制度・支援
指定難病 — No.265

脂肪萎縮症

検索語 Lipodystrophy ・ 最終更新 2026-07-21 20:48 ・ 最新に更新

Data Sheet
指定 No.265
Src PubMed · CT.gov · jRCT

これは医療アドバイスではありません。診断・治療の判断は必ず主治医にご相談ください。論文や治験は「今わかっている研究の状況」を示すもので、効果を保証するものではありません。

( 01 )EVIDENCE / PUBMED · 5件

世界の論文

直近の研究を、やさしい日本語で

各論文の見出しにある「確からしさ」は、その研究がどれくらい信頼できるかの目安です。「理論段階」はまだ仮説に近く、下にいくほど多くの患者で検証されていて、「メタ解析」がもっとも信頼できます。

基礎研究(細胞・動物など)
MK-01 · PMID 42471352

Lipodystrophy induces gut microbiota dysbiosis and its related glucose dysmetabolism in mice

Abstract / 原文

Both excessive white adipose tissue (WAT) in obesity and insufficient WAT in lipodystrophy disrupt metabolic homeostasis. Although a vicious cycle between WAT dysfunction and gut dysbiosis is known to drive insulin resistance in obesity, whether lipodystrophy impairs gut function and contributes to glucose dysregulation remains unclear. Using adipocyte-specific MDM2 knockout (Adipo-MDM2-KO) mice as a model of lipodystrophy, we identified a direct role of WAT in maintaining intestinal and gut microbiota homeostasis. Progressive adipose tissue loss in Adipo-MDM2-KO mice caused multiple intestinal abnormalities, including gut microbiota dysbiosis, altered microbial metabolism, impaired intestinal barrier integrity, defective immunoglobulin A (IgA) responses, and endotoxemia. These defects were largely reversed by transplantation of healthy subcutaneous WAT (sWAT). Moreover, fecal microbiota transplantation from Adipo-MDM2-KO mice into C57BL/6J recipients reproduced intestinal defects and glucose intolerance, whereas microbiota depletion in Adipo-MDM2-KO mice largely rescued intestinal abnormalities and partially restored glucose homeostasis. Furthermore, sWAT-secreted adipokines, including extracellular vesicles, directly modulated the abundance and growth of specific gut bacterial communities. Multi-omics analyses further linked lipodystrophy-induced microbiota and metabolomic alterations to systemic endotoxemia and impaired glucose metabolism. Altogether, our findings reveal a critical WAT-gut-microbiota axis in the regulation of intestinal homeostasis and host glucose metabolism.

Journal
NPJ biofilms and microbiomes(2026 Jul)
Authors
15名
Type
Journal Article
PubMedで原文を見る
観察研究
MK-02 · PMID 42467806

Weight gain and obesity management in people with HIV: pathophysiology, antiretroviral therapy effects, and clinical strategies

Abstract / 原文

Obesity is a chronic, relapsing disease that is defended by complex biologic regulatory mechanisms, and is defined by excessive or abnormal adipose tissue that impairs health. Among people with HIV (PWH), the epidemiology of body weight has shifted dramatically in the modern antiretroviral therapy (ART) era, with obesity now replacing wasting and lipodystrophy as dominant body-composition phenotypes. Excess adiposity in PWH arises from overlapping influences: persistent immune activation, ART-specific effects on adipose tissue, and the same environmental factors driving the global obesity epidemic. The consequences include insulin resistance, dyslipidemia, cardiovascular disease, and fatty liver disease, which now constitute the leading causes of morbidity and mortality in this population. This review summarizes the pathophysiology, epidemiology, and management of obesity in PWH, emphasizing mechanisms that link ART exposure to altered adipose biology and metabolic risk. Effective care requires an integrated approach combining behavioral, pharmacologic, and procedural strategies within multidisciplinary HIV programs. Recognizing obesity as a chronic, treatable disease reframes management away from lifestyle blame toward durable metabolic control. In contemporary HIV care, the goal extends beyond viral suppression to encompass the prevention of cardiometabolic disease and preservation of long-term health.

Journal
Topics in antiviral medicine(2026 Jul)
Authors
2名
Type
Journal Article, Review
PubMedで原文を見る
観察研究
MK-03 · PMID 42463339

Severe obesity is independently associated with elevated 24-hour ambulatory heart rate in hypertensive outpatients

Abstract / 原文

BACKGROUND AND AIMS: Elevated heart rate (HR) is an established cardiovascular risk marker, yet its ambulatory profile across body mass index (BMI) strata in hypertensive patients remains incompletely characterized. We investigated the association between BMI and office and ambulatory HR, and explored heart rate variability (HRV), in a large real-world cohort of hypertensive outpatients. METHODS AND RESULTS: In this retrospective observational study 10,003 consecutive adult outpatients undergoing standardized office and ambulatory blood pressure monitoring (ABPM) were stratified by BMI (<25, 25-29, 30-34, and ≥35 kg/m2). Mean HR was assessed at office and during 24-h, daytime, and night-time periods. HRV was estimated as the coefficient of variation (CV%) of ambulatory HR. Multivariable models were adjusted for age, sex, systolic blood pressure, and negative chronotropic therapies. Increasing BMI was associated with a graded rise in HR across all settings (P < 0.001). Compared with normal-weight individuals, patients with BMI ≥35 kg/m2 showed higher office HR (79.6 vs 75.7), higher 24-h HR (76.7 vs 72.5), and higher night-time HR (70.8 vs 65.3 bpm) (all P < 0.001). These associations remained significant after multivariable adjustment and were consistent in both treated and untreated patients. Restricted cubic spline analyses suggested a non-linear relationship between BMI and ambulatory HR. HRV was lower in severe obesity, particularly during the 24-h and night-time periods, although associations were modest in continuous analyses. CONCLUSIONS: In hypertensive outpatients, severe obesity is independently associated with higher office and ambulatory HR across the 24-h period, defining a distinct chronotropic phenotype. Alterations in ambulatory HRV appear less pronounced.

