-lapse reveals that osteoclasts can move across the bone surface while resorbing.延时摄影显示,破骨细胞在吸收骨质的同时可以在骨表面移动。
J Cell Sci. 2017 Jun 15;130(12):2026-2035. doi: 10.1242/jcs.202036. Epub 2017 May 4.
6
Dynamics of osteoclasia in rats with Walker tumor.Walker肿瘤大鼠破骨细胞的动态变化
Calcif Tissue Res. 1977 May;22 Suppl:368-70. doi: 10.1007/BF02064102.
7
Scanning electron microscopy of rachitic rat bone.佝偻病大鼠骨骼的扫描电子显微镜观察。
Scan Electron Microsc. 1979(2):513-20.
8
Osteoclastic bone degradation and the role of different cysteine proteinases and matrix metalloproteinases: differences between calvaria and long bone.破骨细胞性骨降解以及不同半胱氨酸蛋白酶和基质金属蛋白酶的作用:颅骨与长骨之间的差异
J Bone Miner Res. 2006 Sep;21(9):1399-408. doi: 10.1359/jbmr.060614.
9
Osteopontin--a possible anchor of osteoclasts to bone.
Proc Natl Acad Sci U S A. 1990 Jun;87(12):4473-5. doi: 10.1073/pnas.87.12.4473.
10
Biochemical and morphological aspects of bone tissue in chronic renal failure.慢性肾衰竭时骨组织的生化及形态学特征
Nephron. 1974;12(6):437-48. doi: 10.1159/000180381.

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Histotaphonomic analysis of bone bioerosion reveals a regional framework of diverse deathways in the Neolithic of Southeast Italy.骨骼生物侵蚀的组织学分析揭示了意大利东南部新石器时代多种死亡方式的区域性框架。
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1
The occurrence and physiological behavior of two metaphosphate fractions in yeast.酵母中两种偏磷酸盐组分的存在情况及生理行为
J Biol Chem. 1949 Apr;178(2):919-29.
2
Fungal attack on rock: solubilization and altered infrared spectra.真菌对岩石的侵蚀:溶解作用与红外光谱变化
Science. 1970 Sep 4;169(3949):985-7. doi: 10.1126/science.169.3949.985.
3
ORBITAL MUCORMYCOSIS.眼眶毛霉菌病
Fungal biodeterioration and preservation of cultural heritage, artwork, and historical artifacts: extremophily and adaptation.
真菌对文化遗产、艺术品和历史文物的生物降解作用及保护:嗜极生物和适应性。
Microbiol Mol Biol Rev. 2024 Mar 27;88(1):e0020022. doi: 10.1128/mmbr.00200-22. Epub 2024 Jan 5.
4
Postmortem Skeletal Microbial Community Composition and Function in Buried Human Remains.埋葬人体遗骸的死后骨骼微生物群落组成和功能。
mSystems. 2022 Apr 26;7(2):e0004122. doi: 10.1128/msystems.00041-22. Epub 2022 Mar 30.
5
First osteohistological and histotaphonomic approach of Equus occidentalis Leidy, 1865 (Mammalia, Equidae) from the late Pleistocene of Rancho La Brea (California, USA).首次对来自美国加利福尼亚州拉布雷亚牧场(Rancho La Brea)晚更新世的西方马(Equus occidentalis Leidy, 1865)(哺乳动物,马科)进行骨骼组织学和组织发生考古学研究。
PLoS One. 2021 Dec 28;16(12):e0261915. doi: 10.1371/journal.pone.0261915. eCollection 2021.
6
Bone tissue preservation in seawater environment: a preliminary comparative analysis of bones with different post-mortem histories through anthropological and radiological perspectives.海水环境下骨组织的保存:通过人类学和放射学角度对具有不同死后经历的骨骼进行的初步比较分析。
Int J Legal Med. 2021 Nov;135(6):2581-2594. doi: 10.1007/s00414-021-02636-6. Epub 2021 Aug 16.
7
Characterizing the postmortem human bone microbiome from surface-decomposed remains.从表面分解的遗骸中描绘死后人类骨骼微生物组。
PLoS One. 2020 Jul 8;15(7):e0218636. doi: 10.1371/journal.pone.0218636. eCollection 2020.
8
Decomposition of juvenile-sized remains: a macro- and microscopic perspective.青少年体型遗骸的分解:宏观与微观视角
Forensic Sci Res. 2018 Sep 20;3(4):294-303. doi: 10.1080/20961790.2018.1489362. eCollection 2018.
9
The comparative performance of PMI estimation in skeletal remains by three methods (C-14, luminol test and OHI): analysis of 20 cases.三种方法(碳-14、鲁米诺测试和骨羟脯氨酸指数)对骨骼遗骸中死亡时间估计的比较性能:20例分析。
Int J Legal Med. 2018 Jul;132(4):1215-1224. doi: 10.1007/s00414-015-1152-z. Epub 2015 Jan 27.
10
Lesions characteristic of infection or malignant tumor in Paleo-Eskimo skulls. An anatomical and radiological study of two specimens.古爱斯基摩人头骨中感染或恶性肿瘤的特征性病变。对两个标本的解剖学和放射学研究。
Virchows Arch A Pathol Anat Histol. 1982;395(3):237-43. doi: 10.1007/BF00429350.
Med J Aust. 1964 May 2;1:681-3. doi: 10.5694/j.1326-5377.1964.tb114151.x.
4
CELL WALL OF YEASTS.酵母的细胞壁
Annu Rev Microbiol. 1963;17:15-30. doi: 10.1146/annurev.mi.17.100163.000311.
5
SYMPOSIUM ON BIOCHEMICAL BASES OF MORPHOGENESIS IN FUNGI. IV. MOLECULAR BASES OF FORM IN YEASTS.真菌形态发生的生化基础研讨会。IV. 酵母形态的分子基础。
Bacteriol Rev. 1963 Sep;27(3):305-24. doi: 10.1128/br.27.3.305-324.1963.
6
Cerebral vascular disease in infancy and childhood. 1. Occlusive vascular diseases.婴幼儿期和儿童期的脑血管疾病。1. 闭塞性血管疾病。
J Neuropathol Exp Neurol. 1961 Jan;20:127-40. doi: 10.1097/00005072-196101000-00008.
7
The active transport of phosphate into the yeast cell.磷酸盐向酵母细胞内的主动运输。
J Gen Physiol. 1957 Jul 20;40(6):915-23. doi: 10.1085/jgp.40.6.915.
8
Recent advances in oyster biology.牡蛎生物学的最新进展。
Q Rev Biol. 1952 Sep;27(3):266-308; contd. doi: 10.1086/399023.
9
The composition of the cell wall of Aspergillus niger.黑曲霉细胞壁的组成
Biochem J. 1965 Sep;96(3):651-8. doi: 10.1042/bj0960651.
10
Solubilization of tricalcium phosphate by some soil fungi.
Indian J Exp Biol. 1970 Jul;8(3):228-9.