Journal
Nutrition, metabolism, and cardiovascular diseases : NMCD(2026 Jul)
Authors
12名
Type
Journal Article
PubMedで原文を見る
基礎研究(細胞・動物など)
MK-04 · PMID 42462091

Lipid droplets, an enigmatic organelle under the spotlight

Abstract / 原文

Lipid droplets (LDs) are intracellular organelles that dynamically regulate lipid and energy homeostasis, mediate hormone production, produce inflammation signaling, while also participating in numerous biological processes and activities. Dysregulation of LD homeostasis is linked to various diseases, such as lipodystrophy, obesity, type 2 diabetes (T2D), cardiovascular diseases (CVD), metabolic dysfunction-associated steatotic liver disease (MASLD), neuronal diseases, and among others. The core of LDs consists of neutral lipids, including triacylglycerol (TAG), cholesteryl esters (CE), and retinyl esters (RE), which are encircled by a monolayer of phospholipid membrane decorated with a subset of LD proteins, both resident as well as dynamic, that vary in different cells, tissues, organs, and organisms. Over the past two decades, together with technological advances, significant achievements have been made in understanding LD biology, including their lifecycle: such as biogenesis, growth/expansion, fusion, and degradation, as well as their diversity and heterogeneity, under both physiological and pathological conditions. In this review, we summarize the current knowledge and methodologies of LD biology in animal cells, and also provide guiding questions, hopefully bringing new directions for future study of LDs and for potential therapeutic treatments for LD-related human diseases.

Journal
Protein & cell(2026 Jul)
Authors
5名
Type
Journal Article
PubMedで原文を見る
観察研究
MK-05 · PMID 42461708

The risk of nephrotic range proteinuria and kidney failure in primary laminopathies is genotype-specific

Abstract / 原文

BACKGROUND: Primary laminopathies are a heterogeneous group of rare diseases caused by nuclear lamina dysfunction due to pathogenic LMNA variants. However, despite their ubiquitous expression, LMNA variants have rarely been linked to chronic kidney disease (CKD). Here, we systematically investigate clinical implications and functional underpinnings of a distinct LMNA missense variant (lamin A/C p.(Arg349Trp)) that has sporadically been found in patients with a complex phenotype including lipodystrophy, proteinuria, and focal segmental glomerulosclerosis (FSGS). METHODS: In clinical and functional terms, we compare lamin A/C Arg349Trp with missense changes at Arg482, the most common hotspot residue for type 2 familial partial lipodystrophy (FPLD2). In particular, we assess renal endpoints in corresponding patient cohorts and investigate disease-associated alterations in vitro. RESULTS: In contrast to FPLD2 patients, individuals with lamin A/C Arg349Trp experience high-grade proteinuria and a rapid decline of glomerular filtration rate with kidney failure at a median age of 43 years. Mechanistically, we demonstrate that Arg349Trp associates with an abrogation of the structural interaction between lamin A/C and nucleoporin 155, nuclear pore complex aggregation, and an alteration of TGF-β1-dependent signaling. CONCLUSIONS: While patients with Lamin A/C Arg482 missense changes are at very low risk for progressive CKD, patients harboring Arg349Trp show nephrotic range proteinuria and kidney failure in midlife. Hence, high-grade proteinuric kidney disease is genotype-specific and patients with the Arg349Trp substitution require early renoprotective intervention to potentially halt progression and prevent kidney failure. FUNDING: German Research Foundation, project IDs 502928386, 445703531, and grants HA 9779/2-1, HA 6908/4-1, HA 6908/7-1, HA 6908/8-1, HA 6908/12-1.

Journal
JCI insight(2026 Jul)
Authors
32名
Type
Journal Article
PubMedで原文を見る
( 02 )TRIALS / JAPAN · 0件

日本で参加できる治験

現在 募集中のもの

日本で現在募集中の治験は見つかりませんでした。下の公式レジストリで条件を変えると見つかる場合があります。
( 03 )REGISTRY / jRCT

治験をもっと探す

日本の公式レジストリで全件を確認

上の一覧は ClinicalTrials.gov の一部です。日本国内の治験の多くは、日本の公式レジストリ jRCT にのみ登録されています。下記から最新の全件をご確認ください。

※ jRCTは自動の大量データ取得を禁じているため、本サービスはjRCTを自動収集せず、患者ご自身が公式サイトで検索できるリンクでご案内しています(規約順守)。

お金・介護・制度脂肪萎縮症の療養に使えるかもしれない公的サポートを調べる医療費・生活費・介護の支援制度と相談先を、あなたの状況に合わせてご案内(回答は端末内で完結)
( 04 )SUPPORT

患者会・相談窓口

一人で抱え込まないでください

同じ病気の患者・家族とつながる、制度や生活の相談をする、といったときの窓口です。

全国の相談先

※ お住まいの都道府県の「難病相談支援センター」でも、医療費助成や療養生活の相談ができます(難病情報センターから探せます)。